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WO2020237809A1 - Driving control method and apparatus, and household device and computer readable storage medium - Google Patents

Driving control method and apparatus, and household device and computer readable storage medium Download PDF

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Publication number
WO2020237809A1
WO2020237809A1 PCT/CN2019/097556 CN2019097556W WO2020237809A1 WO 2020237809 A1 WO2020237809 A1 WO 2020237809A1 CN 2019097556 W CN2019097556 W CN 2019097556W WO 2020237809 A1 WO2020237809 A1 WO 2020237809A1
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WO
WIPO (PCT)
Prior art keywords
mode
voltage
threshold
current
signal
Prior art date
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PCT/CN2019/097556
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French (fr)
Chinese (zh)
Inventor
文先仕
黄招彬
曾贤杰
张杰楠
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Priority claimed from CN201910472267.3A external-priority patent/CN112019023B/en
Priority claimed from CN201910473276.4A external-priority patent/CN112019065B/en
Application filed by 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Publication of WO2020237809A1 publication Critical patent/WO2020237809A1/en

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02MAPPARATUS FOR CONVERSION BETWEEN AC AND AC, BETWEEN AC AND DC, OR BETWEEN DC AND DC, AND FOR USE WITH MAINS OR SIMILAR POWER SUPPLY SYSTEMS; CONVERSION OF DC OR AC INPUT POWER INTO SURGE OUTPUT POWER; CONTROL OR REGULATION THEREOF
    • H02M1/00Details of apparatus for conversion
    • H02M1/42Circuits or arrangements for compensating for or adjusting power factor in converters or inverters
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B70/00Technologies for an efficient end-user side electric power management and consumption
    • Y02B70/10Technologies improving the efficiency by using switched-mode power supplies [SMPS], i.e. efficient power electronics conversion e.g. power factor correction or reduction of losses in power supplies or efficient standby modes

Definitions

  • This application relates to the field of drive control, and in particular to a drive control method, a drive control device, a household appliance and a computer-readable storage medium.
  • PFC Power Factor Correction, power factor correction
  • drive control circuits and its main function is to improve the power efficiency of electrical equipment (load).
  • PWM Pulse-Width Modulation, pulse width modulation signal
  • Boost PFC modules Boost PFC modules and bridgeless totem pole PFC modules, two types of PFC The module has at least the following technical defects when driving the load:
  • the circuit structure of the Boost PFC module is simple, that is, the charging and discharging process of the inductor is controlled by the switch tube. However, the efficiency of the Boost PFC module is low and the switching loss is large.
  • the efficiency of the bridgeless totem pole PFC module is higher than the efficiency of the Boost PFC module.
  • the bridgeless totem pole PFC module usually works in high frequency or power frequency mode, which not only causes the drive control circuit High hardware loss and high power consumption are also not conducive to further improving the energy efficiency of the load.
  • This application aims to solve at least one of the technical problems existing in the prior art or related technologies.
  • one purpose of this application is to propose a drive control method.
  • Another purpose of this application is to provide a drive control device.
  • Another purpose of this application is to propose a household appliance.
  • Another purpose of this application is to provide a computer-readable storage medium.
  • a drive control method including: detecting the operating current input to the load in the power supply signal, and recording the input duration of the operating current; The operating current and the input duration are used to control the switching device to work in a first mode or a second mode, wherein the first mode is configured to control the switching device to turn off, and the second mode is configured It is a mode in which the switching device operates according to a designated pulse driving signal, so that the given current in the second mode follows the AC voltage input to the load.
  • the pulse drive signal includes pulse width, duty cycle, switching frequency, etc., but is not limited thereto.
  • the switching device by recording the input duration of the operating current, and according to the operating current and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic
  • the signal according to the input duration, controls the switching device to switch the mode, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
  • the power supply signal includes the AC voltage before rectification and the bus voltage after rectification.
  • the detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately.
  • the operating mode of the device and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device .
  • the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
  • the pulse drive signal includes pulse width, duty cycle, switching frequency, etc., but is not limited thereto.
  • the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal.
  • the duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, try to Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
  • the AC signal in the power supply signal is a continuous signal
  • the AC signal includes a positive half cycle signal and a negative half cycle signal alternately distributed
  • the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
  • the start time and end time of the second mode are both set
  • the zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
  • the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal and further improve the performance of the drive control circuit. Reliability and service life.
  • the operating current is an AC current input from the power grid system, or a current signal at a designated position in the drive control circuit.
  • the method before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the first mode The first current threshold and the second current threshold of, the first current threshold is less than the second current threshold; the operating time threshold in the first mode is preset according to the operating current.
  • the preset first current threshold and second current threshold of the operating current in the first mode, and the working duration threshold in the first mode it can be based on the input duration and the first mode
  • the lower working time threshold can more reliably control the second switching device to switch to the second mode.
  • controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration includes: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the magnitude relationship between the operating current and the second current threshold; determining that the operating current is less than the first current threshold Two current thresholds, and the operating current is greater than the first current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to The second mode works.
  • the switching device operates in the first mode, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the operating current with the second current threshold.
  • the relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
  • the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
  • the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
  • the method before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the second mode The third current threshold and the fourth current threshold of, the third current threshold is less than the fourth current threshold; the operating time threshold in the second mode is preset according to the operating current.
  • the third current threshold value is less than the fourth current threshold value, and according to the operation
  • the current presets the operating time threshold in the second mode, and then combines the operating current and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
  • controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the operating current and the third current threshold, and comparing the magnitude relationship between the operating current and the fourth current threshold; determining that the operating current is less than the A fourth current threshold, and the operating current is greater than the third current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
  • the switching device operates in the second mode, and the bus voltage is pulled up. Further, by determining that the operating current is less than the fourth current threshold, and the operating current is greater than the first Three current thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hits Wear capacitive components or switching devices to further improve load energy efficiency.
  • the switching time from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal.
  • the switching time from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal, which can also effectively reduce current harmonics.
  • the AC signal in the power supply signal is a continuous signal
  • the AC signal includes a positive half-cycle signal and a negative half-cycle signal that are alternately distributed
  • the work cycle corresponding to the first mode It includes an integer number of half-cycle durations
  • the duty cycle corresponding to the second mode includes an integer number of the half-cycle durations, where the half-cycle duration includes the duration of the positive half-cycle signal and the negative half-cycle signal The duration of time.
  • the method further includes: detecting the current of the load, calculating and determining the power of the load according to the current of the load; and determining the current corresponding to the given current in the second mode
  • the input power of the load calculating the difference between the input power and the power of the load, the difference being configured as the charging power; determining the rate of change of the bus signal according to the charging power;
  • the minimum value of the given current in the second mode is determined according to the rate of change of the bus signal, wherein the given current is configured to control the rise of the bus signal.
  • a drive control method which includes: detecting the AC voltage input to the load in the power supply signal, and recording the input duration of the AC voltage; The AC voltage and the input duration are used to control the switching device to operate in a first mode or a second mode, wherein the first mode is configured to control the switching off of the switching device, and the second mode is configured It is a mode in which the switching device operates according to a designated pulse driving signal, so that the given current in the second mode follows the AC voltage input to the load.
  • the switching device by recording the input duration of the AC voltage, and according to the AC voltage and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic
  • the signal according to the input duration, controls the switching device for mode switching, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
  • the power supply signal includes the AC voltage before rectification and the bus voltage after rectification.
  • the detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately.
  • the operating mode of the device and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device .
  • the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
  • the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal.
  • the duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, as far as possible Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
  • the AC signal in the power supply signal is a continuous signal
  • the AC signal includes a positive half cycle signal and a negative half cycle signal alternately distributed
  • the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
  • the start time and end time of the second mode are both set
  • the zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
  • the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal, and further improves the performance of the drive control circuit. Reliability and service life.
  • the AC voltage is the AC current input by the power grid system, or it may be a current signal at a designated position in the drive control circuit.
  • the method before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the first mode The first voltage threshold and the second voltage threshold of, the first voltage threshold is less than the second voltage threshold; the operating duration threshold in the first mode is preset according to the AC voltage.
  • the preset first voltage threshold and second voltage threshold of the AC voltage in the first mode, and the working duration threshold in the first mode it can be based on the input duration and the first mode
  • the lower working duration threshold can more reliably control the second switching device to switch to the second mode.
  • controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration includes: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the AC voltage and the first voltage threshold, and comparing the magnitude relationship between the AC voltage and the second voltage threshold; determining that the AC voltage is less than the first voltage threshold Two voltage thresholds, and the AC voltage is greater than the first voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to all The second mode is described.
  • the switching device operates in the first mode, compares the magnitude relationship between the AC voltage and the first voltage threshold, and compares the AC voltage with the second voltage threshold.
  • the relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or to switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
  • the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
  • the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
  • the method before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the second mode The third voltage threshold and the fourth voltage threshold of, the third voltage threshold is less than the fourth voltage threshold; the operating duration threshold in the second mode is preset according to the AC voltage.
  • the third voltage threshold is smaller than the fourth voltage threshold, and according to the AC
  • the voltage presets the operating time threshold in the second mode, and then combines the AC voltage and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
  • controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the AC voltage and the third voltage threshold, and comparing the magnitude relationship between the AC voltage and the fourth voltage threshold; determining that the AC voltage is less than the A fourth voltage threshold, and the AC voltage is greater than the third voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
  • the switching device operates in the second mode, and the bus voltage is pulled high. Further, by determining that the AC voltage is less than the fourth voltage threshold, and the AC voltage is greater than the first Three voltage thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hitting Through capacitive components or switching devices, the load energy efficiency is further improved.
  • the drive control device includes a processor, which is implemented when the processor executes a computer program: the drive control method according to any one of the above Therefore, the drive control device has the beneficial technical effects of any of the drive control methods described above, which will not be repeated here.
  • a household electrical appliance including: a load; the drive control device as described in the technical solution of the third aspect of the present application; a drive control circuit, the drive control circuit receiving Controlled by the drive control device, the drive control circuit is provided with a PFC, the PFC has at least one switching device, and the switching device is configured to control a power supply signal to supply power to the load.
  • the home appliance includes the drive control device as described in the above technical solution. Therefore, the home appliance includes all the beneficial effects of the drive control device as described in the above technical solution, which will not be repeated again.
  • the household electrical appliance includes at least one of an air conditioner, a refrigerator, a fan, a range hood, a vacuum cleaner, and a host computer.
  • a computer-readable storage medium on which a computer program is stored, and when the computer program is executed, the drive control as described in any of the above technical solutions is realized Method steps.
  • Fig. 1 shows a schematic flowchart of a driving control method according to an embodiment of the present application
  • Fig. 2 shows a schematic diagram of a driving control current according to an embodiment of the present application
  • Fig. 3 shows a schematic diagram of driving control current according to another embodiment of the present application.
  • Fig. 4 shows a schematic diagram of driving control current according to an embodiment of the present application
  • Figure 5 shows a schematic diagram of a drive control scheme according to an embodiment of the present application
  • Fig. 6 shows a timing diagram of a driving control method according to an embodiment of the present application
  • FIG. 7 shows a timing diagram of a driving control method according to another embodiment of the present application.
  • Fig. 8 shows a timing diagram of a driving control method according to another embodiment of the present application.
  • the driving control method includes: step S102, detecting the operating current input to the load in the power supply signal, and recording the input duration of the operating current; step S104 , Controlling the switching device to operate in a first mode or a second mode according to the operating current and the input duration, wherein the first mode is configured to control the switching device to be turned off, and the first mode
  • the second mode is configured as a mode in which the switching device operates according to a specified pulse drive signal, so that a given current in the second mode follows the AC voltage input to the load.
  • the switching device by recording the input duration of the operating current, and according to the operating current and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic
  • the signal according to the input duration, controls the switching device to switch the mode, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
  • the power supply signal includes the AC voltage before rectification and the bus voltage after rectification.
  • the detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately.
  • the operating mode of the device and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device .
  • the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
  • the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal.
  • the duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, as far as possible Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
  • the AC signal in the power supply signal is a continuous signal
  • the AC signal includes a positive half cycle signal and a negative half cycle signal that are alternately distributed
  • the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
  • the start time and end time of the second mode are both set
  • the zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
  • the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal, and further improves the performance of the drive control circuit. Reliability and service life.
  • the operating current is an AC current input from the power grid system, or a current signal at a designated position in the drive control circuit.
  • the method before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the first mode The first current threshold and the second current threshold of, the first current threshold is less than the second current threshold; the operating time threshold in the first mode is preset according to the operating current.
  • the preset first current threshold and second current threshold of the operating current in the first mode, and the working duration threshold in the first mode it can be based on the input duration and the first mode
  • the lower working time threshold can more reliably control the second switching device to switch to the second mode.
  • controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration specifically including: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the magnitude relationship between the operating current and the second current threshold; determining that the operating current is less than the first current threshold Two current thresholds, and the operating current is greater than the first current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to The second mode is described.
  • the switching device operates in the first mode, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the operating current with the second current threshold.
  • the relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
  • the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
  • the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
  • the method before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the second mode The third current threshold and the fourth current threshold of, the third current threshold is less than the fourth current threshold; the operating time threshold in the second mode is preset according to the operating current.
  • the third current threshold is smaller than the fourth current threshold, and according to the operation
  • the current presets the operating time threshold in the second mode, and then combines the operating current and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
  • controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the operating current and the third current threshold, and comparing the magnitude relationship between the operating current and the fourth current threshold; determining that the operating current is less than the A fourth current threshold, and the operating current is greater than the third current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
  • the switching device operates in the second mode, and the bus voltage is pulled high. Further, by determining that the operating current is less than the fourth current threshold, and the operating current is greater than the first Three current thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hits Through capacitive components or switching devices, the energy efficiency of the load is further improved.
  • the drive control method includes: step S202, detecting the AC voltage input to the load in the power supply signal, and recording the input duration of the AC voltage; step S204 , Controlling the switching device to work in a first mode or a second mode according to the AC voltage and the input duration, wherein the first mode is configured to control the switching device to turn off, and the first mode
  • the second mode is configured as a mode in which the switching device operates according to a specified pulse drive signal, so that a given current in the second mode follows the AC voltage input to the load.
  • the switching device by recording the input duration of the AC voltage, and according to the AC voltage and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic
  • the signal according to the input duration, controls the switching device for mode switching, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
  • the power supply signal includes the AC voltage before rectification and the bus voltage after rectification.
  • the detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately.
  • the operating mode of the device and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device .
  • the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
  • the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal.
  • the duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, as far as possible Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
  • the AC signal in the power supply signal is a continuous signal
  • the AC signal includes a positive half cycle signal and a negative half cycle signal that are alternately distributed
  • the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
  • the start time and end time of the second mode are both set
  • the zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
  • the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal, and further improves the performance of the drive control circuit. Reliability and service life.
  • the AC voltage is the AC current input by the power grid system, or it may be a current signal at a designated position in the drive control circuit.
  • the method before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the first mode The first voltage threshold and the second voltage threshold of, the first voltage threshold is less than the second voltage threshold; the operating duration threshold in the first mode is preset according to the AC voltage.
  • the preset first voltage threshold and second voltage threshold of the AC voltage in the first mode, and the working duration threshold in the first mode it can be based on the input duration and the first mode
  • the lower working duration threshold can more reliably control the second switching device to switch to the second mode.
  • controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration includes: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the AC voltage and the first voltage threshold, and comparing the magnitude relationship between the AC voltage and the second voltage threshold; determining that the AC voltage is less than the first voltage threshold Two voltage thresholds, and the AC voltage is greater than the first voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to all The second mode is described.
  • the switching device operates in the first mode, compares the magnitude relationship between the AC voltage and the first voltage threshold, and compares the AC voltage with the second voltage threshold.
  • the relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or to switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
  • the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
  • the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
  • the method before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the second mode The third voltage threshold and the fourth voltage threshold of, the third voltage threshold is smaller than the fourth voltage threshold; the operating duration threshold in the second mode is preset according to the AC voltage.
  • the third voltage threshold is less than the fourth voltage threshold, and according to the AC
  • the voltage presets the operating time threshold in the second mode, and then combines the AC voltage and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
  • controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the AC voltage and the third voltage threshold, and comparing the magnitude relationship between the AC voltage and the fourth voltage threshold; determining that the AC voltage is less than the A fourth voltage threshold, and the AC voltage is greater than the third voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
  • the switching device operates in the second mode, and the bus voltage is pulled high. Further, by determining that the AC voltage is less than the fourth voltage threshold, and the AC voltage is greater than the first Three voltage thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hitting Through capacitive components or switching devices, the energy efficiency of the load is further improved.
  • the moment of switching from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal.
  • the switching time from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal, which can also effectively reduce current harmonics.
  • the AC signal in the power supply signal is a continuous signal
  • the AC signal includes a positive half-cycle signal and a negative half-cycle signal that are alternately distributed
  • the work cycle corresponding to the first mode It includes an integer number of half-cycle durations
  • the duty cycle corresponding to the second mode includes an integer number of the half-cycle durations, where the half-cycle duration includes the duration of the positive half-cycle signal and the negative half-cycle signal The duration of time.
  • the method further includes: detecting the current of the load, calculating and determining the power of the load according to the current of the load; determining the current corresponding to the given current in the second mode The input power of the load; calculating the difference between the input power and the power of the load, the difference being configured as the charging power; determining the rate of change of the bus signal according to the charging power; The minimum value of the given current in the second mode is determined according to the rate of change of the bus signal, wherein the given current is configured to control the rise of the bus signal.
  • the drive control circuit is connected between the AC of the power grid system and the input end of the load, and specifically includes: a bridge rectifier module, a Boost type power factor correction module , Capacitive component C (with filtering characteristics) and inverter, among them, the bridge rectifier module is used to convert AC signals into pulsating DC signals, and the Boost type power factor correction module includes inductive components L, switching tubes Q and one-way For the pass device D, due to the charging and discharging effects of the capacitive element C, the voltage on the capacitive element C presents a sawtooth ripple.
  • the unidirectional conducting device D Combined with the conduction characteristics of the unidirectional device D, only when the instantaneous value of the AC line voltage is higher than the capacitance When the voltage on the linear element, the unidirectional conducting device D will be turned on due to the forward bias, that is, in each cycle of the AC line input signal, the unidirectional conducting device D will be turned on only near the peak value.
  • the input AC voltage presents a sine wave waveform, but the input AC current has a large number of spikes, that is, the harmonic components that cause the circuit's low power factor.
  • the Boost type power factor correction module can not only solve the problem of the phase difference between the AC voltage and the AC current, but also solve the electromagnetic interference and electromagnetic compatibility problems caused by harmonic signals.
  • the operating mode of the switch tube is adjusted in combination with the operating parameters of the load, especially when it is detected that the driving load is required to operate.
  • the switch tube is controlled according to the power supply signal, where the power supply signal includes the AC voltage and bus voltage of the AC input of the grid system.
  • the switching tube is working in the second mode, and the relationship between the bus voltage and the maximum threshold V dc_max of the bus signal, and the relationship between the bus voltage and the minimum threshold V dc_min of the bus signal are further combined to Control to output pulse drive signals to the switch tube or stop outputting pulse drive signals to the switch tube.
  • the bus voltage exceeds the upper limit voltage threshold, stop outputting the pulse drive signal to the switch tube, that is, switch to the first mode of operation, that is, the switch tube is in an intermittent state, and the bus voltage is lower than the minimum threshold V dc_min of the bus signal, and output to the switch tube
  • the pulse drive signal is switched to the second mode of work, that is, the switch tube is in working state, so that the given current I S is close to the sine wave waveform.
  • the switching time between the first mode and the second mode is the zero-crossing point of the AC signal to further reduce the spike signal in the drive control circuit.
  • the drive control circuit is connected between the power grid system AC and the input end of the load, and specifically includes: a bridgeless totem pole PFC module, a capacitive Component C (with filtering characteristics) and inverter.
  • the bridgeless totem pole PFC module includes an inductive component L, a switch tube and a unidirectional conduction component D. Due to the charging and discharging effects of the capacitive component C, the capacitive component The voltage on C presents a sawtooth ripple.
  • the unidirectional conducting device D Combined with the conduction characteristics of the unidirectional conducting device D, only when the instantaneous value of the AC line voltage is higher than the voltage on the capacitive element, the unidirectional conducting device D will be biased in the forward direction. Set to conduction, that is, in each cycle of the AC line input signal, only the unidirectional conduction device D will be turned on near the peak value.
  • the input AC voltage presents a sine wave waveform, but the input AC current has a large number of spikes Pulse, that is, the harmonic component that causes the circuit's power factor to drop.
  • the bridgeless totem pole PFC module can not only solve the problem of phase difference between AC voltage and AC current, but also solve the electromagnetic interference and electromagnetic compatibility problems caused by harmonic signals.
  • the switch tube includes The first switching tube Q 1 , the second switching tube Q 2 , the third switching tube Q 3 and the fourth switching tube Q 4 , where the first switching tube Q 1 and the second switching tube Q 2 are high-frequency switching tubes, The third switching tube Q 3 and the fourth switching tube Q 4 are low-frequency switching tubes.
  • the operating mode of the switch tube is adjusted in combination with the operating parameters of the load, especially when the driving load is detected When the power demand is low, whether the switch tube is working is controlled according to the power supply signal, where the power supply signal includes the AC voltage and bus voltage of the AC input of the grid system.
  • the switching tube is working in the second mode, and the relationship between the bus voltage and the maximum threshold V dc_max of the bus signal, and the relationship between the bus voltage and the minimum threshold V dc_min of the bus signal are further combined to Control to output pulse drive signals to the switch tube or stop outputting pulse drive signals to the switch tube.
  • the bus voltage exceeds the upper limit voltage threshold, stop outputting the pulse drive signal to the switch tube, that is, switch to the first mode of operation, that is, the switch tube is in an intermittent state, and the bus voltage is lower than the minimum threshold V dc_min of the bus signal, and output to the switch tube
  • the pulse drive signal is switched to the second mode of work, that is, the switch tube is in working state, so that the given current I S is close to the sine wave waveform.
  • the switching time between the first mode and the second mode is the zero-crossing point of the AC signal to further reduce the spike signal in the drive control circuit.
  • the steps executed by the PI controller include:
  • the first PI controller determines the rate of change according to the difference between the bus signal V dc and the bus signal threshold V dcref , thereby determining the gain value I ref_dc of a given current, and the gain value and the AC voltage V ac (in Figure 4 The product of the shown absolute value of the AC voltage) is the given current, which is output to the second PI controller after current limiting processing is performed on the given current.
  • the second PI controller calculates and determines the pulse drive signal according to the given current and the alternating current I ac , where the pulse drive signal includes the first duty cycle, the second duty cycle, the third duty cycle and the fourth duty cycle. For the empty ratio, in the same way, a dead time is set between the conduction time of the first switching tube and the conduction time between the second switching tube.
  • the pulse drive signal also includes the switching frequency of the switching tube.
  • the first PI controller and the second PI controller are both proportional integral controllers.
  • the operating mode of the switch tube is adjusted in combination with the operating parameters of the load, especially in When it is detected that the power required to drive the load is low, whether the switch tube is working is controlled according to the power supply signal, where the power supply signal includes the AC voltage and bus voltage of the AC input of the grid system.
  • the size relationship is to control the output of pulse drive signal to the switch tube or stop the output of pulse drive signal to the switch tube.
  • the switch tube if the bus voltage V dc exceeds the upper limit voltage threshold, stop outputting pulse drive signals to the switch tube, that is, switch to the first mode of operation, that is, the switch tube is in an intermittent state, and the bus voltage is lower than the minimum threshold V dc_min of the bus signal, and the switch The tube outputs a pulse drive signal, that is, it switches to the second mode of operation, that is, the switch tube is in working state, so that the given current I S is close to the sine wave waveform.
  • the timing of switching between the first mode and the second mode is a zero-crossing time of the AC signal U S, to further reduce the harmonic signals in the drive control circuit, a given current I S is close to a sine Wave waveform.
  • the first bus voltage predicted value V dc_pre1 corresponding to the first half-wave zero-crossing point
  • compare the first bus voltage predicted value V dc_pre1 with the maximum bus signal threshold V The relationship between the magnitude of dc_max , determine that the predicted value of the first bus voltage V dc_pre1 is less than the maximum threshold of the bus signal V dc_max , continue to work in the second mode, and predict the first bus voltage based on the next full-wave zero-crossing bus signal sampling value V dc_cur prediction value V dc_pre2, comparing the second bus voltage prediction value V dc_pre2 the bus signal maximum threshold V dc_max magnitude relationship, determining a second bus voltage prediction value V dc_pre2 close bus signal maximum threshold V dc_max, i.e. the maximum threshold bus signal The difference between V dc_max and the second bus voltage predicted value V dc_pre2 is less than the difference threshold, and it is determined to switch
  • the household appliance includes: a load; the drive control device as described in any one of the above; a drive control circuit, the drive control circuit is controlled by the drive control device, and the drive control circuit is configured to There is a PFC, the PFC has at least one switching device, and the switching device is configured to control the power supply signal to supply power to the load.
  • the home appliance includes the drive control device as described in any of the above embodiments. Therefore, the home appliance includes all the beneficial effects of the drive control device as described in any of the above embodiments. Repeat.
  • the household electrical appliance includes at least one of an air conditioner, a refrigerator, a fan, a range hood, a vacuum cleaner, and a host computer.
  • the switch tube is set to control the power supply signal to supply power to the load.
  • the bus can be The voltage change sets the corresponding burst (intermittent oscillation) mode control strategy, that is, the intermittent output control strategy, to control the high-frequency action signal in an intermittent output state through the intermittent output control strategy, that is, the high-frequency action signal is not required to be continuously output State, that is, the switch tube does not need to be continuously in the high-frequency action switch state, which can reduce the power consumption of the power factor correction module in the drive control circuit, so as to improve the electrical equipment (such as air conditioner) using the drive control circuit Energy efficiency.
  • burst intermittent oscillation
  • the controller can be MCU (Micro-programmed Control Unit), CPU (Central Processing Unit, central processing unit), DSP (Digital Signal Processor), and embedded equipment. One, but not limited to this.
  • a computer program is stored thereon, and when the computer program is executed, the steps of the drive control method as described in any of the above technical solutions are realized.
  • the switching device by recording the input duration of the operating current, and according to the operating current and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is a period
  • the performance signal controls the switching device to switch the mode, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
  • this application can be provided as methods, systems, or computer program products. Therefore, this application may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, this application may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program codes.
  • computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
  • These computer program instructions can also be stored in a computer-readable memory that can guide a computer or other programmable data processing equipment to work in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture including the instruction device.
  • the device implements the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.
  • These computer program instructions can also be loaded on a computer or other programmable data processing equipment, so that a series of operation steps are executed on the computer or other programmable equipment to produce computer-implemented processing, so as to execute on the computer or other programmable equipment.
  • the instructions provide steps for implementing functions specified in a flow or multiple flows in the flowchart and/or a block or multiple blocks in the block diagram.
  • any reference signs located between parentheses should not be constructed as limitations on the claims.
  • the word “comprising” does not exclude the presence of parts or steps not listed in the claims.
  • the word “a” or “an” preceding a component does not exclude the presence of multiple such components.
  • This application can be implemented by means of hardware including different components and by means of a suitably programmed computer. In the unit claims listing dry devices, each of these devices may be embodied by the same hardware item.
  • the use of the words first, second, and third does not indicate any order. These words can be interpreted as names.

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Abstract

The present application provides a driving control method and apparatus, and a household device and a computer readable storage medium. The driving control method comprises: detecting a running current, input to a load, in a power supply signal, and recording an input duration of the running current; and controlling a switch device to operate in a first mode or a second mode according to the running current and the input duration, wherein the first mode is configured as a mode for controlling the cut-off of the switch device, and the second mode is configured as a mode in which the switch device operates according to a specified pulse driving signal, so that the running current in the second mode follows an AC voltage input to the load. According to the technical solution of the present application, the working efficiency of the driving load is improved, and the circuit power consumption and hardware loss are reduced.

Description

驱动控制方法、装置、家电设备和计算机可读存储介质Drive control method, device, household appliance and computer readable storage medium
本申请要求于2019年05月31日提交中国专利局、申请号为201910472267.3、发明名称为“驱动控制方法、装置、家电设备和计算机可读存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。This application claims the priority of a Chinese patent application filed with the Chinese Patent Office on May 31, 2019, the application number is 201910472267.3, and the invention title is "driving control methods, devices, household appliances, and computer-readable storage media". The entire content Incorporated in this application by reference.
本申请要求于2019年05月31日提交中国专利局、申请号为201910473276.4、发明名称为“驱动控制方法、装置、家电设备和计算机可读存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。This application claims the priority of a Chinese patent application filed with the Chinese Patent Office on May 31, 2019, the application number is 201910473276.4, and the invention title is "drive control methods, devices, household appliances, and computer-readable storage media", all of which are Incorporated in this application by reference.
技术领域Technical field
本申请涉及驱动控制领域,具体而言,涉及一种驱动控制方法、一种驱动控制装置、一种家电设备和一种计算机可读存储介质。This application relates to the field of drive control, and in particular to a drive control method, a drive control device, a household appliance and a computer-readable storage medium.
背景技术Background technique
PFC(Power Factor Correction,功率因数校正)技术广泛应用于驱动控制电路中,其主要作用在于提高用电设备(负载)的用电效率。PFC (Power Factor Correction, power factor correction) technology is widely used in drive control circuits, and its main function is to improve the power efficiency of electrical equipment (load).
相关技术中,通常采用PWM(Pulse-Width Modulation,脉宽调制信号)驱动开关管导通或截止,常用的PFC模组包括Boost型PFC模组和无桥图腾柱型PFC模组,两种PFC模组在驱动负载运行时至少存在以下技术缺陷:In related technologies, PWM (Pulse-Width Modulation, pulse width modulation signal) is usually used to drive the switch tube to turn on or off. Commonly used PFC modules include Boost PFC modules and bridgeless totem pole PFC modules, two types of PFC The module has at least the following technical defects when driving the load:
(1)Boost型PFC模组的电路结构简单,即通过开关管控制电感的充放电过程,但是,Boost型PFC模组的效率低下,且开关损耗大。(1) The circuit structure of the Boost PFC module is simple, that is, the charging and discharging process of the inductor is controlled by the switch tube. However, the efficiency of the Boost PFC module is low and the switching loss is large.
(2)无桥图腾柱型PFC模组的效率高于Boost型PFC模组的效率,但是,无桥图腾柱型PFC模组通常以高频或工频方式工作,这不仅导致驱动控制电路的硬件损耗高和功耗高,也不利于进一步地提高负载的能效。(2) The efficiency of the bridgeless totem pole PFC module is higher than the efficiency of the Boost PFC module. However, the bridgeless totem pole PFC module usually works in high frequency or power frequency mode, which not only causes the drive control circuit High hardware loss and high power consumption are also not conducive to further improving the energy efficiency of the load.
另外,整个说明书对背景技术的任何讨论,并不代表该背景技术一定是所属领域技术人员所知晓的现有技术,整个说明书中的对现有技术的任何讨论并不代表认为该现有技术一定是广泛公知的或一定构成本领域的公知常识。In addition, any discussion of the background technology in the entire specification does not mean that the background technology must be the prior art known to those skilled in the art. Any discussion of the prior art in the entire specification does not mean that the prior art must be considered Is widely known or must constitute common knowledge in the field.
申请内容Application content
本申请旨在至少解决现有技术或相关技术中存在的技术问题之一。This application aims to solve at least one of the technical problems existing in the prior art or related technologies.
为此,本申请的一个目的在于提出了一种驱动控制方法。For this reason, one purpose of this application is to propose a drive control method.
本申请的另一个目的在于提出了一种驱动控制装置。Another purpose of this application is to provide a drive control device.
本申请的又一个目的在于提出了一种家电设备。Another purpose of this application is to propose a household appliance.
本申请的又一个目的在于提出了一种计算机可读存储介质。Another purpose of this application is to provide a computer-readable storage medium.
在本申请的第一方面的技术方案中,提出了一种驱动控制方法,包括:检测所述供电信号中输入至所述负载的运行电流,并记录所述运行电流的输入时长;根据所述运行电流和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,其中,所述第一模式被配置为控制所述开关器件截止的模式,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的给定电流跟随输入至所述负载的交流电压。In the technical solution of the first aspect of the present application, a drive control method is proposed, including: detecting the operating current input to the load in the power supply signal, and recording the input duration of the operating current; The operating current and the input duration are used to control the switching device to work in a first mode or a second mode, wherein the first mode is configured to control the switching device to turn off, and the second mode is configured It is a mode in which the switching device operates according to a designated pulse driving signal, so that the given current in the second mode follows the AC voltage input to the load.
其中,脉冲驱动信号包括脉冲宽度、占空比和开关频率等,但不限于此。Among them, the pulse drive signal includes pulse width, duty cycle, switching frequency, etc., but is not limited thereto.
在该技术方案中,通过记录所述运行电流的输入时长,并根据所述运行电流和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,如供电信号为周期性信号,根据输入时长控制开关器件进行模式切换,能够在提升负载能效的同时,降低了驱动控制方案的计算量。In this technical solution, by recording the input duration of the operating current, and according to the operating current and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic The signal, according to the input duration, controls the switching device to switch the mode, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
另外,供电信号包括整流前的交流电压和整流后的母线电压,检测的供电信号预测下一周期内的供电信号,并参考母线电压与母线电压阈值之间的大小关系,能够更加精确地切换开关器件的工作模式,并且结合交流电压随时间变化的趋势确定切换时刻,其中,所述第一模式被配置为控制所述开关器件截止的模式,在第一模式下,停止向开关器件发送驱动信号,以降低开关器件的功耗和硬件损耗,而随着母线电压的不断下降,也需要运行第二模式对负载进行升压,以及对负载进行功率因数的校正,相应的,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的给定电流跟随所述母线信号。In addition, the power supply signal includes the AC voltage before rectification and the bus voltage after rectification. The detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately The operating mode of the device, and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device , In order to reduce the power consumption and hardware loss of the switching device, and with the continuous decrease of the bus voltage, it is also necessary to run the second mode to boost the load and correct the power factor of the load. Accordingly, the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
其中,脉冲驱动信号包括脉冲宽度、占空比和开关频率等,但不限于此。Among them, the pulse drive signal includes pulse width, duty cycle, switching frequency, etc., but is not limited thereto.
本领域技术人员能够理解的是,在第一模式和第二模式均能保证负载正常运行,也即第一模式与第二模式之间的一个切换点对应于母线信号的最大阈值,第一模式与第二模式之间的另一个切换点对应于母线信号的最小阈值,第一模式的时长与第二模式的时长均取决于母线信号的变化率,以在保证负载运行正常的前提下,尽量提高第一模式的时长,从而有效降低开关器件的工作时间、开通次数、硬件损耗和故障率。Those skilled in the art can understand that the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal. The duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, try to Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
可选地,所述供电信号中的交流信号为连续信号,且所述交流信号包括交替分布的正半周信号和负半周信号,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,所述过零点时刻为相邻的所述正半周信号和所述负半周信号之间的过渡时刻。Optionally, the AC signal in the power supply signal is a continuous signal, and the AC signal includes a positive half cycle signal and a negative half cycle signal alternately distributed, and the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
可选地,第二模式下向开关器件输出脉冲驱动信号的同时,还需要施加给定电流,为了降低给定电流对电路硬件的冲击,因此,设置第二模式起始时刻和终止时刻均为过零点时刻,也即,第二模式的工作周期包括整数个半周波。Optionally, while outputting a pulse drive signal to the switching device in the second mode, a given current also needs to be applied. In order to reduce the impact of the given current on the circuit hardware, the start time and end time of the second mode are both set The zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
可选地,在交流电压的过零点时刻执行第一模式与第二模式之间的切换,以降低驱动控制电路中的电流谐波,有利于降低谐波信号,进而进一步地提升驱动控制电路的可靠性和使用寿命。Optionally, the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal and further improve the performance of the drive control circuit. Reliability and service life.
可选地,运行电流为电网系统输入的交流电流,也可以是驱动控制电路中指定位置的电流信号。Optionally, the operating current is an AC current input from the power grid system, or a current signal at a designated position in the drive control circuit.
另外,根据本申请上述实施例的驱动控制方法,还可以具有如下附加的技术特征:In addition, the drive control method according to the foregoing embodiment of the present application may also have the following additional technical features:
在上述任一技术方案中,可选地,在检测所述供电信号对应的运行电流,并记录所述运行电流的输入时长前,还包括:预设所述运行电流在所述第一模式下的第一电流阈值和第二电流阈值,所述第一电流阈值小于所述第二电流阈值;根据所述运行电流预设所述第一模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the first mode The first current threshold and the second current threshold of, the first current threshold is less than the second current threshold; the operating time threshold in the first mode is preset according to the operating current.
在该技术方案中,通过设置预设所述运行电流在所述第一模式下的第一电流阈值和第二电流阈值,以及第一模式下的工作时长阈值,能够基于 输入时长与第一模式下的工作时长阈值,更为可靠地控制第二开关器件切换至第二模式。In this technical solution, by setting the preset first current threshold and second current threshold of the operating current in the first mode, and the working duration threshold in the first mode, it can be based on the input duration and the first mode The lower working time threshold can more reliably control the second switching device to switch to the second mode.
在上述任一技术方案中,可选地,根据所述运行电流和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体包括:所述开关器件以所述第一模式工作,比较所述运行电流与所述第一电流阈值之间的大小关系,以及比较所述运行电流与所述第二电流阈值之间的大小关系;确定所述运行电流小于所述第二电流阈值,且所述运行电流大于所述第一电流阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第一模式工作或切换至所述第二模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration includes: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the magnitude relationship between the operating current and the second current threshold; determining that the operating current is less than the first current threshold Two current thresholds, and the operating current is greater than the first current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to The second mode works.
在该技术方案中,所述开关器件以所述第一模式工作,比较所述运行电流与所述第一电流阈值之间的大小关系,以及比较所述运行电流与所述第二电流阈值之间的大小关系,进而控制所述开关器件由所述第一模式工作或切换至所述第二模式工作,避免了负载因母线电压跌落而停转的可能性。In this technical solution, the switching device operates in the first mode, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the operating current with the second current threshold. The relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
在上述任一技术方案中,可选地,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻。In any of the above technical solutions, optionally, the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
在该技术方案中,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,能够有效地降低电流谐波。In this technical solution, the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
在上述任一技术方案中,可选地,在检测所述供电信号对应的运行电流,并记录所述运行电流的输入时长前,还包括:预设所述运行电流在所述第二模式下的第三电流阈值和第四电流阈值,所述第三电流阈值小于所述第四电流阈值;根据所述运行电流预设所述第二模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the second mode The third current threshold and the fourth current threshold of, the third current threshold is less than the fourth current threshold; the operating time threshold in the second mode is preset according to the operating current.
在该技术方案中,通过预设所述运行电流在所述第二模式下的第三电流阈值和第四电流阈值,所述第三电流阈值小于所述第四电流阈值,并且根据所述运行电流预设所述第二模式下的工作时长阈值,进而结合运行电流和输入时长,控制开关器件由第二模式及时切换至第一模式,有利于进一步地降低开关器件的功耗,进而提升负载能效。In this technical solution, by presetting the third current threshold value and the fourth current threshold value of the operating current in the second mode, the third current threshold value is less than the fourth current threshold value, and according to the operation The current presets the operating time threshold in the second mode, and then combines the operating current and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
在上述任一技术方案中,可选地,根据所述运行电流和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体还包括:所述开 关器件以所述第二模式工作,比较所述运行电流与所述第三电流阈值之间的大小关系,以及比较所述运行电流与所述第四电流阈值之间的大小关系;确定所述运行电流小于所述第四电流阈值,且所述运行电流大于所述第三电流阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration, and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the operating current and the third current threshold, and comparing the magnitude relationship between the operating current and the fourth current threshold; determining that the operating current is less than the A fourth current threshold, and the operating current is greater than the third current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
在该技术方案中,所述开关器件以所述第二模式工作,母线电压被拉高,进一步地,通过确定所述运行电流小于所述第四电流阈值,且所述运行电流大于所述第三电流阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作,能避免母线电压过高击穿容性元件或开关器件,进一步地提升负载能效。In this technical solution, the switching device operates in the second mode, and the bus voltage is pulled up. Further, by determining that the operating current is less than the fourth current threshold, and the operating current is greater than the first Three current thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hits Wear capacitive components or switching devices to further improve load energy efficiency.
在上述任一技术方案中,可选地,由所述第二模式向所述第一模式切换时刻为所述供电信号中的交流信号的过零点时刻。In any of the above technical solutions, optionally, the switching time from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal.
在该技术方案中,由所述第二模式向所述第一模式切换时刻为所述供电信号中的交流信号的过零点时刻,也能够有效地降低电流谐波。In this technical solution, the switching time from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal, which can also effectively reduce current harmonics.
在上述任一技术方案中,可选地,所述供电信号中的交流信号为连续信号,且所述交流信号包括交替分布的正半周信号和负半周信号,所述第一模式对应的工作周期包括整数个半周波时长,和/或所述第二模式对应的工作周期包括整数个所述半周波时长,其中,所述半周波时长包括所述正半周信号的持续时长和所述负半周信号的持续时长。In any of the above technical solutions, optionally, the AC signal in the power supply signal is a continuous signal, and the AC signal includes a positive half-cycle signal and a negative half-cycle signal that are alternately distributed, and the work cycle corresponding to the first mode It includes an integer number of half-cycle durations, and/or the duty cycle corresponding to the second mode includes an integer number of the half-cycle durations, where the half-cycle duration includes the duration of the positive half-cycle signal and the negative half-cycle signal The duration of time.
在上述任一技术方案中,可选地,还包括:检测所述负载的电流,根据所述负载的电流计算确定所述负载的功率;确定所述第二模式下所述给定电流对应的所述负载的输入功率;计算所述输入功率与所述负载的功率之间的差值,所述差值被配置为所述充电功率;根据所述充电功率确定所述母线信号的变化率;根据所述母线信号的变化率确定所述第二模式下的给定电流的最小值,其中,所述给定电流被配置为控制所述母线信号上升。In any of the above technical solutions, optionally, the method further includes: detecting the current of the load, calculating and determining the power of the load according to the current of the load; and determining the current corresponding to the given current in the second mode The input power of the load; calculating the difference between the input power and the power of the load, the difference being configured as the charging power; determining the rate of change of the bus signal according to the charging power; The minimum value of the given current in the second mode is determined according to the rate of change of the bus signal, wherein the given current is configured to control the rise of the bus signal.
在该技术方案中,通过根据电压变化率来确定第二模式下的最小给定电流,提升了母线电压上升的可靠性和稳定性,进一步地提升了本申请的实施例限定的驱动控制方案的可靠性。In this technical solution, by determining the minimum given current in the second mode according to the voltage change rate, the reliability and stability of the bus voltage rise are improved, and the performance of the drive control solution defined in the embodiment of the application is further improved. reliability.
在本申请的第二方面的技术方案中,提出了一种驱动控制方法,包括:检测所述供电信号中输入至所述负载的交流电压,并记录所述交流电压的输入时长;根据所述交流电压和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,其中,所述第一模式被配置为控制所述开关器件截止的模式,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的给定电流跟随输入至所述负载的交流电压。In the technical solution of the second aspect of the present application, a drive control method is proposed, which includes: detecting the AC voltage input to the load in the power supply signal, and recording the input duration of the AC voltage; The AC voltage and the input duration are used to control the switching device to operate in a first mode or a second mode, wherein the first mode is configured to control the switching off of the switching device, and the second mode is configured It is a mode in which the switching device operates according to a designated pulse driving signal, so that the given current in the second mode follows the AC voltage input to the load.
在该技术方案中,通过记录所述交流电压的输入时长,并根据所述交流电压和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,如供电信号为周期性信号,根据输入时长控制开关器件进行模式切换,能够在提升负载能效的同时,降低了驱动控制方案的计算量。In this technical solution, by recording the input duration of the AC voltage, and according to the AC voltage and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic The signal, according to the input duration, controls the switching device for mode switching, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
另外,供电信号包括整流前的交流电压和整流后的母线电压,检测的供电信号预测下一周期内的供电信号,并参考母线电压与母线电压阈值之间的大小关系,能够更加精确地切换开关器件的工作模式,并且结合交流电压随时间变化的趋势确定切换时刻,其中,所述第一模式被配置为控制所述开关器件截止的模式,在第一模式下,停止向开关器件发送驱动信号,以降低开关器件的功耗和硬件损耗,而随着母线电压的不断下降,也需要运行第二模式对负载进行升压,以及对负载进行功率因数的校正,相应的,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的给定电流跟随所述母线信号。In addition, the power supply signal includes the AC voltage before rectification and the bus voltage after rectification. The detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately The operating mode of the device, and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device , In order to reduce the power consumption and hardware loss of the switching device, and with the continuous decrease of the bus voltage, it is also necessary to run the second mode to boost the load and correct the power factor of the load. Accordingly, the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
本领域技术人员能够理解的是,在第一模式和第二模式均能保证负载正常运行,也即第一模式与第二模式之间的一个切换点对应于母线信号的最大阈值,第一模式与第二模式之间的另一个切换点对应于母线信号的最小阈值,第一模式的时长与第二模式的时长均取决于母线信号的变化率,以在保证负载运行正常的前提下,尽量提高第一模式的时长,从而有效降低开关器件的工作时间、开通次数、硬件损耗和故障率。Those skilled in the art can understand that the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal. The duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, as far as possible Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
可选地,所述供电信号中的交流信号为连续信号,且所述交流信号包括交替分布的正半周信号和负半周信号,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,所述过零点时刻为 相邻的所述正半周信号和所述负半周信号之间的过渡时刻。Optionally, the AC signal in the power supply signal is a continuous signal, and the AC signal includes a positive half cycle signal and a negative half cycle signal alternately distributed, and the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
可选地,第二模式下向开关器件输出脉冲驱动信号的同时,还需要施加给定电流,为了降低给定电流对电路硬件的冲击,因此,设置第二模式起始时刻和终止时刻均为过零点时刻,也即,第二模式的工作周期包括整数个半周波。Optionally, while outputting a pulse drive signal to the switching device in the second mode, a given current also needs to be applied. In order to reduce the impact of the given current on the circuit hardware, the start time and end time of the second mode are both set The zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
可选地,在交流电压的过零点时刻执行第一模式与第二模式之间的切换,以降低驱动控制电路中的电流谐波,有利于降低谐波信号,进而进一步地提升驱动控制电路的可靠性和使用寿命。Optionally, the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal, and further improves the performance of the drive control circuit. Reliability and service life.
可选地,交流电压为电网系统输入的交流电流,也可以是驱动控制电路中指定位置的电流信号。Optionally, the AC voltage is the AC current input by the power grid system, or it may be a current signal at a designated position in the drive control circuit.
另外,根据本申请上述实施例的驱动控制方法,还可以具有如下附加的技术特征:In addition, the drive control method according to the foregoing embodiment of the present application may also have the following additional technical features:
在上述任一技术方案中,可选地,在检测所述供电信号对应的交流电压,并记录所述交流电压的输入时长前,还包括:预设所述交流电压在所述第一模式下的第一电压阈值和第二电压阈值,所述第一电压阈值小于所述第二电压阈值;根据所述交流电压预设所述第一模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the first mode The first voltage threshold and the second voltage threshold of, the first voltage threshold is less than the second voltage threshold; the operating duration threshold in the first mode is preset according to the AC voltage.
在该技术方案中,通过设置预设所述交流电压在所述第一模式下的第一电压阈值和第二电压阈值,以及第一模式下的工作时长阈值,能够基于输入时长与第一模式下的工作时长阈值,更为可靠地控制第二开关器件切换至第二模式。In this technical solution, by setting the preset first voltage threshold and second voltage threshold of the AC voltage in the first mode, and the working duration threshold in the first mode, it can be based on the input duration and the first mode The lower working duration threshold can more reliably control the second switching device to switch to the second mode.
在上述任一技术方案中,可选地,根据所述交流电压和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体包括:所述开关器件以所述第一模式工作,比较所述交流电压与所述第一电压阈值之间的大小关系,以及比较所述交流电压与所述第二电压阈值之间的大小关系;确定所述交流电压小于所述第二电压阈值,且所述交流电压大于所述第一电压阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第一模式工作或切换至所述第二模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration includes: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the AC voltage and the first voltage threshold, and comparing the magnitude relationship between the AC voltage and the second voltage threshold; determining that the AC voltage is less than the first voltage threshold Two voltage thresholds, and the AC voltage is greater than the first voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to all The second mode is described.
在该技术方案中,所述开关器件以所述第一模式工作,比较所述交流电压与所述第一电压阈值之间的大小关系,以及比较所述交流电压与所述 第二电压阈值之间的大小关系,进而控制所述开关器件由所述第一模式工作或切换至所述第二模式工作,避免了负载因母线电压跌落而停转的可能性。In this technical solution, the switching device operates in the first mode, compares the magnitude relationship between the AC voltage and the first voltage threshold, and compares the AC voltage with the second voltage threshold. The relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or to switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
在上述任一技术方案中,可选地,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻。In any of the above technical solutions, optionally, the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
在该技术方案中,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,能够有效地降低电流谐波。In this technical solution, the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
在上述任一技术方案中,可选地,在检测所述供电信号对应的交流电压,并记录所述交流电压的输入时长前,还包括:预设所述交流电压在所述第二模式下的第三电压阈值和第四电压阈值,所述第三电压阈值小于所述第四电压阈值;根据所述交流电压预设所述第二模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the second mode The third voltage threshold and the fourth voltage threshold of, the third voltage threshold is less than the fourth voltage threshold; the operating duration threshold in the second mode is preset according to the AC voltage.
在该技术方案中,通过预设所述交流电压在所述第二模式下的第三电压阈值和第四电压阈值,所述第三电压阈值小于所述第四电压阈值,并且根据所述交流电压预设所述第二模式下的工作时长阈值,进而结合交流电压和输入时长,控制开关器件由第二模式及时切换至第一模式,有利于进一步地降低开关器件的功耗,进而提升负载能效。In this technical solution, by presetting the third voltage threshold and the fourth voltage threshold of the AC voltage in the second mode, the third voltage threshold is smaller than the fourth voltage threshold, and according to the AC The voltage presets the operating time threshold in the second mode, and then combines the AC voltage and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
在上述任一技术方案中,可选地,根据所述交流电压和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体还包括:所述开关器件以所述第二模式工作,比较所述交流电压与所述第三电压阈值之间的大小关系,以及比较所述交流电压与所述第四电压阈值之间的大小关系;确定所述交流电压小于所述第四电压阈值,且所述交流电压大于所述第三电压阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration, and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the AC voltage and the third voltage threshold, and comparing the magnitude relationship between the AC voltage and the fourth voltage threshold; determining that the AC voltage is less than the A fourth voltage threshold, and the AC voltage is greater than the third voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
在该技术方案中,所述开关器件以所述第二模式工作,母线电压被拉高,进一步地,通过确定所述交流电压小于所述第四电压阈值,且所述交流电压大于所述第三电压阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作,能避免母线电压过高击穿容性元件或开关器件,进一步地提升负载能效。In this technical solution, the switching device operates in the second mode, and the bus voltage is pulled high. Further, by determining that the AC voltage is less than the fourth voltage threshold, and the AC voltage is greater than the first Three voltage thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hitting Through capacitive components or switching devices, the load energy efficiency is further improved.
在本申请的第三方面的技术方案中,提出了一种驱动控制装置,所述驱动控制装置包括处理器,所述处理器执行计算机程序时实现:如上述任一项所述的驱动控制方法的步骤,因此驱动控制装置具有上述任一项驱动控制方法的有益技术效果,在此不再赘述。In the technical solution of the third aspect of the present application, a drive control device is proposed. The drive control device includes a processor, which is implemented when the processor executes a computer program: the drive control method according to any one of the above Therefore, the drive control device has the beneficial technical effects of any of the drive control methods described above, which will not be repeated here.
在本申请的第四方面的技术方案中,提出了一种家电设备,包括:负载;如本申请的第三方面的技术方案所述的驱动控制装置;驱动控制电路,所述驱动控制电路受控于所述驱动控制装置,所述驱动控制电路设有PFC,所述PFC至少一个开关器件,所述开关器件被配置控制供电信号对负载供电。In the technical solution of the fourth aspect of the present application, a household electrical appliance is proposed, including: a load; the drive control device as described in the technical solution of the third aspect of the present application; a drive control circuit, the drive control circuit receiving Controlled by the drive control device, the drive control circuit is provided with a PFC, the PFC has at least one switching device, and the switching device is configured to control a power supply signal to supply power to the load.
在该技术方案中,家电设备包括如上述技术方案中所述的驱动控制装置,因此,该家电设备包括如上述技术方案中所述的驱动控制装置的全部有益效果,再次不再赘述。In this technical solution, the home appliance includes the drive control device as described in the above technical solution. Therefore, the home appliance includes all the beneficial effects of the drive control device as described in the above technical solution, which will not be repeated again.
在上述技术方案中,可选地,所述家电设备包括空调器、电冰箱、风扇、抽油烟机、吸尘器和电脑主机中的至少一种。In the above technical solution, optionally, the household electrical appliance includes at least one of an air conditioner, a refrigerator, a fan, a range hood, a vacuum cleaner, and a host computer.
在本申请的第五方面的技术方案中,提出了一种计算机可读存储介质,其上存储有计算机程序,所述计算机程序被执行时,实现如上述任一项技术方案所述的驱动控制方法的步骤。In the technical solution of the fifth aspect of the present application, a computer-readable storage medium is proposed, on which a computer program is stored, and when the computer program is executed, the drive control as described in any of the above technical solutions is realized Method steps.
本申请的附加方面和优点将在下面的描述部分中变得明显,或通过本申请的实践了解到。The additional aspects and advantages of the present application will become obvious in the following description, or be understood through the practice of the present application.
附图说明Description of the drawings
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:The above and/or additional aspects and advantages of the present application will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, in which:
图1示出了根据本申请的一个实施例的驱动控制方法的流程示意图;Fig. 1 shows a schematic flowchart of a driving control method according to an embodiment of the present application;
图2示出了根据本申请的一个实施例的驱动控制电流的示意图;Fig. 2 shows a schematic diagram of a driving control current according to an embodiment of the present application;
图3示出了根据本申请的另一个实施例的驱动控制电流的示意图;Fig. 3 shows a schematic diagram of driving control current according to another embodiment of the present application;
图4示出了根据本申请的一个实施例的驱动控制电流的示意图;Fig. 4 shows a schematic diagram of driving control current according to an embodiment of the present application;
图5示出了根据本申请的一个实施例的驱动控制方案的示意图;Figure 5 shows a schematic diagram of a drive control scheme according to an embodiment of the present application;
图6示出了根据本申请的一个实施例的驱动控制方法的时序图;Fig. 6 shows a timing diagram of a driving control method according to an embodiment of the present application;
图7示出了根据本申请的另一个实施例的驱动控制方法的时序图;FIG. 7 shows a timing diagram of a driving control method according to another embodiment of the present application;
图8示出了根据本申请的另一个实施例的驱动控制方法的时序图。Fig. 8 shows a timing diagram of a driving control method according to another embodiment of the present application.
具体实施方式Detailed ways
为了能够更清楚地理解本申请的上述目的、特征和优点,下面结合附图和具体实施方式对本申请进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。In order to be able to understand the above objectives, features and advantages of the application more clearly, the application will be further described in detail below with reference to the accompanying drawings and specific implementations. It should be noted that the embodiments of the application and the features in the embodiments can be combined with each other if there is no conflict.
在下面的描述中阐述了很多具体细节以便于充分理解本申请,但是,本申请还可以采用其他不同于在此描述的其他方式来实施,因此,本申请的保护范围并不受下面公开的具体实施例的限制。In the following description, many specific details are set forth in order to fully understand this application. However, this application can also be implemented in other ways different from those described here. Therefore, the scope of protection of this application is not subject to the specific details disclosed below. Limitations of the embodiment.
如图1所示,根据本申请的一个实施例的驱动控制方法,包括:步骤S102,检测所述供电信号中输入至所述负载的运行电流,并记录所述运行电流的输入时长;步骤S104,根据所述运行电流和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,其中,所述第一模式被配置为控制所述开关器件截止的模式,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的给定电流跟随输入至所述负载的交流电压。As shown in FIG. 1, the driving control method according to an embodiment of the present application includes: step S102, detecting the operating current input to the load in the power supply signal, and recording the input duration of the operating current; step S104 , Controlling the switching device to operate in a first mode or a second mode according to the operating current and the input duration, wherein the first mode is configured to control the switching device to be turned off, and the first mode The second mode is configured as a mode in which the switching device operates according to a specified pulse drive signal, so that a given current in the second mode follows the AC voltage input to the load.
在该技术方案中,通过记录所述运行电流的输入时长,并根据所述运行电流和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,如供电信号为周期性信号,根据输入时长控制开关器件进行模式切换,能够在提升负载能效的同时,降低了驱动控制方案的计算量。In this technical solution, by recording the input duration of the operating current, and according to the operating current and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic The signal, according to the input duration, controls the switching device to switch the mode, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
另外,供电信号包括整流前的交流电压和整流后的母线电压,检测的供电信号预测下一周期内的供电信号,并参考母线电压与母线电压阈值之间的大小关系,能够更加精确地切换开关器件的工作模式,并且结合交流电压随时间变化的趋势确定切换时刻,其中,所述第一模式被配置为控制所述开关器件截止的模式,在第一模式下,停止向开关器件发送驱动信号,以降低开关器件的功耗和硬件损耗,而随着母线电压的不断下降,也需要运行第二模式对负载进行升压,以及对负载进行功率因数的校正,相应的,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式, 以使所述第二模式下的给定电流跟随所述母线信号。In addition, the power supply signal includes the AC voltage before rectification and the bus voltage after rectification. The detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately The operating mode of the device, and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device , In order to reduce the power consumption and hardware loss of the switching device, and with the continuous decrease of the bus voltage, it is also necessary to run the second mode to boost the load and correct the power factor of the load. Accordingly, the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
本领域技术人员能够理解的是,在第一模式和第二模式均能保证负载正常运行,也即第一模式与第二模式之间的一个切换点对应于母线信号的最大阈值,第一模式与第二模式之间的另一个切换点对应于母线信号的最小阈值,第一模式的时长与第二模式的时长均取决于母线信号的变化率,以在保证负载运行正常的前提下,尽量提高第一模式的时长,从而有效降低开关器件的工作时间、开通次数、硬件损耗和故障率。Those skilled in the art can understand that the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal. The duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, as far as possible Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
可选地,所述供电信号中的交流信号为连续信号,且所述交流信号包括交替分布的正半周信号和负半周信号,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,所述过零点时刻为相邻的所述正半周信号和所述负半周信号之间的过渡时刻。Optionally, the AC signal in the power supply signal is a continuous signal, and the AC signal includes a positive half cycle signal and a negative half cycle signal that are alternately distributed, and the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
可选地,第二模式下向开关器件输出脉冲驱动信号的同时,还需要施加给定电流,为了降低给定电流对电路硬件的冲击,因此,设置第二模式起始时刻和终止时刻均为过零点时刻,也即,第二模式的工作周期包括整数个半周波。Optionally, while outputting a pulse drive signal to the switching device in the second mode, a given current also needs to be applied. In order to reduce the impact of the given current on the circuit hardware, the start time and end time of the second mode are both set The zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
可选地,在交流电压的过零点时刻执行第一模式与第二模式之间的切换,以降低驱动控制电路中的电流谐波,有利于降低谐波信号,进而进一步地提升驱动控制电路的可靠性和使用寿命。Optionally, the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal, and further improves the performance of the drive control circuit. Reliability and service life.
可选地,运行电流为电网系统输入的交流电流,也可以是驱动控制电路中指定位置的电流信号。Optionally, the operating current is an AC current input from the power grid system, or a current signal at a designated position in the drive control circuit.
另外,根据本申请上述实施例的驱动控制方法,还可以具有如下附加的技术特征:In addition, the drive control method according to the foregoing embodiment of the present application may also have the following additional technical features:
在上述任一技术方案中,可选地,在检测所述供电信号对应的运行电流,并记录所述运行电流的输入时长前,还包括:预设所述运行电流在所述第一模式下的第一电流阈值和第二电流阈值,所述第一电流阈值小于所述第二电流阈值;根据所述运行电流预设所述第一模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the first mode The first current threshold and the second current threshold of, the first current threshold is less than the second current threshold; the operating time threshold in the first mode is preset according to the operating current.
在该技术方案中,通过设置预设所述运行电流在所述第一模式下的第一电流阈值和第二电流阈值,以及第一模式下的工作时长阈值,能够基于输入时长与第一模式下的工作时长阈值,更为可靠地控制第二开关器件切 换至第二模式。In this technical solution, by setting the preset first current threshold and second current threshold of the operating current in the first mode, and the working duration threshold in the first mode, it can be based on the input duration and the first mode The lower working time threshold can more reliably control the second switching device to switch to the second mode.
在上述任一技术方案中,可选地,根据所述运行电流和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体包括:所述开关器件以所述第一模式工作,比较所述运行电流与所述第一电流阈值之间的大小关系,以及比较所述运行电流与所述第二电流阈值之间的大小关系;确定所述运行电流小于所述第二电流阈值,且所述运行电流大于所述第一电流阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第一模式工作或切换至所述第二模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration, specifically including: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the magnitude relationship between the operating current and the second current threshold; determining that the operating current is less than the first current threshold Two current thresholds, and the operating current is greater than the first current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to The second mode is described.
在该技术方案中,所述开关器件以所述第一模式工作,比较所述运行电流与所述第一电流阈值之间的大小关系,以及比较所述运行电流与所述第二电流阈值之间的大小关系,进而控制所述开关器件由所述第一模式工作或切换至所述第二模式工作,避免了负载因母线电压跌落而停转的可能性。In this technical solution, the switching device operates in the first mode, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the operating current with the second current threshold. The relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
在上述任一技术方案中,可选地,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻。In any of the above technical solutions, optionally, the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
在该技术方案中,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,能够有效地降低电流谐波。In this technical solution, the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
在上述任一技术方案中,可选地,在检测所述供电信号对应的运行电流,并记录所述运行电流的输入时长前,还包括:预设所述运行电流在所述第二模式下的第三电流阈值和第四电流阈值,所述第三电流阈值小于所述第四电流阈值;根据所述运行电流预设所述第二模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further includes: presetting the operating current in the second mode The third current threshold and the fourth current threshold of, the third current threshold is less than the fourth current threshold; the operating time threshold in the second mode is preset according to the operating current.
在该技术方案中,通过预设所述运行电流在所述第二模式下的第三电流阈值和第四电流阈值,所述第三电流阈值小于所述第四电流阈值,并且根据所述运行电流预设所述第二模式下的工作时长阈值,进而结合运行电流和输入时长,控制开关器件由第二模式及时切换至第一模式,有利于进一步地降低开关器件的功耗,进而提升负载能效。In this technical solution, by presetting the third current threshold and the fourth current threshold of the operating current in the second mode, the third current threshold is smaller than the fourth current threshold, and according to the operation The current presets the operating time threshold in the second mode, and then combines the operating current and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
在上述任一技术方案中,可选地,根据所述运行电流和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体还包括:所述开关器件以所述第二模式工作,比较所述运行电流与所述第三电流阈值之间 的大小关系,以及比较所述运行电流与所述第四电流阈值之间的大小关系;确定所述运行电流小于所述第四电流阈值,且所述运行电流大于所述第三电流阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the operating current and the input duration, and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the operating current and the third current threshold, and comparing the magnitude relationship between the operating current and the fourth current threshold; determining that the operating current is less than the A fourth current threshold, and the operating current is greater than the third current threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
在该技术方案中,所述开关器件以所述第二模式工作,母线电压被拉高,进一步地,通过确定所述运行电流小于所述第四电流阈值,且所述运行电流大于所述第三电流阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作,能避免母线电压过高击穿容性元件或开关器件,进一步地提升负载能效。In this technical solution, the switching device operates in the second mode, and the bus voltage is pulled high. Further, by determining that the operating current is less than the fourth current threshold, and the operating current is greater than the first Three current thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hits Through capacitive components or switching devices, the energy efficiency of the load is further improved.
如图2所示,根据本申请的一个实施例的驱动控制方法,包括:步骤S202,检测所述供电信号中输入至所述负载的交流电压,并记录所述交流电压的输入时长;步骤S204,根据所述交流电压和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,其中,所述第一模式被配置为控制所述开关器件截止的模式,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的给定电流跟随输入至所述负载的交流电压。As shown in FIG. 2, the drive control method according to an embodiment of the present application includes: step S202, detecting the AC voltage input to the load in the power supply signal, and recording the input duration of the AC voltage; step S204 , Controlling the switching device to work in a first mode or a second mode according to the AC voltage and the input duration, wherein the first mode is configured to control the switching device to turn off, and the first mode The second mode is configured as a mode in which the switching device operates according to a specified pulse drive signal, so that a given current in the second mode follows the AC voltage input to the load.
在该技术方案中,通过记录所述交流电压的输入时长,并根据所述交流电压和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,如供电信号为周期性信号,根据输入时长控制开关器件进行模式切换,能够在提升负载能效的同时,降低了驱动控制方案的计算量。In this technical solution, by recording the input duration of the AC voltage, and according to the AC voltage and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is periodic The signal, according to the input duration, controls the switching device for mode switching, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
另外,供电信号包括整流前的交流电压和整流后的母线电压,检测的供电信号预测下一周期内的供电信号,并参考母线电压与母线电压阈值之间的大小关系,能够更加精确地切换开关器件的工作模式,并且结合交流电压随时间变化的趋势确定切换时刻,其中,所述第一模式被配置为控制所述开关器件截止的模式,在第一模式下,停止向开关器件发送驱动信号,以降低开关器件的功耗和硬件损耗,而随着母线电压的不断下降,也需要运行第二模式对负载进行升压,以及对负载进行功率因数的校正,相应的,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式, 以使所述第二模式下的给定电流跟随所述母线信号。In addition, the power supply signal includes the AC voltage before rectification and the bus voltage after rectification. The detected power supply signal predicts the power supply signal in the next cycle, and refers to the relationship between the bus voltage and the bus voltage threshold, so that the switch can be switched more accurately The operating mode of the device, and determining the switching moment in combination with the trend of the alternating voltage over time, wherein the first mode is configured to control the switching device to turn off, and in the first mode, stop sending the driving signal to the switching device , In order to reduce the power consumption and hardware loss of the switching device, and with the continuous decrease of the bus voltage, it is also necessary to run the second mode to boost the load and correct the power factor of the load. Accordingly, the second mode It is configured as a mode in which the switching device operates according to a designated pulse drive signal, so that a given current in the second mode follows the bus signal.
本领域技术人员能够理解的是,在第一模式和第二模式均能保证负载正常运行,也即第一模式与第二模式之间的一个切换点对应于母线信号的最大阈值,第一模式与第二模式之间的另一个切换点对应于母线信号的最小阈值,第一模式的时长与第二模式的时长均取决于母线信号的变化率,以在保证负载运行正常的前提下,尽量提高第一模式的时长,从而有效降低开关器件的工作时间、开通次数、硬件损耗和故障率。Those skilled in the art can understand that the normal operation of the load can be guaranteed in both the first mode and the second mode, that is, a switching point between the first mode and the second mode corresponds to the maximum threshold of the bus signal, and the first mode The other switching point between the second mode and the second mode corresponds to the minimum threshold of the bus signal. The duration of the first mode and the duration of the second mode depend on the rate of change of the bus signal, so as to ensure the normal operation of the load, as far as possible Increase the duration of the first mode, thereby effectively reducing the operating time, turn-on times, hardware loss and failure rate of the switching device.
可选地,所述供电信号中的交流信号为连续信号,且所述交流信号包括交替分布的正半周信号和负半周信号,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,所述过零点时刻为相邻的所述正半周信号和所述负半周信号之间的过渡时刻。Optionally, the AC signal in the power supply signal is a continuous signal, and the AC signal includes a positive half cycle signal and a negative half cycle signal that are alternately distributed, and the switching time from the first mode to the second mode is the The zero-crossing point time of the AC signal in the power supply signal, where the zero-crossing point time is a transition time between the adjacent positive half-cycle signal and the negative half-cycle signal.
可选地,第二模式下向开关器件输出脉冲驱动信号的同时,还需要施加给定电流,为了降低给定电流对电路硬件的冲击,因此,设置第二模式起始时刻和终止时刻均为过零点时刻,也即,第二模式的工作周期包括整数个半周波。Optionally, while outputting a pulse drive signal to the switching device in the second mode, a given current also needs to be applied. In order to reduce the impact of the given current on the circuit hardware, the start time and end time of the second mode are both set The zero-crossing moment, that is, the working period of the second mode includes an integer number of half cycles.
可选地,在交流电压的过零点时刻执行第一模式与第二模式之间的切换,以降低驱动控制电路中的电流谐波,有利于降低谐波信号,进而进一步地提升驱动控制电路的可靠性和使用寿命。Optionally, the switching between the first mode and the second mode is performed at the moment of the zero-crossing point of the AC voltage, so as to reduce the current harmonics in the drive control circuit, which is beneficial to reduce the harmonic signal, and further improves the performance of the drive control circuit. Reliability and service life.
可选地,交流电压为电网系统输入的交流电流,也可以是驱动控制电路中指定位置的电流信号。Optionally, the AC voltage is the AC current input by the power grid system, or it may be a current signal at a designated position in the drive control circuit.
另外,根据本申请上述实施例的驱动控制方法,还可以具有如下附加的技术特征:In addition, the drive control method according to the foregoing embodiment of the present application may also have the following additional technical features:
在上述任一技术方案中,可选地,在检测所述供电信号对应的交流电压,并记录所述交流电压的输入时长前,还包括:预设所述交流电压在所述第一模式下的第一电压阈值和第二电压阈值,所述第一电压阈值小于所述第二电压阈值;根据所述交流电压预设所述第一模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the first mode The first voltage threshold and the second voltage threshold of, the first voltage threshold is less than the second voltage threshold; the operating duration threshold in the first mode is preset according to the AC voltage.
在该技术方案中,通过设置预设所述交流电压在所述第一模式下的第一电压阈值和第二电压阈值,以及第一模式下的工作时长阈值,能够基于输入时长与第一模式下的工作时长阈值,更为可靠地控制第二开关器件切 换至第二模式。In this technical solution, by setting the preset first voltage threshold and second voltage threshold of the AC voltage in the first mode, and the working duration threshold in the first mode, it can be based on the input duration and the first mode The lower working duration threshold can more reliably control the second switching device to switch to the second mode.
在上述任一技术方案中,可选地,根据所述交流电压和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体包括:所述开关器件以所述第一模式工作,比较所述交流电压与所述第一电压阈值之间的大小关系,以及比较所述交流电压与所述第二电压阈值之间的大小关系;确定所述交流电压小于所述第二电压阈值,且所述交流电压大于所述第一电压阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第一模式工作或切换至所述第二模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration includes: the switching device operates in the first mode A mode of operation, comparing the magnitude relationship between the AC voltage and the first voltage threshold, and comparing the magnitude relationship between the AC voltage and the second voltage threshold; determining that the AC voltage is less than the first voltage threshold Two voltage thresholds, and the AC voltage is greater than the first voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the first mode or switch to all The second mode is described.
在该技术方案中,所述开关器件以所述第一模式工作,比较所述交流电压与所述第一电压阈值之间的大小关系,以及比较所述交流电压与所述第二电压阈值之间的大小关系,进而控制所述开关器件由所述第一模式工作或切换至所述第二模式工作,避免了负载因母线电压跌落而停转的可能性。In this technical solution, the switching device operates in the first mode, compares the magnitude relationship between the AC voltage and the first voltage threshold, and compares the AC voltage with the second voltage threshold. The relationship between the magnitude and magnitude of the switching device is further controlled to operate from the first mode or to switch to the second mode, avoiding the possibility of the load stalling due to the bus voltage drop.
在上述任一技术方案中,可选地,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻。In any of the above technical solutions, optionally, the moment of switching from the first mode to the second mode is a zero-crossing moment of the AC signal in the power supply signal.
在该技术方案中,由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻,能够有效地降低电流谐波。In this technical solution, the switching time from the first mode to the second mode is the zero-crossing point of the AC signal in the power supply signal, which can effectively reduce current harmonics.
在上述任一技术方案中,可选地,在检测所述供电信号对应的交流电压,并记录所述交流电压的输入时长前,还包括:预设所述交流电压在所述第二模式下的第三电压阈值和第四电压阈值,所述第三电压阈值小于所述第四电压阈值;根据所述交流电压预设所述第二模式下的工作时长阈值。In any of the above technical solutions, optionally, before detecting the AC voltage corresponding to the power supply signal and recording the input duration of the AC voltage, the method further includes: presetting the AC voltage in the second mode The third voltage threshold and the fourth voltage threshold of, the third voltage threshold is smaller than the fourth voltage threshold; the operating duration threshold in the second mode is preset according to the AC voltage.
在该技术方案中,通过预设所述交流电压在所述第二模式下的第三电压阈值和第四电压阈值,所述第三电压阈值小于所述第四电压阈值,并且根据所述交流电压预设所述第二模式下的工作时长阈值,进而结合交流电压和输入时长,控制开关器件由第二模式及时切换至第一模式,有利于进一步地降低开关器件的功耗,进而提升负载能效。In this technical solution, by presetting the third voltage threshold and the fourth voltage threshold of the AC voltage in the second mode, the third voltage threshold is less than the fourth voltage threshold, and according to the AC The voltage presets the operating time threshold in the second mode, and then combines the AC voltage and the input time to control the switching device to switch from the second mode to the first mode in time, which is beneficial to further reduce the power consumption of the switching device, thereby increasing the load efficiency.
在上述任一技术方案中,可选地,根据所述交流电压和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体还包括:所述开关器件以所述第二模式工作,比较所述交流电压与所述第三电压阈值之间 的大小关系,以及比较所述交流电压与所述第四电压阈值之间的大小关系;确定所述交流电压小于所述第四电压阈值,且所述交流电压大于所述第三电压阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作。In any of the above technical solutions, optionally, controlling the switching device to operate in the first mode or the second mode according to the AC voltage and the input duration, and specifically further includes: the switching device operates in the Working in the second mode, comparing the magnitude relationship between the AC voltage and the third voltage threshold, and comparing the magnitude relationship between the AC voltage and the fourth voltage threshold; determining that the AC voltage is less than the A fourth voltage threshold, and the AC voltage is greater than the third voltage threshold, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate from the second mode or switch to The first mode works.
在该技术方案中,所述开关器件以所述第二模式工作,母线电压被拉高,进一步地,通过确定所述交流电压小于所述第四电压阈值,且所述交流电压大于所述第三电压阈值,根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作,能避免母线电压过高击穿容性元件或开关器件,进一步地提升负载能效。In this technical solution, the switching device operates in the second mode, and the bus voltage is pulled high. Further, by determining that the AC voltage is less than the fourth voltage threshold, and the AC voltage is greater than the first Three voltage thresholds, according to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate, so as to avoid excessive bus voltage hitting Through capacitive components or switching devices, the energy efficiency of the load is further improved.
在上述任一技术方案中,可选地,由所述第二模式向所述第一模式切换时刻为所述供电信号中的交流信号的过零点时刻。In any of the above technical solutions, optionally, the moment of switching from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal.
在该技术方案中,由所述第二模式向所述第一模式切换时刻为所述供电信号中的交流信号的过零点时刻,也能够有效地降低电流谐波。In this technical solution, the switching time from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal, which can also effectively reduce current harmonics.
在上述任一技术方案中,可选地,所述供电信号中的交流信号为连续信号,且所述交流信号包括交替分布的正半周信号和负半周信号,所述第一模式对应的工作周期包括整数个半周波时长,和/或所述第二模式对应的工作周期包括整数个所述半周波时长,其中,所述半周波时长包括所述正半周信号的持续时长和所述负半周信号的持续时长。In any of the above technical solutions, optionally, the AC signal in the power supply signal is a continuous signal, and the AC signal includes a positive half-cycle signal and a negative half-cycle signal that are alternately distributed, and the work cycle corresponding to the first mode It includes an integer number of half-cycle durations, and/or the duty cycle corresponding to the second mode includes an integer number of the half-cycle durations, where the half-cycle duration includes the duration of the positive half-cycle signal and the negative half-cycle signal The duration of time.
在上述任一技术方案中,可选地,还包括:检测所述负载的电流,根据所述负载的电流计算确定所述负载的功率;确定所述第二模式下所述给定电流对应的所述负载的输入功率;计算所述输入功率与所述负载的功率之间的差值,所述差值被配置为所述充电功率;根据所述充电功率确定所述母线信号的变化率;根据所述母线信号的变化率确定所述第二模式下的给定电流的最小值,其中,所述给定电流被配置为控制所述母线信号上升。In any one of the above technical solutions, optionally, the method further includes: detecting the current of the load, calculating and determining the power of the load according to the current of the load; determining the current corresponding to the given current in the second mode The input power of the load; calculating the difference between the input power and the power of the load, the difference being configured as the charging power; determining the rate of change of the bus signal according to the charging power; The minimum value of the given current in the second mode is determined according to the rate of change of the bus signal, wherein the given current is configured to control the rise of the bus signal.
在该技术方案中,通过根据电压变化率来确定第二模式下的最小给定电流,提升了母线电压上升的可靠性和稳定性,进一步地提升了本申请的实施例限定的驱动控制方案的可靠性。In this technical solution, by determining the minimum given current in the second mode according to the voltage change rate, the reliability and stability of the bus voltage rise are improved, and the performance of the drive control solution defined in the embodiment of the application is further improved. reliability.
如图3所示,根据本申请的一个实施例的驱动控制电路,驱动控制电 路接入于电网系统AC与负载的输入端之间,具体包括:桥式整流模块、Boost型功率因数校正模组、容性元件C(具备滤波特性)和逆变器,其中,桥式整流模块用于将交流信号转换为脉动直流信号,Boost型功率因数校正模组包括感性元件L、开关管Q和单向导通器件D,由于容性元件C的充电和放电作用,容性元件C上的电压呈现锯齿波的纹波,结合单向导通器件D的导通特性,只有在AC线路电压瞬时值高于容性元件上的电压时,单向导通器件D才会因正向偏置而导通,也即在AC线路输入信号的每个周期内,只有在峰值附近单向导通器件D才会导通,输入的交流电压呈现正弦波波形,但是,输入的交流电流存在大量尖峰脉冲,也即引起电路功率因数低下的谐波成分。As shown in FIG. 3, according to the drive control circuit of an embodiment of the present application, the drive control circuit is connected between the AC of the power grid system and the input end of the load, and specifically includes: a bridge rectifier module, a Boost type power factor correction module , Capacitive component C (with filtering characteristics) and inverter, among them, the bridge rectifier module is used to convert AC signals into pulsating DC signals, and the Boost type power factor correction module includes inductive components L, switching tubes Q and one-way For the pass device D, due to the charging and discharging effects of the capacitive element C, the voltage on the capacitive element C presents a sawtooth ripple. Combined with the conduction characteristics of the unidirectional device D, only when the instantaneous value of the AC line voltage is higher than the capacitance When the voltage on the linear element, the unidirectional conducting device D will be turned on due to the forward bias, that is, in each cycle of the AC line input signal, the unidirectional conducting device D will be turned on only near the peak value. The input AC voltage presents a sine wave waveform, but the input AC current has a large number of spikes, that is, the harmonic components that cause the circuit's low power factor.
因此,Boost型功率因数校正模组不仅能够解决交流电压与交流电流之间存在相位差的问题,也能解决谐波信号引起的电磁干扰和电磁兼容问题。Therefore, the Boost type power factor correction module can not only solve the problem of the phase difference between the AC voltage and the AC current, but also solve the electromagnetic interference and electromagnetic compatibility problems caused by harmonic signals.
进一步地,处于进一步地提升负载运行能效的目的,对于上述有源的Boost型功率因数校正模组而言,结合负载的运行参数调整开关管的工作模式,尤其是在检测到驱动负载运行所需电量较低时,根据供电信号来控制开关管是否工作,其中,供电信号包括电网系统AC输入的交流电压和母线电压。Further, for the purpose of further improving the energy efficiency of load operation, for the above-mentioned active Boost power factor correction module, the operating mode of the switch tube is adjusted in combination with the operating parameters of the load, especially when it is detected that the driving load is required to operate. When the power is low, the switch tube is controlled according to the power supply signal, where the power supply signal includes the AC voltage and bus voltage of the AC input of the grid system.
更进一步地,确定开关管以第二模式工作,进一步地结合母线电压与母线信号的最大阈值V dc_max之间的大小关系,以及母线电压与母线信号的最小阈值V dc_min之间的大小关系,以控制向开关管输出脉冲驱动信号或停止向开关管输出脉冲驱动信号。 Furthermore, it is determined that the switching tube is working in the second mode, and the relationship between the bus voltage and the maximum threshold V dc_max of the bus signal, and the relationship between the bus voltage and the minimum threshold V dc_min of the bus signal are further combined to Control to output pulse drive signals to the switch tube or stop outputting pulse drive signals to the switch tube.
具体地,母线电压超过上限电压阈值,停止向开关管输出脉冲驱动信号,即切换至第一模式工作,即开关管处于间歇状态,母线电压低于母线信号的最小阈值V dc_min,向开关管输出脉冲驱动信号,即切换至第二模式工作,即开关管处于工作状态,使给定电流I S接近于正弦波波形。 Specifically, if the bus voltage exceeds the upper limit voltage threshold, stop outputting the pulse drive signal to the switch tube, that is, switch to the first mode of operation, that is, the switch tube is in an intermittent state, and the bus voltage is lower than the minimum threshold V dc_min of the bus signal, and output to the switch tube The pulse drive signal is switched to the second mode of work, that is, the switch tube is in working state, so that the given current I S is close to the sine wave waveform.
再进一步地,第一模式与第二模式之间的切换时刻为交流信号的过零点时刻,以进一步地降低驱动控制电路中的尖峰信号。Still further, the switching time between the first mode and the second mode is the zero-crossing point of the AC signal to further reduce the spike signal in the drive control circuit.
如图4所示,根据本申请的另一个实施例的驱动控制电路,驱动控制电路接入于电网系统AC与负载的输入端之间,具体包括:无桥图腾柱型 PFC模组、容性元件C(具备滤波特性)和逆变器,其中,无桥图腾柱型PFC模组包括感性元件L、开关管和单向导通器件D,由于容性元件C的充电和放电作用,容性元件C上的电压呈现锯齿波的纹波,结合单向导通器件D的导通特性,只有在AC线路电压瞬时值高于容性元件上的电压时,单向导通器件D才会因正向偏置而导通,也即在AC线路输入信号的每个周期内,只有在峰值附近单向导通器件D才会导通,输入的交流电压呈现正弦波波形,但是,输入的交流电流存在大量尖峰脉冲,也即引起电路功率因数低下的谐波成分。As shown in FIG. 4, according to the drive control circuit of another embodiment of the present application, the drive control circuit is connected between the power grid system AC and the input end of the load, and specifically includes: a bridgeless totem pole PFC module, a capacitive Component C (with filtering characteristics) and inverter. Among them, the bridgeless totem pole PFC module includes an inductive component L, a switch tube and a unidirectional conduction component D. Due to the charging and discharging effects of the capacitive component C, the capacitive component The voltage on C presents a sawtooth ripple. Combined with the conduction characteristics of the unidirectional conducting device D, only when the instantaneous value of the AC line voltage is higher than the voltage on the capacitive element, the unidirectional conducting device D will be biased in the forward direction. Set to conduction, that is, in each cycle of the AC line input signal, only the unidirectional conduction device D will be turned on near the peak value. The input AC voltage presents a sine wave waveform, but the input AC current has a large number of spikes Pulse, that is, the harmonic component that causes the circuit's power factor to drop.
因此,无桥图腾柱型PFC模组不仅能够解决交流电压与交流电流之间存在相位差的问题,也能解决谐波信号引起的电磁干扰和电磁兼容问题,在本实施例中,开关管包括第一开关管Q 1、第二开关管Q 2、第三开关管Q 3和第四开关管Q 4,其中,第一开关管Q 1和第二开关管Q 2为高频开关管,第三开关管Q 3和第四开关管Q 4为低频开关管。 Therefore, the bridgeless totem pole PFC module can not only solve the problem of phase difference between AC voltage and AC current, but also solve the electromagnetic interference and electromagnetic compatibility problems caused by harmonic signals. In this embodiment, the switch tube includes The first switching tube Q 1 , the second switching tube Q 2 , the third switching tube Q 3 and the fourth switching tube Q 4 , where the first switching tube Q 1 and the second switching tube Q 2 are high-frequency switching tubes, The third switching tube Q 3 and the fourth switching tube Q 4 are low-frequency switching tubes.
进一步地,处于进一步地提升负载运行能效的目的,对于上述有源的无桥图腾柱型PFC模组而言,结合负载的运行参数调整开关管的工作模式,尤其是在检测到驱动负载运行所需电量较低时,根据供电信号来控制开关管是否工作,其中,供电信号包括电网系统AC输入的交流电压和母线电压。Further, for the purpose of further improving the energy efficiency of load operation, for the above-mentioned active bridgeless totem pole PFC module, the operating mode of the switch tube is adjusted in combination with the operating parameters of the load, especially when the driving load is detected When the power demand is low, whether the switch tube is working is controlled according to the power supply signal, where the power supply signal includes the AC voltage and bus voltage of the AC input of the grid system.
更进一步地,确定开关管以第二模式工作,进一步地结合母线电压与母线信号的最大阈值V dc_max之间的大小关系,以及母线电压与母线信号的最小阈值V dc_min之间的大小关系,以控制向开关管输出脉冲驱动信号或停止向开关管输出脉冲驱动信号。 Furthermore, it is determined that the switching tube is working in the second mode, and the relationship between the bus voltage and the maximum threshold V dc_max of the bus signal, and the relationship between the bus voltage and the minimum threshold V dc_min of the bus signal are further combined to Control to output pulse drive signals to the switch tube or stop outputting pulse drive signals to the switch tube.
具体地,母线电压超过上限电压阈值,停止向开关管输出脉冲驱动信号,即切换至第一模式工作,即开关管处于间歇状态,母线电压低于母线信号的最小阈值V dc_min,向开关管输出脉冲驱动信号,即切换至第二模式工作,即开关管处于工作状态,使给定电流I S接近于正弦波波形。 Specifically, if the bus voltage exceeds the upper limit voltage threshold, stop outputting the pulse drive signal to the switch tube, that is, switch to the first mode of operation, that is, the switch tube is in an intermittent state, and the bus voltage is lower than the minimum threshold V dc_min of the bus signal, and output to the switch tube The pulse drive signal is switched to the second mode of work, that is, the switch tube is in working state, so that the given current I S is close to the sine wave waveform.
再进一步地,第一模式与第二模式之间的切换时刻为交流信号的过零点时刻,以进一步地降低驱动控制电路中的尖峰信号。Still further, the switching time between the first mode and the second mode is the zero-crossing point of the AC signal to further reduce the spike signal in the drive control circuit.
如图5所示,在本实施例的驱动控制方案中,PI控制器执行的步骤包 括:As shown in Figure 5, in the drive control scheme of this embodiment, the steps executed by the PI controller include:
(1)第一PI控制器根据母线信号V dc与母线信号阈值V dcref之间的差值确定变化速率,从而确定给定电流的增益值I ref_dc,增益值与交流电压V ac(图4中所示的交流电压绝对值)的乘积为给定电流,对给定电流进行限流处理后,输出至第二PI控制器。 (1) The first PI controller determines the rate of change according to the difference between the bus signal V dc and the bus signal threshold V dcref , thereby determining the gain value I ref_dc of a given current, and the gain value and the AC voltage V ac (in Figure 4 The product of the shown absolute value of the AC voltage) is the given current, which is output to the second PI controller after current limiting processing is performed on the given current.
(2)第二PI控制器根据给定电流和交流电流I ac计算确定脉冲驱动信号,其中,脉冲驱动信号包括第一占空比、第二占空比、第三占空比和第四占空比,同理,第一开关管的导通时间与第二开关管之间的导通时间之间设置死区时间,另外,脉冲驱动信号还包括开关管的开关频率。 (2) The second PI controller calculates and determines the pulse drive signal according to the given current and the alternating current I ac , where the pulse drive signal includes the first duty cycle, the second duty cycle, the third duty cycle and the fourth duty cycle. For the empty ratio, in the same way, a dead time is set between the conduction time of the first switching tube and the conduction time between the second switching tube. In addition, the pulse drive signal also includes the switching frequency of the switching tube.
其中,第一PI控制器和第二PI控制器均为比例积分控制器。Among them, the first PI controller and the second PI controller are both proportional integral controllers.
如图6和图7所示,处于进一步地提升负载运行能效的目的,对于上述有源的无桥图腾柱型PFC模组而言,结合负载的运行参数调整开关管的工作模式,尤其是在检测到驱动负载运行所需电量较低时,根据供电信号来控制开关管是否工作,其中,供电信号包括电网系统AC输入的交流电压和母线电压。As shown in Figure 6 and Figure 7, for the purpose of further improving the energy efficiency of load operation, for the above-mentioned active bridgeless totem pole PFC module, the operating mode of the switch tube is adjusted in combination with the operating parameters of the load, especially in When it is detected that the power required to drive the load is low, whether the switch tube is working is controlled according to the power supply signal, where the power supply signal includes the AC voltage and bus voltage of the AC input of the grid system.
更进一步地,确定开关管以第二模式工作,进一步地结合母线电压V dc与母线信号的最大阈值V dc_max之间的大小关系,以及母线电压V dc与母线信号的最小阈值V dc_min之间的大小关系,以控制向开关管输出脉冲驱动信号或停止向开关管输出脉冲驱动信号。 Furthermore, it is determined that the switch tube is working in the second mode, and the relationship between the bus voltage V dc and the maximum threshold V dc_max of the bus signal, and the relationship between the bus voltage V dc and the minimum threshold V dc_min of the bus signal are further combined . The size relationship is to control the output of pulse drive signal to the switch tube or stop the output of pulse drive signal to the switch tube.
具体地,母线电压V dc超过上限电压阈值,停止向开关管输出脉冲驱动信号,即切换至第一模式工作,即开关管处于间歇状态,母线电压低于母线信号的最小阈值V dc_min,向开关管输出脉冲驱动信号,即切换至第二模式工作,即开关管处于工作状态,使给定电流I S接近于正弦波波形。 Specifically, if the bus voltage V dc exceeds the upper limit voltage threshold, stop outputting pulse drive signals to the switch tube, that is, switch to the first mode of operation, that is, the switch tube is in an intermittent state, and the bus voltage is lower than the minimum threshold V dc_min of the bus signal, and the switch The tube outputs a pulse drive signal, that is, it switches to the second mode of operation, that is, the switch tube is in working state, so that the given current I S is close to the sine wave waveform.
如图6所示,第一模式与第二模式之间的切换时刻为交流信号U S的过零点时刻,以进一步地降低驱动控制电路中的谐波信号,使给定电流I S接近于正弦波波形。 6, the timing of switching between the first mode and the second mode is a zero-crossing time of the AC signal U S, to further reduce the harmonic signals in the drive control circuit, a given current I S is close to a sine Wave waveform.
如图7所示,第一模式与第二模式之间的切换时刻不是交流信号U S的过零点时刻,这就可能导致驱动控制电路中的谐波信号过大,这也就导致了给定电流I S畸变大。 As shown, between the first mode and the second mode switching timing signal AC is not a zero crossing time U S 7, which may lead to a harmonic drive signal control circuit is too large, which also caused a given distortion large current I S.
如图8所示,根据母线电压的采样值确定在一个全波过零点对应的T 12时刻时,由第一模式切换至第二模式,根据母线信号V dc随时间变化的规律,对母线信号进行预测和采样,可选地,在进入第二模式后预测第一个半波过零点对应的第一母线电压预测值V dc_pre1,比较第一母线电压预测值V dc_pre1与母线信号的最大阈值V dc_max的大小关系,确定第一母线电压预测值V dc_pre1小于母线信号的最大阈值V dc_max,继续保持第二模式工作,并根据下一次全波过零点的母线信号采样值V dc_cur预测第一母线电压预测值V dc_pre2,比较第二母线电压预测值V dc_pre2与母线信号的最大阈值V dc_max的大小关系,确定第二母线电压预测值V dc_pre2接近母线信号的最大阈值V dc_max,即母线信号的最大阈值V dc_max与第二母线电压预测值V dc_pre2之间的差值小于差值阈值,确定在另一全波过零点对应的时刻T 21切换至第一模式。 As shown in Figure 8, according to the sampling value of the bus voltage, it is determined that at the time T 12 corresponding to a full-wave zero-crossing point, the first mode is switched to the second mode, and the bus signal V dc changes with time. Perform prediction and sampling. Optionally, after entering the second mode, predict the first bus voltage predicted value V dc_pre1 corresponding to the first half-wave zero-crossing point, and compare the first bus voltage predicted value V dc_pre1 with the maximum bus signal threshold V The relationship between the magnitude of dc_max , determine that the predicted value of the first bus voltage V dc_pre1 is less than the maximum threshold of the bus signal V dc_max , continue to work in the second mode, and predict the first bus voltage based on the next full-wave zero-crossing bus signal sampling value V dc_cur prediction value V dc_pre2, comparing the second bus voltage prediction value V dc_pre2 the bus signal maximum threshold V dc_max magnitude relationship, determining a second bus voltage prediction value V dc_pre2 close bus signal maximum threshold V dc_max, i.e. the maximum threshold bus signal The difference between V dc_max and the second bus voltage predicted value V dc_pre2 is less than the difference threshold, and it is determined to switch to the first mode at time T 21 corresponding to another full-wave zero-crossing point.
根据本申请的实施例的家电设备,包括:负载;如上述任一项所述的驱动控制装置;驱动控制电路,所述驱动控制电路受控于所述驱动控制装置,所述驱动控制电路设有PFC,所述PFC至少一个开关器件,所述开关器件被配置控制供电信号对负载供电。The household appliance according to the embodiment of the present application includes: a load; the drive control device as described in any one of the above; a drive control circuit, the drive control circuit is controlled by the drive control device, and the drive control circuit is configured to There is a PFC, the PFC has at least one switching device, and the switching device is configured to control the power supply signal to supply power to the load.
在该技术方案中,家电设备包括如上述任一实施例中所述的驱动控制装置,因此,该家电设备包括如上述任一实施例中所述的驱动控制装置的全部有益效果,再次不再赘述。In this technical solution, the home appliance includes the drive control device as described in any of the above embodiments. Therefore, the home appliance includes all the beneficial effects of the drive control device as described in any of the above embodiments. Repeat.
在本申请的一个实施例中,可选地,所述家电设备包括空调器、电冰箱、风扇、抽油烟机、吸尘器和电脑主机中的至少一种。In an embodiment of the present application, optionally, the household electrical appliance includes at least one of an air conditioner, a refrigerator, a fan, a range hood, a vacuum cleaner, and a host computer.
在该实施例中,通过设置开关管控制供电信号对负载供电,只要母线电压处于该正常变化范围之内,即可保证负载的正常运行,在能够保证负载能够正常运行的前提下,可以针对母线电压的变化设置对应的burst(间歇振荡)模式的控制策略,即间歇输出控制策略,以通过间歇输出控制策略控制高频动作信号处于间歇性的输出状态,即不需要高频动作信号持续处于输出状态,也即开关管不需要持续处于高频动作开关状态,从而能够减小驱动控制电路中功率因数校正模组的导通功耗,以提升采用该驱动控制电路的电器设备(比如空调器)的能效。In this embodiment, the switch tube is set to control the power supply signal to supply power to the load. As long as the bus voltage is within the normal variation range, the normal operation of the load can be guaranteed. Under the premise that the load can operate normally, the bus can be The voltage change sets the corresponding burst (intermittent oscillation) mode control strategy, that is, the intermittent output control strategy, to control the high-frequency action signal in an intermittent output state through the intermittent output control strategy, that is, the high-frequency action signal is not required to be continuously output State, that is, the switch tube does not need to be continuously in the high-frequency action switch state, which can reduce the power consumption of the power factor correction module in the drive control circuit, so as to improve the electrical equipment (such as air conditioner) using the drive control circuit Energy efficiency.
可选地,控制器可以为MCU(Micro-programmed Control Unit,微程序控制器)、CPU(Central Processing Unit,中央处理机)、DSP(Digital Signal Processor,数字信号处理器)和嵌入式设备中的一种,但不限于此。Optionally, the controller can be MCU (Micro-programmed Control Unit), CPU (Central Processing Unit, central processing unit), DSP (Digital Signal Processor), and embedded equipment. One, but not limited to this.
根据本申请的实施例的计算机可读存储介质,其上存储有计算机程序,所述计算机程序被执行时,实现如上述任一项技术方案所述的驱动控制方法的步骤。According to the computer-readable storage medium of the embodiment of the present application, a computer program is stored thereon, and when the computer program is executed, the steps of the drive control method as described in any of the above technical solutions are realized.
通过本申请的技术方案,通过记录所述运行电流的输入时长,并根据所述运行电流和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,如供电信号为周期性信号,根据输入时长控制开关器件进行模式切换,能够在提升负载能效的同时,降低了驱动控制方案的计算量。Through the technical solution of the present application, by recording the input duration of the operating current, and according to the operating current and the input duration, the switching device is controlled to work in the first mode or the second mode, for example, the power supply signal is a period The performance signal, according to the input duration, controls the switching device to switch the mode, which can improve the energy efficiency of the load while reducing the calculation amount of the drive control scheme.
本领域内的技术人员应明白,本申请的实施例可提供为方法、系统、或计算机程序产品。因此,本申请可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本申请可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。Those skilled in the art should understand that the embodiments of the present application can be provided as methods, systems, or computer program products. Therefore, this application may adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Moreover, this application may adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program codes.
本申请是参照根据本申请实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。This application is described with reference to flowcharts and/or block diagrams of methods, devices (systems), and computer program products according to embodiments of this application. It should be understood that each process and/or block in the flowchart and/or block diagram, and the combination of processes and/or blocks in the flowchart and/or block diagram can be implemented by computer program instructions. These computer program instructions can be provided to the processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing equipment to generate a machine, so that the instructions executed by the processor of the computer or other programmable data processing equipment can be generated It is a device that implements the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。These computer program instructions can also be stored in a computer-readable memory that can guide a computer or other programmable data processing equipment to work in a specific manner, so that the instructions stored in the computer-readable memory produce an article of manufacture including the instruction device. The device implements the functions specified in one process or multiple processes in the flowchart and/or one block or multiple blocks in the block diagram.
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个 流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。These computer program instructions can also be loaded on a computer or other programmable data processing equipment, so that a series of operation steps are executed on the computer or other programmable equipment to produce computer-implemented processing, so as to execute on the computer or other programmable equipment. The instructions provide steps for implementing functions specified in a flow or multiple flows in the flowchart and/or a block or multiple blocks in the block diagram.
应当注意的是,在权利要求中,不应将位于括号之间的任何参考符号构造成对权利要求的限制。单词“包含”不排除存在未列在权利要求中的部件或步骤。位于部件之前的单词“一”或“一个”不排除存在多个这样的部件。本申请可以借助于包括有干不同部件的硬件以及借助于适当编程的计算机来实现。在列举了干装置的单元权利要求中,这些装置中的干个可以是通过同一个硬件项来具体体现。单词第一、第二、以及第三等的使用不表示任何顺序。可将这些单词解释为名称。It should be noted that in the claims, any reference signs located between parentheses should not be constructed as limitations on the claims. The word "comprising" does not exclude the presence of parts or steps not listed in the claims. The word "a" or "an" preceding a component does not exclude the presence of multiple such components. This application can be implemented by means of hardware including different components and by means of a suitably programmed computer. In the unit claims listing dry devices, each of these devices may be embodied by the same hardware item. The use of the words first, second, and third does not indicate any order. These words can be interpreted as names.
尽管已描述了本申请的优选实施例,但本领域内的技术人员一旦得知了基本创造性概念,可对这些实施例作出另外的变更和修改。所以,所附权利要求意欲解释为包括优选实施例以及落入本申请范围的所有变更和修改。Although the preferred embodiments of the present application have been described, those skilled in the art can make additional changes and modifications to these embodiments once they learn the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications falling within the scope of this application.
以上仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。The above are only preferred embodiments of the application, and are not used to limit the application. For those skilled in the art, the application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and originality of this application shall be included in the protection scope of this application.

Claims (19)

  1. 一种驱动控制方法,适用于驱动控制电路,所述驱动控制电路设有至少一个开关器件,所述开关器件被配置控制供电信号对负载供电,其中,所述驱动控制方法包括:A drive control method is suitable for a drive control circuit, the drive control circuit is provided with at least one switch device, and the switch device is configured to control a power supply signal to supply power to a load, wherein the drive control method includes:
    检测所述供电信号中输入至所述负载的运行电流,并记录所述运行电流的输入时长;Detecting the operating current input to the load in the power supply signal, and recording the input duration of the operating current;
    根据所述运行电流和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,Controlling the switching device to work in the first mode or the second mode according to the operating current and the input duration,
    其中,所述第一模式被配置为控制所述开关器件截止的模式,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的输入电流跟随输入至所述负载的交流电压。Wherein, the first mode is configured as a mode in which the switching device is turned off, and the second mode is configured as a mode in which the switching device operates according to a specified pulse drive signal, so that the input in the second mode The current follows the AC voltage input to the load.
  2. 根据权利要求1所述的驱动控制方法,其中,在检测所述供电信号对应的运行电流,并记录所述运行电流的输入时长前,还包括:The drive control method according to claim 1, wherein before detecting the operating current corresponding to the power supply signal and recording the input time length of the operating current, the method further comprises:
    预设所述运行电流在所述第一模式下的第一电流阈值和第二电流阈值,所述第一电流阈值小于所述第二电流阈值;Preset a first current threshold and a second current threshold of the operating current in the first mode, where the first current threshold is smaller than the second current threshold;
    根据所述运行电流预设所述第一模式下的工作时长阈值。The operating duration threshold in the first mode is preset according to the operating current.
  3. 根据权利要求2所述的驱动控制方法,其中,根据所述运行电流和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体包括:The driving control method according to claim 2, wherein, according to the operating current and the input duration, controlling the switching device to operate in the first mode or the second mode specifically includes:
    所述开关器件以所述第一模式工作,比较所述运行电流与所述第一电流阈值之间的大小关系,以及比较所述运行电流与所述第二电流阈值之间的大小关系;Operating the switching device in the first mode, comparing the magnitude relationship between the operating current and the first current threshold, and comparing the magnitude relationship between the operating current and the second current threshold;
    确定所述运行电流小于所述第二电流阈值,且所述运行电流大于所述第一电流阈值;Determining that the operating current is less than the second current threshold, and the operating current is greater than the first current threshold;
    根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第一模式工作或切换至所述第二模式工作。According to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the first mode or switch to the second mode to operate.
  4. 根据权利要求1至3中任一项所述的驱动控制方法,其中,The drive control method according to any one of claims 1 to 3, wherein:
    由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻。The time of switching from the first mode to the second mode is the zero-crossing time of the AC signal in the power supply signal.
  5. 根据权利要求1至4中任一项所述的驱动控制方法,其中,在检测所述供电信号对应的运行电流,并记录所述运行电流的输入时长前,还包括:The drive control method according to any one of claims 1 to 4, wherein before detecting the operating current corresponding to the power supply signal and recording the input duration of the operating current, the method further comprises:
    预设所述运行电流在所述第二模式下的第三电流阈值和第四电流阈值,所述第三电流阈值小于所述第四电流阈值;Preset a third current threshold and a fourth current threshold of the operating current in the second mode, where the third current threshold is smaller than the fourth current threshold;
    根据所述运行电流预设所述第二模式下的工作时长阈值。The operating duration threshold in the second mode is preset according to the operating current.
  6. 根据权利要求5所述的驱动控制方法,其中,根据所述运行电流和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体还包括:The driving control method according to claim 5, wherein, according to the operating current and the input duration, controlling the switching device to operate in the first mode or the second mode, specifically further comprising:
    所述开关器件以所述第二模式工作,比较所述运行电流与所述第三电流阈值之间的大小关系,以及比较所述运行电流与所述第四电流阈值之间的大小关系;Operating the switching device in the second mode, comparing the magnitude relationship between the operating current and the third current threshold, and comparing the magnitude relationship between the operating current and the fourth current threshold;
    确定所述运行电流小于所述第四电流阈值,且所述运行电流大于所述第三电流阈值;Determining that the operating current is less than the fourth current threshold, and the operating current is greater than the third current threshold;
    根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作。According to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate.
  7. 一种驱动控制方法,适用于驱动控制电路,所述驱动控制电路设有至少一个开关器件,所述开关器件被配置控制供电信号对负载供电,其中,所述驱动控制方法包括:A drive control method is suitable for a drive control circuit, the drive control circuit is provided with at least one switch device, and the switch device is configured to control a power supply signal to supply power to a load, wherein the drive control method includes:
    检测所述供电信号中输入至所述负载的交流电压,并记录所述交流电压的输入时长;Detecting the AC voltage input to the load in the power supply signal, and recording the input duration of the AC voltage;
    根据所述交流电压和所述输入时长,控制所述开关器件以第一模式工作或第二模式工作,Controlling the switching device to work in the first mode or the second mode according to the AC voltage and the input duration,
    其中,所述第一模式被配置为控制所述开关器件截止的模式,所述第二模式被配置为所述开关器件按照指定脉冲驱动信号工作的模式,以使所述第二模式下的输入电流跟随输入至所述负载的交流电压。Wherein, the first mode is configured as a mode in which the switching device is turned off, and the second mode is configured as a mode in which the switching device operates according to a specified pulse drive signal, so that the input in the second mode The current follows the AC voltage input to the load.
  8. 根据权利要求7所述的驱动控制方法,其中,在检测所述供电信号 对应的交流电压,并记录所述交流电压的输入时长前,还包括:8. The drive control method according to claim 7, wherein before detecting the AC voltage corresponding to the power supply signal and recording the input time length of the AC voltage, the method further comprises:
    预设所述交流电压在所述第一模式下的第一电压阈值和第二电压阈值,所述第一电压阈值小于所述第二电压阈值;Preset a first voltage threshold and a second voltage threshold of the AC voltage in the first mode, the first voltage threshold being smaller than the second voltage threshold;
    根据所述交流电压预设所述第一模式下的工作时长阈值。The operating duration threshold in the first mode is preset according to the AC voltage.
  9. 根据权利要求8所述的驱动控制方法,其中,根据所述交流电压和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体包括:The driving control method according to claim 8, wherein, according to the AC voltage and the input duration, controlling the switching device to operate in the first mode or the second mode specifically includes:
    所述开关器件以所述第一模式工作,确定所述交流电压经整流转换的母线电压;The switching device operates in the first mode, and determines the bus voltage obtained by rectifying and converting the AC voltage;
    比较所述母线电压与所述第一电压阈值之间的大小关系,以及比较所述母线电压与所述第二电压阈值之间的大小关系;Comparing the magnitude relationship between the bus voltage and the first voltage threshold, and comparing the magnitude relationship between the bus voltage and the second voltage threshold;
    确定所述母线电压小于所述第二电压阈值,且所述母线电压大于所述第一电压阈值;Determining that the bus voltage is less than the second voltage threshold, and the bus voltage is greater than the first voltage threshold;
    根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第一模式工作或切换至所述第二模式工作。According to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the first mode or switch to the second mode to operate.
  10. 根据权利要求7至9中任一项所述的驱动控制方法,其中,The drive control method according to any one of claims 7 to 9, wherein:
    由所述第一模式向所述第二模式切换时刻为所述供电信号中的交流信号的过零点时刻。The time of switching from the first mode to the second mode is the zero-crossing time of the AC signal in the power supply signal.
  11. 根据权利要求7至10中任一项所述的驱动控制方法,其中,在检测所述供电信号对应的交流电压,并记录所述交流电压的输入时长前,还包括:The drive control method according to any one of claims 7 to 10, wherein before detecting the AC voltage corresponding to the power supply signal and recording the input time length of the AC voltage, the method further comprises:
    预设所述交流电压在所述第二模式下的第三电压阈值和第四电压阈值,所述第三电压阈值小于所述第四电压阈值;Preset a third voltage threshold and a fourth voltage threshold of the AC voltage in the second mode, the third voltage threshold being smaller than the fourth voltage threshold;
    根据所述交流电压预设所述第二模式下的工作时长阈值。The operating duration threshold in the second mode is preset according to the AC voltage.
  12. 根据权利要求11所述的驱动控制方法,其中,根据所述交流电压和所述输入时长,控制所述开关器件由第一模式工作或第二模式工作,具体还包括:The driving control method according to claim 11, wherein, according to the AC voltage and the input duration, controlling the switching device to operate in the first mode or the second mode, specifically further comprising:
    所述开关器件以所述第二模式工作,比较所述交流电压与所述第三电压阈值之间的大小关系,以及比较所述交流电压与所述第四电压阈值之间 的大小关系;The switching device operates in the second mode, comparing the magnitude relationship between the AC voltage and the third voltage threshold, and comparing the magnitude relationship between the AC voltage and the fourth voltage threshold;
    确定所述交流电压小于所述第四电压阈值,且所述交流电压大于所述第三电压阈值;Determining that the AC voltage is less than the fourth voltage threshold, and the AC voltage is greater than the third voltage threshold;
    根据所述输入时长与对应的工作时长阈值之间的大小关系,控制所述开关器件由所述第二模式工作或切换至所述第一模式工作。According to the magnitude relationship between the input duration and the corresponding operating duration threshold, the switching device is controlled to operate in the second mode or switch to the first mode to operate.
  13. 根据权利要求1至12中任一项所述的驱动控制方法,其中,The drive control method according to any one of claims 1 to 12, wherein:
    由所述第二模式向所述第一模式切换时刻为所述供电信号中的交流信号的过零点时刻。The time of switching from the second mode to the first mode is the zero-crossing point of the AC signal in the power supply signal.
  14. 根据权利要求1至13中任一项所述的驱动控制方法,其中,The drive control method according to any one of claims 1 to 13, wherein:
    所述供电信号中的交流信号为连续信号,且所述交流信号包括交替分布的正半周信号和负半周信号,The AC signal in the power supply signal is a continuous signal, and the AC signal includes alternately distributed positive half-cycle signals and negative half-cycle signals,
    所述第一模式对应的工作周期包括整数个半周波时长,和/或所述第二模式对应的工作周期包括整数个所述半周波时长,The work period corresponding to the first mode includes an integer number of half-cycle durations, and/or the work period corresponding to the second mode includes an integer number of the half-cycle durations,
    其中,所述半周波时长包括所述正半周信号的持续时长和所述负半周信号的持续时长。Wherein, the half-cycle duration includes the duration of the positive half-cycle signal and the duration of the negative half-cycle signal.
  15. 根据权利要求1至14中任一项所述的驱动控制方法,其中,还包括:The drive control method according to any one of claims 1 to 14, further comprising:
    检测所述负载的电流,根据所述负载的电流计算确定所述负载的功率;Detecting the current of the load, and calculating and determining the power of the load according to the current of the load;
    确定所述第二模式下给定电流对应的所述负载的输入功率;Determining the input power of the load corresponding to a given current in the second mode;
    计算所述输入功率与所述负载的功率之间的差值,所述差值被配置为充电功率;Calculating a difference between the input power and the power of the load, the difference being configured as charging power;
    根据所述充电功率确定母线信号的变化率;Determining the rate of change of the bus signal according to the charging power;
    根据所述母线信号的变化率确定所述第二模式下的给定电流的最小值,Determine the minimum value of the given current in the second mode according to the rate of change of the bus signal,
    其中,所述给定电流被配置为控制所述母线信号上升。Wherein, the given current is configured to control the rise of the bus signal.
  16. 一种驱动控制装置,所述驱动控制装置包括处理器,其中,所述处理器执行计算机程序时实现:A drive control device, the drive control device includes a processor, wherein when the processor executes a computer program:
    如权利要求1至15中任一项所述的驱动控制方法的步骤。The step of the drive control method according to any one of claims 1 to 15.
  17. 一种家电设备,其中,包括:A household electrical appliance, including:
    负载;load;
    如权利要求16所述的驱动控制装置;The drive control device according to claim 16;
    驱动控制电路,所述驱动控制电路受控于所述驱动控制装置,所述驱动控制电路设有至少一个开关器件,所述开关器件被配置控制供电信号对负载供电。A drive control circuit, the drive control circuit is controlled by the drive control device, the drive control circuit is provided with at least one switching device, and the switching device is configured to control a power supply signal to supply power to the load.
  18. 根据权利要求17所述的家电设备,其中,The household electrical appliance according to claim 17, wherein:
    所述家电设备包括空调器、电冰箱、风扇、抽油烟机、吸尘器和电脑主机中的至少一种。The home appliance includes at least one of an air conditioner, a refrigerator, a fan, a range hood, a vacuum cleaner, and a computer host.
  19. 一种计算机可读存储介质,其上存储有计算机程序,其中,所述计算机程序被执行时,实现如权利要求1至15中任一项所述的驱动控制方法的步骤。A computer-readable storage medium having a computer program stored thereon, wherein when the computer program is executed, the steps of the drive control method according to any one of claims 1 to 15 are realized.
PCT/CN2019/097556 2019-05-31 2019-07-24 Driving control method and apparatus, and household device and computer readable storage medium WO2020237809A1 (en)

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CN201910472267.3A CN112019023B (en) 2019-05-31 2019-05-31 Drive control method, device, household appliance and computer readable storage medium
CN201910473276.4A CN112019065B (en) 2019-05-31 2019-05-31 Drive control method, device, household appliance and computer readable storage medium
CN201910472267.3 2019-05-31

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