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CN103763839B - Intelligent lighting control method and system - Google Patents

Intelligent lighting control method and system Download PDF

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Publication number
CN103763839B
CN103763839B CN201410040444.8A CN201410040444A CN103763839B CN 103763839 B CN103763839 B CN 103763839B CN 201410040444 A CN201410040444 A CN 201410040444A CN 103763839 B CN103763839 B CN 103763839B
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radio frequency
terminal
terminals
frequency terminal
brightness
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CN103763839A (en
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张永强
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Espot Lighting Ltd
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Espot Lighting Ltd
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/105Controlling the light source in response to determined parameters
    • H05B47/11Controlling the light source in response to determined parameters by determining the brightness or colour temperature of ambient light
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/10Controlling the intensity of the light
    • H05B45/12Controlling the intensity of the light using optical feedback
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission
    • 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
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

The invention discloses an intelligent illumination control method and system. The intelligent lighting control method comprises the following steps: detecting the intensity of ambient light where a light emitting diode lamp corresponding to each radio frequency terminal is located through each radio frequency terminal in a plurality of radio frequency terminals; adjusting the brightness of each LED lamp according to the set light intensity level and the ambient light intensity; sending the adjusted brightness and the adjusted ambient light intensity to a radio frequency network controller in a radio frequency mode; and sending the luminous brightness of each LED lamp and the ambient light intensity to a control center server through a mobile network by the radio frequency network controller, so that the control center server determines whether to correct the luminous intensity according to the ambient light intensity. The invention can prolong the service life of the LED lamp, reduce the energy consumption of the lighting system and improve the lighting quality of the lighting system.

Description

智能照明控制方法及系统Intelligent lighting control method and system

技术领域technical field

本发明涉及通信技术领域,特别涉及一种智能照明控制方法及系统。The invention relates to the field of communication technology, in particular to an intelligent lighting control method and system.

背景技术Background technique

建筑物自控(Buliding Automation,简称为BA)系统以电气触点来实现区域控制、定时通断、中央监控等功能。而照明控制系统在BA系统中并非独立,同时控制功能简单,因此使用上有一定的局限性。The Building Automation (BA) system uses electrical contacts to realize functions such as area control, timing on-off, and central monitoring. The lighting control system is not independent in the BA system, and the control function is simple, so there are certain limitations in use.

通过设置中央监控装置,对整个系统实施中央监控,以便随时调节照明的现场效果,例如,系统设置开灯方案模式,并在计算机屏幕上仿真照明灯具的布置情况,显示各灯组的开灯模式和开/关状态。但是,灯组的开灯模式和开/关状态由于不能随着环境的亮度而调节,因此并不能节约能源,并且若灯组中的某个灯管毁坏的情况下,也会影响到其他灯管的照明。By setting up a central monitoring device, implement central monitoring of the entire system, so as to adjust the on-site lighting effect at any time, for example, the system sets the lighting scheme mode, and simulates the arrangement of lighting fixtures on the computer screen to display the lighting mode of each light group and on/off status. However, since the turn-on mode and on/off state of the lamp group cannot be adjusted according to the brightness of the environment, it cannot save energy, and if a lamp tube in the lamp group is damaged, it will also affect other lamps. Tube lighting.

发明内容Contents of the invention

为了解决现有技术的问题,本发明实施例提供了一种智能照明控制方法及系统。所述技术方案如下:In order to solve the problems in the prior art, an embodiment of the present invention provides an intelligent lighting control method and system. Described technical scheme is as follows:

一方面,提供了一种智能照明控制方法,所述智能照明控制方法包括:In one aspect, an intelligent lighting control method is provided, and the intelligent lighting control method includes:

通过多个射频终端中的每一个射频终端检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度;Detecting the ambient light intensity of the light-emitting diode lamp corresponding to each radio frequency terminal through each radio frequency terminal in the plurality of radio frequency terminals;

根据已设定的光强度级别与所述环境光强度调整所述每一个发光二极管灯的发光亮度;adjusting the luminance of each LED lamp according to the set light intensity level and the ambient light intensity;

将调整后的所述发光亮度和所述环境光强度通过射频方式发送给射频网络控制器;Sending the adjusted luminous brightness and the ambient light intensity to a radio frequency network controller through radio frequency;

通过所述射频网络控制器将所述每一个发光二极管灯的发光亮度和所述环境光强度通过移动网络发送给控制中心服务器,从而使得所述控制中心服务器根据所述环境光强度确定是否对所述发光强度进行校正。The luminance of each LED lamp and the ambient light intensity are sent to the control center server through the mobile network through the radio frequency network controller, so that the control center server determines whether to The above-mentioned luminous intensity is corrected.

另一方面,提供了一种智能照明控制系统,所述智能照明控制系统包括:多个射频终端、射频网络控制器、控制中心服务器;其中,In another aspect, an intelligent lighting control system is provided, and the intelligent lighting control system includes: a plurality of radio frequency terminals, a radio frequency network controller, and a control center server; wherein,

所述多个射频终端中的每一个射频终端用于检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度,根据已设定的光强度级别与所述环境光强度调整所述每一个发光二极管灯的发光亮度;将调整后的所述发光亮度和所述环境光强度通过射频方式发送给所述射频网络控制器;Each radio frequency terminal in the plurality of radio frequency terminals is used to detect the ambient light intensity of the light-emitting diode lamp corresponding to each radio frequency terminal, and adjust the the luminous brightness of each light-emitting diode lamp; sending the adjusted luminous brightness and the ambient light intensity to the radio frequency network controller through radio frequency;

所述射频网络控制器用于将所述每一个发光二极管灯的发光亮度和所述环境光强度通过移动网络发送给控制中心服务器,从而使得所述控制中心服务器根据所述环境光强度确定是否对所述发光强度进行校正。The radio frequency network controller is used to send the luminance of each LED lamp and the ambient light intensity to the control center server through the mobile network, so that the control center server determines whether to The above-mentioned luminous intensity is corrected.

本发明实施例提供的技术方案带来的有益效果是:The beneficial effects brought by the technical solution provided by the embodiments of the present invention are:

通过多个射频终端中的每一个射频终端检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度,并根据已设定的光强度级别与环境光强度调整每一个发光二极管灯的发光亮度,使得每一个发光二极管灯可以根据特定的环境而调整亮度,从而可以延长发光二极管灯的使用寿命,降低了照明系统的能源消耗,提高了照明系统的照明质量;由于不需要改造现有的照明系统的电路结构,因此易于布线实施。Each radio frequency terminal in the plurality of radio frequency terminals detects the ambient light intensity of the LED lamp corresponding to each radio frequency terminal, and adjusts the light intensity of each LED lamp according to the set light intensity level and the ambient light intensity. Luminous brightness, so that each LED lamp can adjust the brightness according to the specific environment, which can prolong the service life of the LED lamp, reduce the energy consumption of the lighting system, and improve the lighting quality of the lighting system; since there is no need to modify the existing The circuit structure of the lighting system, so it is easy to implement wiring.

附图说明Description of drawings

为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings that need to be used in the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those skilled in the art, other drawings can also be obtained based on these drawings without creative effort.

图1是本发明实施例一提供的一种智能照明控制方法的流程示意图;Fig. 1 is a schematic flowchart of an intelligent lighting control method provided by Embodiment 1 of the present invention;

图2是本发明实施例二提供的一种智能照明控制方法的流程示意图;Fig. 2 is a schematic flowchart of an intelligent lighting control method provided in Embodiment 2 of the present invention;

图3是本发明实施例三提供的一种智能照明控制系统的结构示意图;Fig. 3 is a schematic structural diagram of an intelligent lighting control system provided by Embodiment 3 of the present invention;

图4是本发明实施例四提供的一种智能照明控制系统的结构示意图。Fig. 4 is a schematic structural diagram of an intelligent lighting control system provided by Embodiment 4 of the present invention.

具体实施方式detailed description

为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明实施方式作进一步地详细描述。In order to make the object, technical solution and advantages of the present invention clearer, the implementation manner of the present invention will be further described in detail below in conjunction with the accompanying drawings.

实施例一Embodiment one

图1是本发明实施例一提供的一种智能照明控制方法的流程示意图;本发明实施例中,多个射频终端可以位于设定区域内,参见图1,本发明实施例包括如下步骤:Fig. 1 is a schematic flow chart of an intelligent lighting control method provided in Embodiment 1 of the present invention; in the embodiment of the present invention, multiple radio frequency terminals may be located in a set area, see Fig. 1, the embodiment of the present invention includes the following steps:

步骤101、通过多个射频终端中的每一个射频终端检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度。Step 101. Detect the ambient light intensity of the light-emitting diode lamp corresponding to each radio frequency terminal through each radio frequency terminal of the plurality of radio frequency terminals.

步骤102、根据已设定的光强度级别与所述环境光强度调整所述每一个发光二极管灯的发光亮度。Step 102, adjusting the luminance of each LED lamp according to the set light intensity level and the ambient light intensity.

步骤103、将调整后的所述发光亮度和所述环境光强度通过射频方式发送给射频网络控制器。Step 103 , sending the adjusted luminous brightness and the ambient light intensity to a radio network controller through radio frequency.

步骤104、通过所述射频网络控制器将所述每一个发光二极管灯的发光亮度和所述环境光强度通过移动网络发送给控制中心服务器,从而使得所述控制中心服务器根据所述环境光强度确定是否对所述发光强度进行校正。Step 104, send the luminance of each LED lamp and the ambient light intensity to the control center server through the mobile network through the radio frequency network controller, so that the control center server can determine according to the ambient light intensity Whether to correct for the luminous intensity.

本发明实施例提供的智能照明控制方法,通过多个射频终端中的每一个射频终端检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度,并根据已设定的光强度级别与环境光强度调整每一个发光二极管灯的发光亮度,使得每一个发光二极管灯可以根据特定的环境而调整亮度,从而可以延长发光二极管灯的使用寿命,降低了照明系统的能源消耗,提高了照明系统的照明质量;由于不需要改造现有的照明系统的电路结构,因此易于布线实施。In the intelligent lighting control method provided by the embodiment of the present invention, each radio frequency terminal in a plurality of radio frequency terminals detects the ambient light intensity of the light-emitting diode lamp corresponding to each radio frequency terminal, and according to the set light intensity level Adjust the luminance of each LED lamp with the ambient light intensity, so that each LED lamp can adjust the brightness according to the specific environment, thereby prolonging the service life of the LED lamp, reducing the energy consumption of the lighting system, and improving the lighting. The lighting quality of the system; since there is no need to modify the circuit structure of the existing lighting system, it is easy to implement wiring.

实施例二Embodiment two

图2是本发明实施例二提供的一种智能照明控制方法的流程示意图;本发明实施例中,多个射频终端可以位于设定区域内,参见图2,具体包括如下步骤:Fig. 2 is a schematic flow chart of an intelligent lighting control method provided in Embodiment 2 of the present invention; in the embodiment of the present invention, multiple radio frequency terminals may be located in a set area, see Fig. 2 , which specifically includes the following steps:

步骤201、通过多个射频终端组成点对点网络,执行步骤202。其中,点对点网络具体可以为ad-hoc网络,多个射频终端均可以支持ad-hoc路由。Step 201, form a point-to-point network through multiple radio frequency terminals, and execute step 202. Wherein, the point-to-point network may specifically be an ad-hoc network, and multiple radio frequency terminals may support ad-hoc routing.

步骤202、通过多个射频终端中的每一个射频终端检测与该每一个射频终端相对应的发光二极管灯是否出现异常,该异常具体可以为LED灯管短路、LED灯管过流、LED灯管过压。若出现异常,执行步骤203;若未出现异常,执行步骤205。Step 202: Use each radio frequency terminal in the plurality of radio frequency terminals to detect whether the light-emitting diode lamp corresponding to each radio frequency terminal is abnormal. overvoltage. If abnormality occurs, execute step 203; if no abnormality occurs, execute step 205.

步骤203、通过出现异常的射频终端生成一个警示信息,并将警示信息发送给射频网络控制器,执行步骤204。Step 203 , generating a warning message through the abnormal radio frequency terminal, and sending the warning message to the radio frequency network controller, and performing step 204 .

步骤204、将警示信息通过射频网络控制器发送给控制中心服务器,使得控制中心服务器便于获知多个射频终端的调光状态,流程结束。Step 204: Send the warning information to the control center server through the radio frequency network controller, so that the control center server can easily know the dimming status of multiple radio frequency terminals, and the process ends.

步骤205、多个射频终端中的每一个射频终端检测是否与射频网络服务器之间是否出现故障,若出现故障,执行步骤206;若未出现故障,执行步骤208。Step 205 , each of the multiple radio frequency terminals detects whether there is a fault with the radio network server, and if there is a fault, execute step 206 ; if there is no fault, execute step 208 .

步骤206、出现故障的第一射频终端将该第一射频终端调整后的发光亮度发送给距离第一射频终端最近的未出现故障的第二射频终端,执行步骤207。Step 206 , the first radio frequency terminal that has failed sends the adjusted luminance of the first radio frequency terminal to a second radio frequency terminal that is closest to the first radio frequency terminal and does not fail, and step 207 is executed.

在步骤206中,由于多个射频终端形成ad-hoc网络,因此多个射频终端在加入该ad-hoc网络后,能够通过路由信息获取距离最近的射频终端。In step 206, since a plurality of radio frequency terminals form an ad-hoc network, after joining the ad-hoc network, the plurality of radio frequency terminals can obtain the radio frequency terminal with the closest distance through the routing information.

步骤207、通过第二射频终端将发光亮度发给射频网络服务器,流程结束。Step 207, send the luminous brightness to the radio frequency network server through the second radio frequency terminal, and the process ends.

步骤208、通过多个射频终端中的发光正常的射频终端检测与该发光正常的射频终端相对应的发光二极管灯所在的环境光强度,执行步骤209。Step 208: Detect the ambient light intensity of the light-emitting diode lamp corresponding to the radio frequency terminal with normal light through the radio frequency terminal with normal light among the plurality of radio frequency terminals, and execute step 209.

步骤209、根据已设定的光强度级别与环境光强度调整该发光正常的发光二极管灯的发光亮度,执行步骤210。Step 209 , adjust the luminance of the normal light-emitting LED lamp according to the set light intensity level and the ambient light intensity, and execute step 210 .

具体地,可以通过脉冲宽度调制调节该发光正常的发光二极管灯的发光亮度。Specifically, the luminance of the normally luminous LED lamp can be adjusted through pulse width modulation.

步骤210、将调整后的发光亮度和环境光强度通过射频方式发送给射频网络控制器,执行步骤211。Step 210 , send the adjusted luminous brightness and ambient light intensity to the radio frequency network controller through radio frequency, and execute step 211 .

步骤211、通过射频网络服务器将发光亮度和环境光强度转换成所述移动网络对应的无线传输信号,执行步骤212。Step 211, convert the luminous brightness and ambient light intensity into wireless transmission signals corresponding to the mobile network through the radio frequency network server, and execute step 212.

步骤212、通过射频网络控制器将发光正常的光二极管灯的发光亮度和环境光强度通过移动网络发送给控制中心服务器,从而使得所述控制中心服务器根据所述环境光强度确定是否对所述发光强度进行校正,流程结束。Step 212: Send the luminance and ambient light intensity of the normal LED lamp to the control center server through the mobile network through the radio frequency network controller, so that the control center server determines whether to control the light emission according to the ambient light intensity. The intensity is corrected and the process ends.

本发明实施例提供的智能照明控制方法,通过多个射频终端中的每一个射频终端检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度,并根据已设定的光强度级别与环境光强度调整每一个发光二极管灯的发光亮度,使得每一个发光二极管灯可以根据特定的环境而调整亮度,从而可以延长发光二极管灯的使用寿命,降低了照明系统的能源消耗,提高了照明系统的照明质量;由于不需要改造现有的照明系统的电路结构,因此易于布线实施。In the intelligent lighting control method provided by the embodiment of the present invention, each radio frequency terminal in a plurality of radio frequency terminals detects the ambient light intensity of the light-emitting diode lamp corresponding to each radio frequency terminal, and according to the set light intensity level Adjust the luminance of each LED lamp with the ambient light intensity, so that each LED lamp can adjust the brightness according to the specific environment, thereby prolonging the service life of the LED lamp, reducing the energy consumption of the lighting system, and improving the lighting. The lighting quality of the system; since there is no need to modify the circuit structure of the existing lighting system, it is easy to implement wiring.

进一步地,在上述实施例一和实施例二中,智能照明控制方法还可以包括如下步骤:Further, in the first and second embodiments above, the intelligent lighting control method may further include the following steps:

多个射频终端通过射频网络控制器接收来自控制中心服务器的控制指令,以根据控制指令调节各自对应的所述多个发光二极管灯的状态,多个发光二极管灯的状态例如为:根据时间段或者发光二极管灯的位置将多个发光二极管灯打开、关闭、调亮或者调暗。A plurality of radio frequency terminals receive control instructions from the control center server through the radio frequency network controller, so as to adjust the states of the corresponding plurality of LED lights according to the control instructions. The states of the plurality of LED lights are, for example: according to the time period or The position of the LED lights turns on, off, brightens or dims multiple LED lights.

进一步地,在上述实施例一和实施例二中,智能照明控制方法还可以包括如下步骤:Further, in the first and second embodiments above, the intelligent lighting control method may further include the following steps:

通过每一个射频终端上的动作传感器识别人体动作指令;Identify human motion commands through the motion sensor on each radio frequency terminal;

根据所述人体动作指令控制所述发光二极管灯的发光级别,所述发光级别包括:第一亮度、第二亮度、关闭;Controlling the light-emitting level of the light-emitting diode lamp according to the human body action instruction, the light-emitting level includes: first brightness, second brightness, off;

若所述多个射频终端上的一个射频终端上的动作传感器检测到所述人体动作指令,则通过无线的方式将所述动作指令发送给所述多个射频终端中的其余射频终端,使得所述多个射频终端中的其余射频终端根据所述人体动作指令控制对应的发光二极管灯。If the motion sensor on a radio frequency terminal on the plurality of radio frequency terminals detects the human body action instruction, the action instruction is sent to the remaining radio frequency terminals in the plurality of radio frequency terminals in a wireless manner, so that all The remaining radio frequency terminals in the plurality of radio frequency terminals control corresponding LED lights according to the human body action instruction.

实施例三Embodiment Three

图3是本发明实施例三提供的一种智能照明控制系统的结构示意图;本发明实施例中,多个射频终端可以位于设定区域内,参见图3,本发明实施例提供的智能照明控制系统300包括:多个射频终端31、射频网络控制器32、控制中心服务器33;其中,Fig. 3 is a schematic structural diagram of an intelligent lighting control system provided by the third embodiment of the present invention; in the embodiment of the present invention, multiple radio frequency terminals can be located in the set area, see Fig. 3, the intelligent lighting control system provided by the embodiment of the present invention The system 300 includes: a plurality of radio frequency terminals 31, a radio frequency network controller 32, and a control center server 33; wherein,

多个射频终端31中的每一个射频终端用于检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度,根据已设定的光强度级别与所述环境光强度调整所述每一个发光二极管灯的发光亮度;将调整后的所述发光亮度和环境光强度通过射频方式发送给所述射频网络控制器32;射频网络控制器32用于将所述每一个发光二极管灯的发光亮度和环境光强度通过移动网络发送给控制中心服务器33,从而使得控制中心服务器33根据所述环境光强度确定是否对所述发光强度进行校正。Each radio frequency terminal in the plurality of radio frequency terminals 31 is used to detect the ambient light intensity of the LED lamp corresponding to each radio frequency terminal, and adjust the light intensity level of each radio frequency terminal according to the set light intensity level and the ambient light intensity. The luminous brightness of an LED lamp; the adjusted luminous brightness and ambient light intensity are sent to the radio frequency network controller 32 by radio frequency; The brightness and the ambient light intensity are sent to the control center server 33 through the mobile network, so that the control center server 33 determines whether to correct the luminous intensity according to the ambient light intensity.

本发明实施例提供的智能照明控制系统,通过多个射频终端31中的每一个射频终端检测与该每一个射频终端相对应的发光二极管灯所在的环境光强度,并根据已设定的光强度级别与环境光强度调整每一个发光二极管灯的发光亮度,使得每一个发光二极管灯可以根据特定的环境而调整亮度,从而可以延长发光二极管灯的使用寿命,降低了照明系统的能源消耗,提高了照明系统的照明质量;通过射频网络控制器32将每一个发光二极管灯的发光亮度和环境光强度通过移动网络发送给控制中心服务器33,从而使得控制中心服务器33便于对多个发光二极管灯的照明管理;此外,由于不需要改造现有的照明系统的电路结构,因此易于布线实施。The intelligent lighting control system provided by the embodiment of the present invention detects the ambient light intensity of the light-emitting diode lamp corresponding to each radio frequency terminal through each of the plurality of radio frequency terminals 31, and according to the set light intensity Level and ambient light intensity adjust the luminance of each LED lamp, so that each LED lamp can adjust the brightness according to the specific environment, thereby prolonging the service life of the LED lamp, reducing the energy consumption of the lighting system, and improving the lighting efficiency of the lighting system. The lighting quality of the lighting system; the luminous brightness and ambient light intensity of each LED lamp are sent to the control center server 33 through the mobile network through the radio frequency network controller 32, so that the control center server 33 is convenient for the lighting of multiple LED lamps management; in addition, because there is no need to modify the circuit structure of the existing lighting system, it is easy to implement wiring.

进一步地,所述多个射频终端中的每一个射频终端还用于检测与所述每一个射频终端相对应的发光二极管灯是否出现异常;若出现异常,则出现异常的发光二极管灯对应的射频终端生成一个警示信息,并将所述警示信息发送给所述射频网络控制器;所述射频网络控制器还用于将所述警示信息发送给所述控制中心服务器,使得所述控制中心服务器便于获知所述多个射频终端的调光状态。Further, each radio frequency terminal among the plurality of radio frequency terminals is also used to detect whether the light-emitting diode lamp corresponding to each radio frequency terminal is abnormal; if abnormality occurs, the radio frequency corresponding to the abnormal light-emitting diode light The terminal generates a warning message, and sends the warning message to the radio frequency network controller; the radio frequency network controller is also configured to send the warning message to the control center server, so that the control center server can facilitate Obtain the dimming states of the multiple radio frequency terminals.

进一步地,多个射频终端中的每一个射频终端通过脉冲宽度调制调节所述每一个发光二极管灯的发光亮度。Further, each radio frequency terminal in the plurality of radio frequency terminals adjusts the luminance of each LED lamp through pulse width modulation.

进一步地,多个射频终端通过射频网络控制器接收来自控制中心服务器的控制指令,以根据控制指令调节各自对应的所述多个发光二极管灯的状态,多个发光二极管灯的状态例如为:根据时间段或者发光二极管灯的位置将多个发光二极管灯打开、关闭、调亮或者调暗。Further, the plurality of radio frequency terminals receive control instructions from the control center server through the radio frequency network controller, so as to adjust the states of the plurality of corresponding LED lights according to the control instructions. The states of the plurality of LED lights are, for example: according to The time period or position of the LED lights turns on, off, brightens or dims the plurality of LED lights.

进一步地,智能照明控制系统中的每一个射频终端上还设置有动作传感器;Further, each radio frequency terminal in the intelligent lighting control system is also provided with a motion sensor;

所述动作传感器用于识别人体动作指令;根据所述人体动作指令控制所述发光二极管灯的发光级别,所述发光级别包括:第一亮度、第二亮度、关闭。The motion sensor is used to identify human body motion commands; according to the human body motion commands, the lighting level of the light-emitting diode lamp is controlled, and the lighting levels include: first brightness, second brightness, and off.

所述射频终端还用于确认所述动作传感器是否激活,在所述环境光强度未达到设定的强度,激活所述动作传感器。The radio frequency terminal is also used to confirm whether the motion sensor is activated, and activate the motion sensor when the ambient light intensity does not reach a set intensity.

进一步地,所述射频网络服务器还用于将所述发光亮度转换成所述移动网络对应的无线传输信号。Further, the radio frequency network server is further configured to convert the luminance into a wireless transmission signal corresponding to the mobile network.

进一步地,所述多个射频终端中的每一个射频终端组成点对点网络;若所述多个射频终端中的第一射频终端与所述射频网络服务器之间由于故障不能进行通信,则所述第一射频终端将该第一射频终端调整后的发光亮度发送给距离所述第一射频终端最近的第二射频终端;通过所述第二射频终端将所述发光亮度发送给所述射频网络服务器。Further, each radio frequency terminal in the plurality of radio frequency terminals forms a point-to-point network; if the first radio frequency terminal in the plurality of radio frequency terminals cannot communicate with the radio frequency network server due to a failure, the first radio frequency terminal A radio frequency terminal sends the adjusted luminous brightness of the first radio frequency terminal to a second radio frequency terminal closest to the first radio frequency terminal; the second radio frequency terminal sends the luminous brightness to the radio frequency network server.

实施例四Embodiment four

图4是本发明实施例四提供的一种智能照明控制系统的结构示意图;本发明实施例可以实现图2所示实施例的方法流程,参见图4,本发明实施例提供的智能照明控制系统400包括:多个射频终端(分别为第一射频终端411、第二射频终端412、…、第N射频终端41n,其中,N为射频终端的个数;第一射频终端411、第二射频终端412、…、第N射频终端41n可以位于设定区域内)、射频网络控制器42、控制中心服务器43。Fig. 4 is a schematic structural diagram of an intelligent lighting control system provided by Embodiment 4 of the present invention; the embodiment of the present invention can realize the method flow of the embodiment shown in Fig. 2, see Fig. 4, the intelligent lighting control system provided by the embodiment of the present invention 400 includes: a plurality of radio frequency terminals (the first radio frequency terminal 411, the second radio frequency terminal 412, ..., the Nth radio frequency terminal 41n, wherein, N is the number of radio frequency terminals; the first radio frequency terminal 411, the second radio frequency terminal 412, ..., the Nth radio frequency terminal 41n may be located in the set area), the radio frequency network controller 42, and the control center server 43.

其中,第一射频终端411、第二射频终端412、…、第N射频终端41n检测分别与第一射频终端411、第二射频终端412、…、第N射频终端41n相对应的发光二极管灯所在的环境光强度,根据已设定的光强度级别与所述环境光强度调整所述每一个发光二极管灯的发光亮度;将调整后的所述发光亮度和所述环境光强度通过射频方式发送给射频网络控制器42;射频网络控制器42用于将所述每一个发光二极管灯的发光亮度通过移动网络发送给控制中心服务器43,从而使得控制中心服务器43根据所述环境光强度确定是否对所述发光强度进行校正。Among them, the first radio frequency terminal 411, the second radio frequency terminal 412, ..., the Nth radio frequency terminal 41n detect where the LED lights corresponding to the first radio frequency terminal 411, the second radio frequency terminal 412, ..., the Nth radio frequency terminal 41n are located. According to the set light intensity level and the ambient light intensity, the luminous brightness of each LED lamp is adjusted; the adjusted luminous brightness and the ambient light intensity are sent to the The radio frequency network controller 42; the radio frequency network controller 42 is used for sending the luminance of each light-emitting diode lamp to the control center server 43 through the mobile network, so that the control center server 43 determines whether to control all LED lights according to the ambient light intensity. The above-mentioned luminous intensity is corrected.

其中,射频网络控制器42具体包括了射频模块421、信号转换模块422、GPRS模块423;射频模块421用于与第一射频终端411、第二射频终端412、…、第N射频终端41n进行射频通信,该射频通信例如为Zigbee无线通信,因此可以认为射频网络控制器42与第一射频终端411、第二射频终端412、…、第N射频终端41n为近距离通信(Near Field Communication,简称为NFC)。信号转换模块422将来自第一射频终端411、第二射频终端412、…、第N射频终端41n的信号转换为无线通信网络信号,并通过GPRS模块423通过网络发送至控制中心服务器43。Wherein, the radio frequency network controller 42 specifically includes a radio frequency module 421, a signal conversion module 422, and a GPRS module 423; Communication, the radio frequency communication is for example Zigbee wireless communication, so it can be considered that the radio frequency network controller 42 and the first radio frequency terminal 411, the second radio frequency terminal 412, ..., the Nth radio frequency terminal 41n are near field communication (Near Field Communication, referred to as NFC). The signal conversion module 422 converts the signals from the first radio frequency terminal 411 , the second radio frequency terminal 412 , .

此外,射频网络控制器42具体可以为移动手持终端,该移动手持终端上安装有iOS或者安卓(Android)操作系统,并支持近距离通信。控制中心服务器43具体可以为PC控制台,PC控制台通过移动网络与移动手持终端进行数据传输,从而实现远距离控制。In addition, the radio frequency network controller 42 may specifically be a mobile handheld terminal, which is installed with an iOS or Android (Android) operating system and supports short-distance communication. The control center server 43 may specifically be a PC console, and the PC console performs data transmission with a mobile handheld terminal through a mobile network, thereby realizing remote control.

本发明实施例提供的智能照明控制系统,通过多第一射频终端411、第二射频终端412、…、第N射频终端41n检测与其分别相对应的发光二极管灯所在的环境光强度,并根据已设定的光强度级别与环境光强度调整每一个发光二极管灯的发光亮度,使得每一个发光二极管灯可以根据特定的环境而调整亮度,从而可以延长发光二极管灯的使用寿命,降低了照明系统的能源消耗,提高了照明系统的照明质量;通过射频网络控制器42将每一个发光二极管灯的发光亮度通过移动网络发送给控制中心服务器43,从而使得控制中心服务器43便于对多个发光二极管灯的照明管理;此外,由于不需要改造现有的照明系统的电路结构,因此易于布线实施。In the intelligent lighting control system provided by the embodiment of the present invention, the first radio frequency terminal 411, the second radio frequency terminal 412, ..., the Nth radio frequency terminal 41n detect the ambient light intensity of the corresponding light-emitting diode lamps respectively, and according to the The set light intensity level and the ambient light intensity adjust the luminance of each LED lamp, so that each LED lamp can adjust the brightness according to a specific environment, thereby prolonging the service life of the LED lamp and reducing the lighting system. Energy consumption improves the lighting quality of the lighting system; the luminance of each LED lamp is sent to the control center server 43 through the mobile network through the radio frequency network controller 42, so that the control center server 43 is convenient for multiple LED lamps. Lighting management; in addition, since there is no need to modify the circuit structure of the existing lighting system, it is easy to implement wiring.

需要说明的是:上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。It should be noted that: the serial numbers of the above embodiments of the present invention are only for description, and do not represent the advantages and disadvantages of the embodiments.

本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。Those of ordinary skill in the art can understand that all or part of the steps for implementing the above embodiments can be completed by hardware, and can also be completed by instructing related hardware through a program. The program can be stored in a computer-readable storage medium. The above-mentioned The storage medium mentioned may be a read-only memory, a magnetic disk or an optical disk, and the like.

以上所述仅为本发明的较佳实施例,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。The above descriptions are only preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included in the protection of the present invention. within range.

Claims (6)

1. An intelligent lighting control method, characterized in that the intelligent lighting control method comprises:
detecting the intensity of ambient light where a light emitting diode lamp corresponding to each radio frequency terminal is located through each radio frequency terminal in a plurality of radio frequency terminals;
adjusting the brightness of each LED lamp according to the set light intensity level and the ambient light intensity;
sending the adjusted brightness and the adjusted ambient light intensity to a radio frequency network controller in a radio frequency mode;
sending the light-emitting brightness of each light-emitting diode lamp and the ambient light intensity to a control center server through a mobile network by the radio frequency network controller, so that the control center server determines whether to correct the light-emitting intensity according to the ambient light intensity; wherein,
the method further comprises the following steps:
identifying a human body action instruction through an action sensor on each radio frequency terminal;
controlling the light emitting level of the light emitting diode lamp according to the human body action instruction, wherein the light emitting level comprises: first brightness, second brightness, off;
if the action sensor on one radio frequency terminal of the radio frequency terminals detects the human body action instruction, the action instruction is sent to the rest radio frequency terminals of the radio frequency terminals in a wireless mode, so that the rest radio frequency terminals of the radio frequency terminals control the corresponding light emitting diode lamps according to the human body action instruction;
the method further comprises the following steps:
confirming whether the motion sensor is activated or not, and activating the motion sensor when the ambient light intensity does not reach the set intensity;
wherein, before the step of detecting the intensity of the ambient light where the light emitting diode lamp corresponding to each radio frequency terminal is located by each radio frequency terminal in the plurality of radio frequency terminals, the method further comprises:
forming a point-to-point network by the plurality of radio frequency terminals;
the method further comprises the following steps:
each radio frequency terminal in the plurality of radio frequency terminals detects whether a fault occurs between the radio frequency terminal and the radio frequency network server;
if the first radio frequency terminal in the plurality of radio frequency terminals cannot communicate with the radio frequency network server due to faults, the first radio frequency terminal sends the brightness of the light emitted by the first radio frequency terminal after being adjusted to a second radio frequency terminal closest to the first radio frequency terminal;
and sending the light-emitting brightness to the radio frequency network server through the second radio frequency terminal.
2. The intelligent lighting control method of claim 1, wherein the method further comprises:
detecting whether the light-emitting diode lamp corresponding to each radio frequency terminal is abnormal or not through each radio frequency terminal;
if the radio frequency network controller is abnormal, generating a warning message through each radio frequency terminal, and sending the warning message to the radio frequency network controller;
and sending the warning information to the control center server through the radio frequency network controller, so that the control center server is convenient to acquire the dimming states of the radio frequency terminals.
3. The intelligent lighting control method of claim 1, wherein the method further comprises:
the radio frequency terminals also receive control instructions from the control center server through the radio frequency network controller so as to adjust the states of the plurality of light-emitting diode lamps corresponding to the radio frequency terminals according to the control instructions.
4. An intelligent lighting control system, comprising: the system comprises a plurality of radio frequency terminals, a radio frequency network controller and a control center server; wherein,
each radio frequency terminal in the plurality of radio frequency terminals is used for detecting the intensity of the environment light where the light emitting diode lamp corresponding to each radio frequency terminal is located, and adjusting the brightness of each light emitting diode lamp according to the set light intensity level and the intensity of the environment light; sending the adjusted brightness and the adjusted ambient light intensity to the radio frequency network controller in a radio frequency mode;
the radio frequency network controller is used for sending the luminous brightness of each LED lamp and the ambient light intensity to a control center server through a mobile network, so that the control center server determines whether to correct the luminous intensity according to the ambient light intensity; wherein,
each radio frequency terminal in the intelligent lighting control system is also provided with a motion sensor;
the motion sensor is used for identifying a human body motion instruction; controlling the light emitting level of the light emitting diode lamp according to the human body action instruction, wherein the light emitting level comprises: first brightness, second brightness, off;
if the action sensor on one radio frequency terminal of the radio frequency terminals detects the human body action instruction, the action instruction is sent to the rest radio frequency terminals of the radio frequency terminals in a wireless mode, so that the rest radio frequency terminals of the radio frequency terminals control the corresponding light emitting diode lamps according to the human body action instruction;
the radio frequency terminal is also used for confirming whether the action sensor is activated or not, and activating the action sensor when the ambient light intensity does not reach the set intensity;
each radio frequency terminal in the plurality of radio frequency terminals forms a point-to-point network;
if the first radio frequency terminal in the plurality of radio frequency terminals cannot communicate with the radio frequency network server due to faults, the first radio frequency terminal sends the brightness of the light emitted by the first radio frequency terminal after being adjusted to a second radio frequency terminal closest to the first radio frequency terminal;
and sending the light-emitting brightness to the radio frequency network server through the second radio frequency terminal.
5. The intelligent lighting control system of claim 4,
each radio frequency terminal in the plurality of radio frequency terminals is further used for detecting whether the light emitting diode lamp corresponding to each radio frequency terminal is abnormal or not;
if the radio frequency network controller is abnormal, the radio frequency terminal corresponding to the abnormal light emitting diode lamp generates warning information and sends the warning information to the radio frequency network controller;
the radio frequency network controller is further used for sending the warning information to the control center server, so that the control center server can conveniently acquire the dimming states of the radio frequency terminals.
6. The intelligent lighting control system of claim 4,
the radio frequency terminals also receive control instructions from the control center server through the radio frequency network controller so as to adjust the states of the plurality of light-emitting diode lamps corresponding to the radio frequency terminals according to the control instructions.
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