Detailed Description
So that the manner in which the features and elements of the disclosed embodiments can be understood in detail, a more particular description of the disclosed embodiments, briefly summarized above, may be had by reference to the embodiments, some of which are illustrated in the appended drawings. In the following description of the technology, for purposes of explanation, numerous details are set forth in order to provide a thorough understanding of the disclosed embodiments. However, one or more embodiments may be practiced without these details. In other instances, well-known structures and devices may be shown in simplified form in order to simplify the drawing.
The terms "first," "second," and the like in the description and in the claims, and the above-described drawings of embodiments of the present disclosure, are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It should be understood that the data so used may be interchanged under appropriate circumstances such that embodiments of the present disclosure described herein may be made. Furthermore, the terms "comprising" and "having," as well as any variations thereof, are intended to cover non-exclusive inclusions.
The term "plurality" means two or more unless otherwise specified.
In the embodiment of the present disclosure, the character "/" indicates that the preceding and following objects are in an or relationship. For example, A/B represents: a or B.
The term "and/or" is an associative relationship that describes objects, meaning that three relationships may exist. For example, a and/or B, represents: a or B, or A and B.
In this embodiment of this disclosure, including air conditioner and the cooking utensil that can carry out communication connection in the wisdom home systems, like this, receive the temperature value that the cooking utensil sent in the scope of action of air conditioner to acquire the environmental parameter value that the air conditioner detected, and steerable air conditioner carries out the environmental cleaning, include: the air conditioner is controlled to operate in a fresh air mode, so that the air in the restaurant is cleaned. Under the condition that the system comprises the sweeping robot, the sweeping robot can be controlled to sweep the ground of the restaurant area, so that an intelligent scene of the restaurant is realized, the home intelligence is improved, a healthy and comfortable living environment is provided, and the living quality of a user is improved.
Fig. 1 is a schematic structural diagram of a smart home system for environmental cleaning according to an embodiment of the present disclosure. As shown in fig. 1, the smart home system includes: an air conditioner 100 and a cooker 200. Wherein the air conditioner 100 can be communicatively connected with the cooker 200. For example: the air conditioner 100 may be in wireless communication connection with the cooker 200 through one of wireless lan WIFI connection, bluetooth connection, infrared connection, zigbee communication connection, and the like.
The cooker 200 may include: an electric chafing dish, an induction cooker, a gas stove, etc., and the cooker 200 may be provided with a temperature detecting means such as: the temperature sensor can detect the temperature value of the cooker 200 through the temperature detection device, and generally, the temperature changes after the cooker 200 is started, so that the temperature value of the cooker can be obtained through the temperature detection device when the cooker is in a starting state.
In the smart home system shown in fig. 1, the cooker 200 is configured to transmit a current temperature value to the air conditioner 100 in a state of being turned on.
The air conditioner 100 is configured to acquire a current temperature value sent by a cooker and a current environment parameter value detected by the air conditioner under the condition that the cooker in an action range of the air conditioner is in an open state; and controlling the air conditioner to clean the environment according to the current temperature value and the current environmental parameter value.
The cooker 200 obtains the temperature value of the cooker through the configured temperature sensor, and can communicate with the air conditioner 100, so that when the cooker 200 is in the action range of the air conditioner 100, the air conditioner 100 can obtain the temperature value detected by the cooker in an open state in real time or at regular time, the obtained temperature value each time is the current temperature value corresponding to the current time, and the air conditioner can also detect the environmental parameter value in the action area, which can include: one or more of indoor temperature value, indoor humidity value, air particle concentration value and the like, namely, the air conditioner can detect the environment in real time or at regular time, and each detection can obtain the corresponding current environment parameter value, including: a current indoor temperature value, a current indoor humidity value, a current air particle concentration value, and/or the like.
In this way, the air conditioner 100 can control the air conditioner to perform environmental cleaning according to the current temperature value and the current environmental parameter value. Wherein, first of all it is clean to carry out the air, can include: determining the current wind speed of a fresh air mode of the air conditioner according to the current temperature value, the current air particle concentration value in the current environment parameter value and the current indoor humidity value; and controlling the fresh air mode to operate according to the current wind speed, and cleaning air.
In the embodiment of the present disclosure, when the air conditioner includes a restaurant in which there are cookers such as an electric chafing dish, an induction cooker, and a gas stove, and the cookers are in the range of the air conditioner, the cookers are in an open state, and it is possible to cook food, for example: when the user eats the hot pot, the air needs to be cleaned, at this time, the air conditioner 100 can obtain the current temperature value sent by the cooker and the current environmental parameter value detected by the air conditioner, and can determine the current wind speed of the fresh air mode of the air conditioner according to the current temperature value, the current air particle concentration value and the current indoor humidity value in the current environmental parameter value, and then can control the fresh air mode to operate according to the current wind speed to clean the air.
The cooking utensils in the action range of the air conditioner are determined to have the using behaviors, the air conditioner can be controlled to operate in a fresh air mode, and therefore unclean air can be discharged, indoor air is kept clean, the intelligent scene of a restaurant is achieved, and home intelligence is improved.
In some embodiments, the air conditioner can not only clean the air in the restaurant, but also adjust the temperature in the restaurant during the use of the cookware within the range of the air conditioner, and may include: determining a target temperature value of the air conditioner according to the current temperature value; and controlling the temperature regulation operation of the air conditioner according to the target temperature value and the current indoor temperature value in the current environment parameter value.
After the target temperature value matched with the current temperature value of the cooker is determined, one or more parameters of the compressor operation frequency, the indoor fan rotating speed, the expansion valve opening degree and the like of the air conditioner can be adjusted according to the target temperature value and the current indoor temperature value in the current environment parameter value, so that the temperature in the action range of the air conditioner, including the temperature in a restaurant, is adjusted.
The cooker 200 can communicate with the air conditioner 100 whether the cooker 200 is in a restaurant, kitchen or other location, i.e., the cooker 200 can communicate with the air conditioner 100 whether the cooker 200 is within the range of the air conditioner or outside the range of the air conditioner, i.e., with or without a cooker within the range of the air conditioner.
In some embodiments, when the cooker 200 is turned on, an on command may be transmitted to the air conditioner 100, so that the air conditioner 100 may determine that the cooker 200 is in an on state. Of course, when the cooker 200 is closed, a closing command may be transmitted to the air conditioner 100, and likewise, the air conditioner 100 may determine that the cooker 200 is in a closed state.
In some embodiments, the air conditioner is provided with an image monitoring device, and the image of the cookware in the action area of the air conditioner can be acquired through the image monitoring device, and the opening or closing of the cookware can be determined through image recognition.
The image monitoring equipment in the air conditioner can be started all the time, so that resources are saved, and the image monitoring equipment of the air conditioner can be started when the cooker is started. For example: and when an opening instruction sent by the cooker is received, the configured image monitoring equipment can be opened.
Fresh air mode through the air conditioner can be to the air in the active area clean, and in some embodiments, wisdom home systems still includes: the sweeping robot connected with the air conditioner in a communication mode can clean the ground by controlling the sweeping robot. As shown in fig. 1, the smart home system includes: the air conditioner 100, and the cooker 200 and the sweeping robot 300 which are respectively connected with the air conditioner 100 in a communication way. Thus, environmental cleaning may include not only air cleaning but also floor cleaning, i.e., controlling an air conditioner for environmental cleaning further includes: under the condition that the time length of the cookers in the action range of the air conditioner from the opening state to the closing state is longer than the set time length, acquiring a first number of people in a first area where the cookers are located; and under the condition that the first person number is determined to be zero, sending a first cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the first area. Wherein, the first area can be previously provided with devices such as: the location within the set radius may be a first zone centered on the cookware. Or the first area is an area corresponding to the action range of the air conditioner, or the first area is an area corresponding to a restaurant.
In a system comprising the air conditioners 100 and 200 and the sweeping robot 300, the air conditioner 100 is configured to acquire a first number of people in a first area where cookers 200 are located when the cookers 200 in an action range of the air conditioner are switched from an on state to an off state for a time period longer than a set time period; and under the condition that the first person number is determined to be zero, sending a first cleaning instruction to the sweeping robot 300, and controlling the sweeping robot 300 to clean the first area.
The sweeping robot 300 is configured to receive a first sweeping instruction and sweep the first area according to the first sweeping instruction.
In some embodiments, the cooker within the range of action of the air conditioner may determine whether the time period for switching from the on state to the off state is greater than the set time period? The method comprises the steps that a threshold reaching instruction can be sent to the air conditioner under the condition that the time length for switching from the opening state to the closing state is larger than the set time length, therefore, the air conditioner obtains the first number of people in a first area where a cooker is located under the condition that the threshold reaching instruction is received by the air conditioner, and sends a first cleaning instruction to the sweeping robot under the condition that the first number of people is determined to be zero, and the sweeping robot is controlled to clean the first area.
In some embodiments, the air conditioner may determine whether a time period for switching from the on state to the off state is greater than a set time period? The air conditioner can start timing under the condition that a closing instruction sent by cookers in the action range of the air conditioner is received, and when the timing is longer than a set time length, the time length for switching the cookers in the action range of the air conditioner from an open state to a closed state can be determined to be longer than the set time length, so that the first number of people in a first area where the cookers are located can be obtained; and sending a first cleaning instruction to the sweeping robot under the condition that the first person number is determined to be zero, and controlling the sweeping robot to clean the first area.
Wherein obtaining a first number of people in the first area where cookware is located may include: acquiring a first image of a first area where a cooker is located through image monitoring equipment in an air conditioner; and carrying out image recognition on the first image, and determining the first number of people in the first area. Wherein, in some embodiments, the image monitoring device is activated when the cookware is turned on.
For example: the image monitoring equipment can be a CCD (Charge-coupled Device) camera, and no matter where the cooker is located, the air conditioner can start the configured CCD camera when receiving a starting instruction sent by the cooker when the cooker is opened, so that under the condition that the time length of the cooker in the action range of the air conditioner switched from the opening state to the closing state is longer than the set time length, a first image of a first area where the cooker is located can be obtained through the CCD camera; and carrying out image recognition on the first image, determining the first number of people in the first area, and sending a first cleaning instruction to the sweeping robot under the condition that the first number of people is determined to be zero, so as to control the sweeping robot to clean the first area.
Or, acquiring a first number of people in a first area where the cooker is located through an infrared human body detection device arranged on the air conditioner, and sending a first cleaning instruction to the sweeping robot to control the sweeping robot to clean the first area under the condition that the first number of people is determined to be zero.
Therefore, in the smart home system comprising the air conditioner, the cooker and the sweeping robot, corresponding air and ground cleaning can be performed according to the using state of the cooker, the smart scene of a restaurant is realized, home intelligence is improved, a comfortable and healthy environment is provided for a user, and user experience is improved.
Of course, no cooker is in the action range of the air conditioner, or the cooker in the action range of the air conditioner is in a closed state consistently, that is, the switching from the open state to the closed state is not performed, and the air conditioner can also control the floor sweeping robot to clean the floor and adjust the temperature. In some embodiments, the air conditioner is configured to acquire a second number of people in a second area corresponding to the restaurant in the action range of the air conditioner under the condition that no cooker is in the action range of the air conditioner; and under the condition that the second number of people is determined to be zero, sending a second cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the second area. Accordingly, the sweeping robot is configured to receive the second sweeping instruction and sweep the second area according to the second sweeping instruction. The second area may be a restaurant corresponding location or an air conditioning range corresponding area, and of course, the first area and the second area may be equal or different. Of course, it is possible to set the time period, for example: after the meal is finished, the second number of people is identified, or under the condition that other corresponding conditions after the meal are met, the second number of people is identified.
Similarly, a second number of people in the second area can be obtained through the image monitoring device or the infrared human body detection device, and the description is not repeated.
Regardless of whether the smart home system has the sweeping robot or not, in some embodiments, the air conditioner may be configured to perform mode switching and operation of the air conditioner according to a current environmental parameter value detected by the air conditioner in a case that no cooker is present in an action range of the air conditioner.
It can be seen that, among the wisdom home systems, the air conditioner can link with cooking utensil, the robot of sweeping the floor, can be according to every use action of cooking utensil, and one or two kinds of control air conditioner and the robot of sweeping the floor carry out environment cleanness such as air, ground, have realized the wisdom scene in dining room, have improved house intelligence, also provide comfortable healthy environment for the user, have improved user experience.
In foretell wisdom home systems, the air conditioner can carry out the linkage with cooking utensil, robot of sweeping the floor, realizes the cleanness of environment. Fig. 2 is a schematic flowchart of an environmental cleaning method for a smart home system according to an embodiment of the disclosure. As shown in fig. 2, the process for environmental cleaning in the smart home system includes:
step 201: and under the condition that the cooker in the action range of the air conditioner is in an open state, acquiring the current temperature value sent by the cooker and the current environmental parameter value detected by the air conditioner.
In the embodiment of the present disclosure, the process of cleaning the environment may be applied to an air conditioner, and may also be applied to other electrical devices in the smart home system, such as a control center device, a television, a smart sound box, and the like.
The air conditioner can be generally positioned in a restaurant, a living room and the like, namely, the action area of the air conditioner can cover the restaurant. When a user eats hot pot in a restaurant or cooks food in an active area of an air conditioner, it indicates that there is a cooker in the active area of the air conditioner, and of course, the cooker includes: electric chafing dish, induction cooker, gas stove, etc. And, the cooker is in an open state, and food can be cooked.
Certainly, the temperature sensor is configured on the cooker in the smart home system, and the cooker can acquire the temperature value of the cooker in the open state through the temperature sensor, so that the temperature value sent by the cooker in the action range of the air conditioner can be acquired through communication with the cooker, and can be acquired at regular time or in real time, and the temperature value is acquired correspondingly at each acquisition time.
Cookware in other locations, for example: kitchen, or other areas beyond the range of action of the air conditioner, or other electrical equipment, may not necessarily need to acquire the temperature value sent by the cookware in the on state.
Under the condition that the cooker in the action range of the air conditioner is in an open state, not only the current temperature value sent by the cooker needs to be obtained, but also the current environmental parameter value detected by the air conditioner needs to be obtained, wherein the current environmental parameter value comprises: a current indoor temperature value, a current indoor humidity value, a current air particle concentration value, and/or the like.
Step 202: and controlling the air conditioner to clean the environment according to the current temperature value and the current environment parameter value.
The cooker in the air-conditioning action area is in an open state, which indicates that air cleaning is needed, so that the current wind speed of the fresh air mode of the air conditioner can be determined according to the current temperature value, the current air particle concentration value and the current indoor humidity value in the current environmental parameter value; and controlling the fresh air mode to operate according to the current wind speed, and cleaning air.
The corresponding relation between the temperature value, the air particle concentration value and the humidity value and the wind speed in the fresh air mode can be stored in advance, the current wind speed of the fresh air mode matched with the current temperature value, the current air particle concentration value in the current environment parameter value and the current indoor humidity value can be determined according to the stored corresponding relation, and then the fresh air mode is controlled to operate according to the current wind speed to clean air.
Of course, in some embodiments, the current environmental parameter value includes an air particle concentration value, but has no humidity value, and also determines a current wind speed of the fresh air mode matched with the current temperature value and the current air particle concentration value, and then controls the fresh air mode to operate according to the current wind speed to clean air.
It is thus clear that, in this embodiment, the cooking utensil of air conditioner within range is in the state of opening, through the new trend mode of air conditioner, can carry out the air cleaning, has realized the wisdom scene in dining room, has improved house intelligence, also provides comfortable healthy environment for the user, has improved user experience.
In some embodiments, the air cleaning may be performed simultaneously with temperature adjustment, which may include: determining a target temperature value of the air conditioner according to the current temperature value; and controlling the temperature regulation operation of the air conditioner according to the target temperature value and the current indoor temperature value in the current environment parameter value. Thus, temperature adjustment can be performed by adjusting the compressor frequency, the expansion valve opening degree, the fan rotation speed, and the like.
Of course, if the smart home system includes: the robot of sweeping the floor, clean still including in environment: the floor cleaning, namely the control of the air conditioner for environmental cleaning, further comprises: under the condition that the time length of the cookers in the action range of the air conditioner from the opening state to the closing state is longer than the set time length, acquiring the number of people in a first area where the cookers are located; and under the condition that the number of people in the first area is determined to be zero, sending a first cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the first area.
The number of people in the first area where the cooker is located can be determined through image recognition, namely the air conditioner can be provided with image monitoring equipment, and a first image of the first area where the cooker is located can be obtained through the image monitoring equipment; and carrying out image recognition on the first image, and determining the number of people in the first area where the cooker is located, so that a first cleaning instruction is sent to the sweeping robot under the condition that the number of people in the first area is determined to be zero according to the first image, and the sweeping robot is controlled to clean the first area. In some embodiments, in order to save resources, the image monitoring device may be started when the cooker is started, that is, the image monitoring device may be started when a start instruction sent by the cooker is received, so that the image monitoring device is started when the cooker is started, and thus, the first image does not need to be acquired in real time, and resources are saved.
In some embodiments, the number of people in the first area where the cooker is located can be determined through the infrared human body detection device, and when the number of people in the first area is determined to be zero, a first cleaning instruction is sent to the sweeping robot, and the sweeping robot is controlled to clean the first area.
Therefore, in the smart home system comprising the air conditioner, the cooker and the sweeping robot, corresponding air and ground cleaning can be performed according to the using state of the cooker, the smart scene of a restaurant is realized, home intelligence is improved, a comfortable and healthy environment is provided for a user, and user experience is improved.
In some embodiments, no cooker is in the action range of the air conditioner, or the cooker in the action range of the air conditioner is in a closed state, and the air conditioner can also control the sweeping robot to clean the ground and adjust the temperature. In some embodiments, in the case that no cooker is in the action range of the air conditioner, acquiring a second number of people in a second area corresponding to the restaurant in the action range of the air conditioner; and under the condition that the second number of people is determined to be zero, sending a second cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the second area.
In some embodiments, the mode of the air conditioner is switched and operated according to the current environmental parameter value detected by the air conditioner under the condition that no cooker is arranged in the action range of the air conditioner no matter whether the intelligent home system has the sweeping robot or not.
Certainly, the clean process of environment among the smart home systems can be applied to the air conditioner, and the air conditioner accessible control self operation mode and the robot of sweeping the floor realize clean environment, and perhaps, the clean process of environment can be applied to among other smart machines of smart home systems, for example: control center equipment, televisions, smart speakers, and the like. Certainly, the intelligent devices can communicate with the air conditioner, the cooker and the sweeping robot respectively, and acquire the current temperature value sent by the cooker and the current environmental parameter value detected by the air conditioner under the condition that the cooker in the action range of the air conditioner is in an open state; controlling an air conditioner to clean air according to the current temperature value and the current environmental parameter value, and acquiring a first number of people in a first area where cookers are located under the condition that the time length for switching the cookers in the action range of the air conditioner from an open state to a closed state is longer than a set time length; under the condition that the first person number is determined to be zero, a first cleaning instruction is sent to the sweeping robot, the sweeping robot is controlled to sweep a first area, and the like, namely, the intelligent equipment can respectively control the air conditioner and the sweeping robot, so that the environment is cleaned, and the situation that the environment is clean is not particularly mentioned.
The following operational flow is integrated into an embodiment to illustrate an environmental cleaning process for a smart home system according to an embodiment of the present invention.
In this embodiment, as shown in fig. 1, the smart home system includes: an air conditioner, and a cooking utensil and a sweeping robot which are in communication connection with the air conditioner. The environment cleaning process is applied to the air conditioner, and a CCD camera is arranged in the air conditioner.
Fig. 3 is a schematic flowchart illustrating an environmental cleaning method for a smart home system according to an embodiment of the disclosure. With reference to fig. 1 and 3, a process for environmental cleaning in a smart home system includes:
step 301: is it judged whether the cooker is in the opened state? If yes, go to step 302, otherwise, go back to step 301.
The cooker is determined to be in an open state upon receiving an open command transmitted from the cooker, or the cooker is determined to be in an open state upon receiving a temperature value transmitted from the cooker.
Step 302: is it determined that the CCD camera is in an on state and is it determined whether the cookware is within the range of the air conditioner? If so, go to step 303, otherwise, go to step 311.
By receiving an opening instruction or other information transmitted from the cooker, the position information of the cooker can be determined, and thus, can it be determined whether the cooker is within the range of the air conditioner according to the position information?
Step 303: and acquiring the current temperature value sent by the cooker and the current environmental parameter value detected by the air conditioner.
The current temperature value is obtained from the temperature values sent by the cooker in the opening state, and the current environmental parameter value can be obtained through a temperature sensor, a humidity sensor and an air quality detection device configured on the air conditioner.
Step 304: and determining the current wind speed of the fresh air mode of the air conditioner according to the current temperature value, the current air particle concentration value in the current environment parameter value and the current indoor humidity value, and controlling the fresh air mode to operate according to the current wind speed to clean the air.
Step 305: and determining a target temperature value of the air conditioner according to the current temperature value, and controlling the temperature regulation operation of the air conditioner according to the target temperature value and the current indoor temperature value in the current environment parameter value.
In the embodiment of the present disclosure, step 304 and step 305 may be executed in parallel.
Step 306: is it judged whether the cooker is in the closed state? If yes, go to step 307, otherwise, go back to step 303.
Receiving a closing command from the cooker, it can be determined that the cooker is in a closed state, or, through a CCD camera, it can be identified whether the cooker is in a closed state?
Step 307: is it judged whether or not the time period during which the cooker is in the closed state is longer than the set time period? If yes, go to step 308, otherwise, go back to step 307.
Step 308: the method comprises the steps of acquiring a first image of a first area where a cooker is located through a CCD camera, carrying out image recognition on the first image, and determining the first number of people in the first area.
Step 309: is the first person judged to be zero? If yes, go to step 310, otherwise, go back to step 308.
Step 310: and sending a first cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the first area. The process is finished.
Step 311: and switching the mode of the air conditioner and operating according to the current environmental parameter value detected by the air conditioner, acquiring a second image of a second area corresponding to the restaurant in the air conditioning action range through the CCD camera, performing image recognition on the second image, and determining the second number of people in the second area.
Step 312: is the second number of people judged to be zero? If yes, go to step 313, otherwise, return to 311.
Step 313: and sending a second cleaning instruction to the cleaning robot, and controlling the cleaning robot to clean the second area. The process is finished.
Therefore, in the embodiment, the air conditioner in the smart home system can be linked with the cooker and the sweeping robot, the operation mode of the air conditioner can be controlled to clean air according to various using behaviors of the cooker, and the sweeping robot is controlled to clean the ground, so that the environmental cleaning is realized. Like this, not only realized the wisdom scene in dining room, improved house intelligence, also improved the intelligence of air conditioner, at present, also for the user provides comfortable healthy environment, improved user experience.
Certainly, the air conditioner among the wisdom home systems not only can carry out the linkage with cooking utensil, robot of sweeping the floor, still can realize the linkage with cooking utensil, robot of sweeping the floor, dish washer etc. for example: and sending a heating instruction to the dishwasher to control the dishwasher to perform preheating treatment under the condition that the time length for switching the cooker from the opening state to the closing state is longer than a second set time length.
According to the above process for environmental cleaning in a smart home system, a device for environmental cleaning in a smart home system can be constructed. The wisdom home systems includes: an air conditioner and a cooker in communication connection with the air conditioner. The air cleaning device can be located in an air conditioner, and of course, can also be located in a control center device of a smart home system, a television, or an intelligent sound box.
Fig. 4 is a schematic structural diagram of an environmental cleaning apparatus for use in a smart home system according to an embodiment of the disclosure. As shown in fig. 4, the environmental cleaning apparatus for use in a smart home system includes: a first acquisition module 410 and a first control module 420.
The first obtaining module 410 is configured to obtain a current temperature value sent by a cooker in an action range of the air conditioner and a current environmental parameter value detected by the air conditioner when the cooker is in an on state.
And the first control module 420 is configured to control the air conditioner to perform environmental cleaning according to the current temperature value and the current environmental parameter value.
In some embodiments, the first control module 420 is specifically configured to determine a current wind speed of a fresh air mode of the air conditioner according to the current temperature value, the current air particle concentration value in the current environmental parameter value, and the current indoor humidity value; and controlling the fresh air mode to operate according to the current wind speed, and cleaning air.
In some embodiments, further comprising: the second control module is configured to determine a target temperature value of the air conditioner according to the current temperature value; and controlling the temperature regulation operation of the air conditioner according to the target temperature value and the current indoor temperature value in the current environment parameter value.
In some embodiments, the smart home system further comprises: the first control module 420 is further configured to acquire a first number of people in the first area where the cookers are located when the cookers in the action range of the air conditioner are switched from the open state to the closed state for a time period longer than a set time period; and under the condition that the first person number is determined to be zero, sending a first cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the first area.
In some embodiments, the smart home system further comprises: the robot of sweeping the floor of being connected with the air conditioner communication, the device still includes: the third control module is configured to acquire a second number of people in a second area corresponding to the restaurant in the action range of the air conditioner under the condition that no cooker is in the action range of the air conditioner; and under the condition that the second number of people is determined to be zero, sending a second cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the second area.
In some embodiments, further comprising: and the fourth control module is configured to switch the mode of the air conditioner and operate according to the current environmental parameter value detected by the air conditioner under the condition that no cooker is in the action range of the air conditioner.
The following describes an environmental cleaning process in a smart home system applied to a device for environmental cleaning in a smart home system in an air conditioner in detail.
In this embodiment, as shown in fig. 1, the smart home system includes: the air conditioner, a cooker and a sweeping robot are in communication connection with the air conditioner. The air cleaning device is arranged in the air conditioner, and the air conditioner is also provided with an infrared human body detection device.
Fig. 5 is a schematic structural diagram of an environmental cleaning apparatus for use in a smart home system according to an embodiment of the disclosure.
As shown in fig. 5, the environmental cleaning apparatus for use in a smart home system includes: the system comprises a first acquisition module 410, a first control module 420, a second control module 430, a third control module 440, and a fourth control module 450.
Wherein, when it is determined that the cooker is in the open state and that the cooker is within the range of the air conditioner, the first obtaining module 410 may obtain the current temperature value sent by the cooker and the current environmental parameter value detected by the air conditioner in real time or at regular time. Thus, the first control module 420 may determine the current wind speed of the fresh air mode of the air conditioner according to the current temperature value, the current air particle concentration value in the current environmental parameter value, and the current indoor humidity value; and controlling the fresh air mode to operate according to the current wind speed, and cleaning air. Moreover, the second control module 430 may determine a target temperature value of the air conditioner according to the current temperature value; and controlling the temperature regulation operation of the air conditioner according to the target temperature value and the current indoor temperature value in the current environment parameter value.
The cookers in the air-conditioning action range are switched from the open state to the closed state, and the time length of the switched closed state is longer than the set time length, at this time, the first control module 420 can also determine the first number of people in the first area where the cookers are located through the infrared human body detection device, and send a first cleaning instruction to the sweeping robot under the condition that the first number of people is zero, so as to control the sweeping robot to clean the first area.
Of course, the cooker is not in the range of the air conditioner, and the fourth control module 450 may switch the mode of the air conditioner and operate the air conditioner according to the current environmental parameter value detected by the air conditioner when the cooker is not in the range of the air conditioner. Moreover, after the cooker is not opened within the action range of the air conditioner, the third control module 440 may further obtain a second number of people in a second area corresponding to the restaurant within the action range of the air conditioner through the infrared human body detection device; and under the condition that the second number of people is determined to be zero, sending a second cleaning instruction to the sweeping robot, and controlling the sweeping robot to clean the second area.
Therefore, in the embodiment, the device for cleaning the environment in the smart home system determines the using state of the cooker, so that the air conditioner can be controlled to operate in a fresh air mode, the air in a restaurant is cleaned, the floor cleaning robot is controlled to clean the ground, the intelligent cleaning of the environment in the restaurant is realized, the smart scene of the restaurant is also realized, the home intelligence is improved, a healthy and comfortable living environment is also provided, and the life quality of a user is improved.
The embodiment of the present disclosure provides a device for environmental cleaning in a smart home system, the structure of which is shown in fig. 6, including:
a processor (processor)1000 and a memory (memory)1001, and may further include a Communication Interface (Communication Interface)1002 and a bus 1003. The processor 1000, the communication interface 1002, and the memory 1001 may communicate with each other through the bus 1003. Communication interface 1002 may be used for the transfer of information. The processor 1000 may call the logic instructions in the memory 1001 to execute the method for environmental cleaning in the smart home system according to the above embodiment.
In addition, the logic instructions in the memory 1001 may be implemented in the form of software functional units and stored in a computer readable storage medium when the logic instructions are sold or used as independent products.
The memory 1001 is a computer readable storage medium and can be used for storing software programs, computer executable programs, such as program instructions/modules corresponding to the methods in the embodiments of the present disclosure. The processor 1000 executes the functional application and data processing by executing the program instructions/modules stored in the memory 1001, so as to implement the method for environmental cleaning in the smart home system in the above-described method embodiment.
The memory 1001 may include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application program required for at least one function; the storage data area may store data created according to the use of the terminal air conditioner, and the like. Further, the memory 1001 may include a high-speed random access memory and may also include a nonvolatile memory.
The embodiment of the present disclosure provides an environmental cleaning device for smart home systems, including: a processor and a memory storing program instructions, the processor configured to, when executing the program instructions, perform an environmental cleaning method for use in a smart home system.
The embodiment of the disclosure provides an air conditioner, including the above-mentioned environmental cleaning device that is arranged in wisdom home systems.
The embodiment of the disclosure provides control center equipment in a smart home system, which comprises the environment cleaning device used in the smart home system.
The disclosed embodiments provide a computer-readable storage medium storing computer-executable instructions configured to perform the above-described method for environmental cleaning in a smart home system.
The disclosed embodiments provide a computer program product comprising a computer program stored on a computer readable storage medium, the computer program comprising program instructions which, when executed by a computer, cause the computer to perform the above-described method for environmental cleaning in a smart home system.
The computer-readable storage medium described above may be a transitory computer-readable storage medium or a non-transitory computer-readable storage medium.
The technical solution of the embodiments of the present disclosure may be embodied in the form of a software product, where the computer software product is stored in a storage medium and includes one or more instructions for enabling a computer air conditioner (which may be a personal computer, a server, or a network air conditioner, etc.) to execute all or part of the steps of the method of the embodiments of the present disclosure. And the aforementioned storage medium may be a non-transitory storage medium comprising: a U-disk, a removable hard disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk or an optical disk, and other various media capable of storing program codes, and may also be a transient storage medium.
The above description and drawings sufficiently illustrate embodiments of the disclosure to enable those skilled in the art to practice them. Other embodiments may incorporate structural, logical, electrical, process, and other changes. The examples merely typify possible variations. Individual components and functions are optional unless explicitly required, and the sequence of operations may vary. Portions and features of some embodiments may be included in or substituted for those of others. The scope of the disclosed embodiments includes the full ambit of the claims, as well as all available equivalents of the claims. As used in this application, although the terms "first," "second," etc. may be used in this application to describe various elements, these elements should not be limited by these terms. These terms are only used to distinguish one element from another. For example, a first element could be termed a second element, and, similarly, a second element could be termed a first element, unless the meaning of the description changes, so long as all occurrences of the "first element" are renamed consistently and all occurrences of the "second element" are renamed consistently. The first and second elements are both elements, but may not be the same element. Furthermore, the words used in the specification are words of description only and are not intended to limit the claims. As used in the description of the embodiments and the claims, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. Similarly, the term "and/or" as used in this application is meant to encompass any and all possible combinations of one or more of the associated listed. Furthermore, the terms "comprises" and/or "comprising," when used in this application, specify the presence of stated features, integers, steps, operations, elements, and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components, and/or groups thereof. Without further limitation, an element defined by the phrase "comprising an …" does not exclude the presence of other like elements in a process, method or air conditioner that comprises the element. In this document, each embodiment may be described with emphasis on differences from other embodiments, and the same and similar parts between the respective embodiments may be referred to each other. For methods, products, etc. of the embodiment disclosures, reference may be made to the description of the method section for relevance if it corresponds to the method section of the embodiment disclosure.
Those of skill in the art would appreciate that the various illustrative elements and algorithm steps described in connection with the embodiments disclosed herein may be implemented as electronic hardware or combinations of computer software and electronic hardware. Whether such functionality is implemented as hardware or software may depend upon the particular application and design constraints imposed on the solution. Skilled artisans may implement the described functionality in varying ways for each particular application, but such implementation decisions should not be interpreted as causing a departure from the scope of the disclosed embodiments. It can be clearly understood by the skilled person that, for convenience and brevity of description, the specific working processes of the system, the apparatus and the unit described above may refer to the corresponding processes in the foregoing method embodiments, and are not described herein again.
In the embodiments disclosed herein, the disclosed methods, products (including but not limited to devices, air conditioners, etc.) may be implemented in other ways. For example, the above-described apparatus embodiments are merely illustrative, and for example, the division of the units may be merely a logical division, and in actual implementation, there may be another division, for example, multiple units or components may be combined or integrated into another system, or some features may be omitted, or not executed. In addition, the shown or discussed mutual coupling or direct coupling or communication connection may be an indirect coupling or communication connection through some interfaces, devices or units, and may be in an electrical, mechanical or other form. The units described as separate parts may or may not be physically separate, and parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network units. Some or all of the units can be selected according to actual needs to implement the present embodiment. In addition, functional units in the embodiments of the present disclosure may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit.
The flowchart and block diagrams in the figures illustrate the architecture, functionality, and operation of possible implementations of systems, methods and computer program products according to embodiments of the present disclosure. In this regard, each block in the flowchart or block diagrams may represent a module, segment, or portion of code, which comprises one or more executable instructions for implementing the specified logical function(s). In some alternative implementations, the functions noted in the block may occur out of the order noted in the figures. For example, two blocks shown in succession may, in fact, be executed substantially concurrently, or the blocks may sometimes be executed in the reverse order, depending upon the functionality involved. In the description corresponding to the flowcharts and block diagrams in the figures, operations or steps corresponding to different blocks may also occur in different orders than disclosed in the description, and sometimes there is no specific order between the different operations or steps. For example, two sequential operations or steps may in fact be executed substantially concurrently, or they may sometimes be executed in the reverse order, depending upon the functionality involved. Each block of the block diagrams and/or flowchart illustrations, and combinations of blocks in the block diagrams and/or flowchart illustrations, can be implemented by special purpose hardware-based systems that perform the specified functions or acts, or combinations of special purpose hardware and computer instructions.