WO2016082071A1 - Led智能灯具及led智能灯具控制系统 - Google Patents

Led智能灯具及led智能灯具控制系统 Download PDF

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Publication number
WO2016082071A1
WO2016082071A1 PCT/CN2014/092020 CN2014092020W WO2016082071A1 WO 2016082071 A1 WO2016082071 A1 WO 2016082071A1 CN 2014092020 W CN2014092020 W CN 2014092020W WO 2016082071 A1 WO2016082071 A1 WO 2016082071A1
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WIPO (PCT)
Prior art keywords
led
control
light fixture
control terminal
module
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PCT/CN2014/092020
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English (en)
French (fr)
Inventor
孟庆晨
钟丽
Original Assignee
深圳市锐诚光电科技有限公司
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Application filed by 深圳市锐诚光电科技有限公司 filed Critical 深圳市锐诚光电科技有限公司
Priority to PCT/CN2014/092020 priority Critical patent/WO2016082071A1/zh
Publication of WO2016082071A1 publication Critical patent/WO2016082071A1/zh

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Classifications

    • 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
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S2/00Systems of lighting devices, not provided for in main groups F21S4/00 - F21S10/00 or F21S19/00, e.g. of modular construction
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/02Hierarchically pre-organised networks, e.g. paging networks, cellular networks, WLAN [Wireless Local Area Network] or WLL [Wireless Local Loop]
    • H04W84/10Small scale networks; Flat hierarchical networks
    • H04W84/12WLAN [Wireless Local Area Networks]
    • 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

Definitions

  • the invention relates to the technical field of illumination, in particular to an LED intelligent lamp and an LED intelligent lamp control system.
  • the existing LED lights have Bluetooth control, control based on zigbee protocol, and Wi-Fi control.
  • Bluetooth control is limited to a small area and network remote control is not possible.
  • Zigbee technology mainly uses 2.5G frequency exposure in the ISM band. Its diffraction ability is weak and its ability to penetrate the wall is weak. Some manufacturers amplify 2.5G signals, but this will cause additional radiation pollution, and also low energy consumption and energy saving with zigbee.
  • Wi-Fi control requires the user to bind the router provided by the manufacturer, which cannot solve the compatibility problem and reduce the ease of use of the product. Moreover, the router provided by the manufacturer does not open source code, the source code is encrypted, the product is opaque, and the user cannot Obtaining the setting authority greatly hinders the popularity of LED energy-saving lamps.
  • the technical problem to be solved by the present invention is to provide an LED intelligent lamp and an LED intelligent lamp control system, and integrate the control module and the power module into the LED intelligent lamp.
  • the present invention is implemented as follows:
  • An LED intelligent lamp comprising an LED lighting unit, a power module and a control module;
  • the control module is connected to the power module; the power module is connected to the LED lighting unit;
  • the control module is configured to receive a luminaire control command sent by the control terminal, and send the luminaire control command to the power module, and simultaneously send the working status information of the LED smart luminaire;
  • the power module is configured to adjust an operating state of the LED smart light fixture according to the light fixture control command.
  • the LED smart light fixture further includes a temperature sensor; the temperature sensor is connected to the power module and the control module, and is disposed in the LED smart light fixture for detecting the temperature of the LED light emitting unit, and detecting The temperature value is sent to the power module; the temperature threshold of the LED lighting unit is pre-stored in the power module, and when the temperature of the LED lighting unit rises to the temperature threshold, the power module automatically reduces the output current until The temperature of the LED lighting unit is reduced below the temperature threshold.
  • the lamp control command includes an adjustment command for adjusting at least one of an operating voltage, an operating current, a brightness, a color, a temperature, and a switching time of the LED lighting unit.
  • the working state information of the LED smart light fixture includes at least one of an operating voltage, an operating current, a brightness, a color, a temperature, and a time switch setting information of the LED lighting unit.
  • the working state information of the LED smart light fixture includes real-time power consumption information of the LED smart light fixture.
  • control module is provided with a Wi-Fi module, and the Wi-Fi module is configured to receive a lighting control command sent by the control terminal.
  • an ambient light brightness sensor is further included; the ambient light brightness sensor is connected to the control module; and the control module is automatically adjusted by the power module according to the ambient light brightness signal detected by the ambient light brightness sensor.
  • the brightness of the LED lighting unit is further included; the ambient light brightness sensor is connected to the control module; and the control module is automatically adjusted by the power module according to the ambient light brightness signal detected by the ambient light brightness sensor. The brightness of the LED lighting unit.
  • An LED intelligent lighting control system comprising a plurality of LED intelligent lamps as described above, further comprising a control terminal;
  • the control terminal is configured to send the lamp control command to each LED smart light fixture through Wi-Fi or the Internet, and receive working state information of each LED smart light fixture.
  • a control program of the LED smart light fixture is installed on the control terminal; the light fixture control command may be generated by the control program.
  • control terminal has a control authority level
  • control terminal having the highest control authority level can remotely forcibly turn off the LED intelligent light fixture; the control terminal of the non-highest control authority level cannot open the control terminal with the highest control authority level. Forced off LED smart light fixtures.
  • the LED smart light fixture is provided with a two-dimensional code
  • the control terminal can obtain the identification information of the LED smart light fixture by reading the two-dimensional code, and store the identification information to the control terminal. In the system.
  • the cloud server further includes a cloud server, the cloud server is connected to the Internet, and the control terminal is connected to the cloud server; the control terminal is configured to send, by using the cloud server, the lighting control command and receiving by using the cloud server Working status information of each LED intelligent light fixture.
  • the invention integrates the control module and the power module into the LED lamp, and the control module in each LED lamp can be compatible with any existing router, and does not need to bundle the router provided by the manufacturer, and the user can use the mobile phone, the tablet computer, etc.
  • the control terminal generates a control command, which is sent to the router through Wi-Fi, the Internet, etc., and is sent to each LED intelligent light fixture through the router to realize the control of the LED intelligent light fixture, and the control terminal can also receive the working state information of each LED intelligent light fixture. So that the user can grasp the working status of each LED intelligent light fixture in real time.
  • FIG. 1 is a schematic diagram of an LED smart lamp provided by an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an LED smart light fixture according to another embodiment of the present invention.
  • FIG. 3 is a schematic diagram of a control system of an LED intelligent lamp provided by an embodiment of the present invention.
  • FIG. 1 is a schematic diagram of an LED intelligent light fixture according to an embodiment of the present invention.
  • the LED smart light fixture comprises an LED lighting unit 1 , a power module 2 and a control module 3 .
  • the control module 3 is connected to the power module 2, and the power module 2 is connected to the LED lighting unit 1.
  • the control module 3 is configured to receive the luminaire control command sent by the control terminal, and send the luminaire control command to the power module 2, and simultaneously send the working status information of the LED smart luminaire.
  • the power module 2 is configured to adjust the working state of the LED smart luminaire according to the luminaire control command.
  • a Wi-Fi module can be disposed on the control module 3, and the Wi-Fi module is configured to receive a luminaire control command sent by the control terminal.
  • the invention reduces the control module and the power module and integrates them into the LED lamp.
  • the control module in each LED intelligent lamp can be compatible with all routers on the market, and is not limited to the router provided by the manufacturer, and the control terminal can pass any router. Connect each LED intelligent luminaire to control it. At the same time, receive the working status information sent by each LED intelligent luminaire to realize real-time monitoring of each LED intelligent luminaire.
  • a temperature sensor can also be disposed in the LED smart light fixture, and the temperature sensor is connected to the power module 2 and the control module 3.
  • the temperature sensor can detect the temperature of the LED lighting unit 1 and transmit the detected temperature value to the power module 2.
  • the temperature threshold of the LED lighting unit 1 is pre-stored in the power module 2, and when the temperature of the LED lighting unit 1 rises to the temperature threshold, the power module 2 automatically reduces the output current until the temperature of the LED lighting unit 1 falls below the temperature threshold.
  • the lamp control command may be an adjustment command for adjusting at least one of an operating voltage, an operating current, a brightness, a color, a temperature, and a switching time of the LED lighting unit 1.
  • the working state information of the LED intelligent lamp will also include the LED lighting unit.
  • the user can adjust the brightness of the LED lighting unit 1 according to the intensity of the ambient light to make it suitable for the current light environment, and the brightness can be steplessly adjusted from 10% to 100%. It is also possible to adjust the color of the LED lighting unit 1 to have a suitable color temperature to make people feel comfortable.
  • the LED lighting unit 1 may include a plurality of LED lamp beads.
  • the working status information may further include real-time power consumption information of the LED smart luminaire, so that the user can know the real-time power consumption of each LED intelligent luminaire at any time.
  • the LED smart light fixture may further include an ambient light brightness sensor 4, and the ambient light brightness sensor 4 is connected to the control module 3.
  • the ambient light brightness sensor 4 can detect the current ambient light brightness and the detected current environment.
  • the brightness signal is sent to the control module 3, so that the control module 3 can automatically adjust the brightness of the LED lighting unit 1 through the power module 2 according to the ambient light brightness signal detected by the ambient light level sensor 4.
  • the present invention also provides an LED intelligent luminaire control system.
  • the LED intelligent lamp control system includes a plurality of the above-mentioned LED intelligent lamps, and further includes a control terminal 6 for transmitting lamp control commands and receiving LEDs to each LED smart lamp through Wi-Fi or the Internet.
  • Working status information of intelligent lamps Specifically, the control terminal 6 and each LED smart light fixture can be added to the local area network of the same router 5 through Wi-Fi, so that the control terminal 6 can send the above-mentioned lamp control command to each LED smart light fixture through Wi-Fi and receive each LED intelligent light fixture. Work status information.
  • a two-dimensional code can be set on each LED intelligent luminaire, and the control terminal 6 can obtain the identification information of the LED intelligent luminaire by reading the two-dimensional code, thereby storing the identification information of the LED intelligent luminaire into the system of the control terminal 6, which is convenient
  • the subsequent control terminal 6 identifies and controls the LED smart light fixture.
  • the control terminal 6 can also connect the local area network where the LED intelligent light fixture is located via the Internet. For example, the LED intelligent light fixtures are added to the local area network of the router 5, and the control terminal 6 is connected to the router 5 via the Internet, so that the control terminal 6 can pass through the Internet.
  • the lighting control command is sent to each LED intelligent light fixture and the working state information of each LED intelligent light fixture is received.
  • the user can not only connect the router 5 within the coverage of the Wi-Fi signal of the router 5, but also connect the router 5 to any place where the Internet can be connected, so as to realize the monitoring of the intelligent LEDs of each LED.
  • the LED intelligent lighting control system may further comprise a cloud server, the cloud server is connected to the router 5 via the Internet, the control terminal 6 may be connected to the cloud server, and the control terminal 6 may send the lighting control command and receive each via the Internet through the cloud server.
  • Working status information of LED intelligent lamps may be used to the cloud server.
  • control command sent by the control terminal 6 passes through the cloud server, it is transmitted to the router 5 via the Internet, and finally transmitted to each LED intelligent light fixture via the router 5, so as to realize the control of each LED intelligent light fixture, and the working state of each LED intelligent light fixture.
  • the information can be transmitted back to the control terminal 6 by the same path.
  • the control program of the LED intelligent luminaire can be installed on the control terminal 6, and the above luminaire control command can be generated through the control program. Through the control program installed on the control terminal 6, each LED intelligent luminaire can be uniformly or independently controlled, and the working state information of each LED intelligent luminaire can be displayed in a centralized manner. A plurality of scene modes can be preset on the control terminal 6.
  • the LED lighting unit 1 has different colors and brightness, and different scene modes can be selected through the control terminal 6, and the LED intelligent lamps can be selected according to the control terminal 6.
  • the scene mode automatically adjusts the color and brightness of the LED lighting unit 1.
  • the scene mode may also include only the color or brightness of the LED lighting unit 1.
  • different control authority levels can be assigned to different control terminals 6 to control the LED smart lamps to different degrees.
  • the control terminal 6 having the highest control authority level can remotely forcibly turn off the LED smart light fixture, and the control terminal 6 that is not the highest control authority level is unlocked, and any other control terminal 6 that is not the highest control authority level cannot open the control with the highest control authority level.
  • the LED smart light fixture that is forcibly closed by the terminal 6.
  • Remote EMC can be achieved in this way.
  • EMC can provide LED smart luminaires to users, and manage the LED intelligent luminaires in the user's home through the control terminal 6. For example, the LED intelligent luminaires in the user's home that violate the contract (such as arrears) are limited or forcedly closed.
  • a smart phone, a tablet computer, a personal notebook, etc. can be used as the control terminal 6.
  • the working status information of each LED intelligent light fixture can be displayed on the control terminal 6, which is convenient for the user to view in real time.

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

Abstract

公开了一种LED智能灯具及LED智能灯具控制系统。LED智能灯具包括LED发光单元(1)、电源模块(2)及控制模块(3);控制模块(3)与电源模块(2)连接;电源模块(2)与LED发光单元(1)连接;控制模块(3)用于接收控制终端发送的灯具控制命令,并将灯具控制命令发送到电源模块(2),同时,将LED智能灯具的工作状态信息发送出去;电源模块(2)用于根据灯具控制命令调节LED智能灯具的工作状态。LED智能灯具控制系统包括LED智能灯具,还包括控制终端(6);控制终端(6)用于通过Wi-Fi或互联网向各LED智能灯具发送灯具控制命令及接收各LED智能灯具的工作状态信息。通过将控制模块及电源模块集成到LED智能灯具内,用户可通过控制终端可实现对LED智能灯具的监控。

Description

LED智能灯具及LED智能灯具控制系统 技术领域
本发明涉及照明技术领域,尤其涉及一种LED智能灯具及LED智能灯具控制系统。
背景技术
现有的LED灯具有蓝牙控制、基于zigbee协议控制、Wi-Fi控制等控制方式。蓝牙控制局限于小范围区域,无法实现联网远程控制。Zigbee技术主要采用ISM频段中的2.5G频露,其衍射能力弱,穿墙能力弱,有些厂家对2.5G信号进行放大,但这样会造成额外的辐射污染,同时也和zigbee低功耗、节能的初衷背道而驰。Wi-Fi控制需要使用者绑定厂商提供的路由器,无法解决兼容性的问题,降低了产品的易用性,而且厂商提供的路由器不开放源代码,源代码加密封闭,产品不透明,使用者无法取得设置权限,极大地阻碍了LED节能灯具的普及。
技术问题
本发明所要解决的技术问题是,提供一种LED智能灯具及LED智能灯具控制系统,将控制模块及电源模块集成到LED智能灯具内。
技术解决方案
本发明是这样实现的:
一种LED智能灯具,包括LED发光单元、电源模块及控制模块;
所述控制模块与所述电源模块连接;所述电源模块与所述LED发光单元连接;
所述控制模块用于接收控制终端发送的灯具控制命令,并将所述灯具控制命令发送到所述电源模块,同时,将所述LED智能灯具的工作状态信息发送出去;
所述电源模块用于根据所述灯具控制命令调节所述LED智能灯具的工作状态。
进一步地,所述LED智能灯具还包括温度传感器;所述温度传感器与所述电源模块及控制模块连接,设置在所述LED智能灯具内,用于检测所述LED发光单元的温度,并将检测到的温度值发送到电源模块;所述电源模块内预存有LED发光单元的温度阈值,当所述LED发光单元的温度上升到所述温度阈值时,所述电源模块自动减小输出电流,直到所述LED发光单元的温度降低到所述温度阈值以下。
进一步地,所述灯具控制命令包括调节所述LED发光单元的工作电压、工作电流、亮度、颜色、温度及开关时间中的至少一个参数的调节命令。
进一步地,所述LED智能灯具的工作状态信息包括所述LED发光单元的工作电压、工作电流、亮度、颜色、温度、定时开关设置信息中的至少一个。
进一步地,所述LED智能灯具的工作状态信息包括所述LED智能灯具的实时功耗信息。
进一步地,所述控制模块上设置有Wi-Fi模块,所述Wi-Fi模块用于接收控制终端发送的灯具控制命令。
进一步地,还包括环境光亮度传感器;所述环境光亮度传感器与所述控制模块连接;所述控制模块可根据所述环境光亮度传感器检测到的环境光亮度信号,通过所述电源模块自动调节所述LED发光单元的亮度。
一种LED智能灯具控制系统,包括若干如上所述的任意一种LED智能灯具,还包括控制终端;
所述控制终端用于通过Wi-Fi或互联网向各LED智能灯具发送所述灯具控制命令及接收各LED智能灯具的工作状态信息。
进一步地,所述控制终端上安装有所述LED智能灯具的控制程序;通过所述控制程序可生成所述灯具控制命令。
进一步地,所述控制终端具有控制权限等级,具有最高控制权限等级的控制终端可以远程强制关闭所述LED智能灯具;非最高控制权限等级的控制终端不能开启被具有最高控制权限等级的控制终端所强制关闭的LED智能灯具。
进一步地,所述LED智能灯具上设置有二维码,所述控制终端通过读取所述二维码可获取所述LED智能灯具的识别信息,并将所述识别信息存储到所述控制终端的系统中。
进一步地,还包括云端服务器,所述云端服务器与所述互联网连接,所述控制终端与所述云端服务器连接;所述控制终端用于通过所述云端服务器经由互联网发送所述灯具控制命令及接收各LED智能灯具的工作状态信息。
有益效果
与现有技术相比,本发明将控制模块及电源模块集成到LED灯具内,各LED灯具内的控制模块可兼容任何现有路由器,无需捆绑厂商提供的路由器,用户可以通过手机、平板电脑等控制终端生成控制命令,通过Wi-Fi、互联网等方式发送到路由器,并通过路由器发送到各LED智能灯具,实现对LED智能灯具的控制,同时控制终端还可以接收各LED智能灯具的工作状态信息,使用户可以实时掌握各LED智能灯具的工作状态。
附图说明
图1:本发明实施例提供的LED智能灯具示意图;
图2:本发明另一实施例提供的LED智能灯具示意图;
图3:本发明实施例提供的LED智能灯具控制系统示意图。
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。
图1为本发明实施例提供的LED智能灯具示意图。根据图1所示,该LED智能灯具包括LED发光单元1、电源模块2及控制模块3。控制模块3与电源模块2连接,电源模块2与LED发光单元1连接。控制模块3用于接收控制终端发送的灯具控制命令,并将灯具控制命令发送到电源模块2,同时,将LED智能灯具的工作状态信息发送出去。电源模块2用于根据灯具控制命令调节LED智能灯具的工作状态。控制模块3上可设置Wi-Fi模块,Wi-Fi模块用于接收控制终端发送的灯具控制命令。本发明通过将控制模块及电源模块缩小,并将其集成在LED灯具内,各LED智能灯具中的控制模块可兼容市面上的所有路由器,不局限于厂商提供的路由器,控制终端可通过任何路由器连接各LED智能灯具,实现对其进行控制,同时,接收各LED智能灯具发送的工作状态信息,实现对各LED智能灯具的实时监控。
LED智能灯具内还可设置温度传感器,并将该温度传感器与电源模块2及控制模块3连接。温度传感器可检测LED发光单元1的温度,并将检测到的温度值发送到电源模块2。电源模块2内预存有LED发光单元1的温度阈值,当LED发光单元1的温度上升到温度阈值时,电源模块2自动减小输出电流,直到LED发光单元1的温度降低到温度阈值以下。通过设置温度传感器可以控制LED智能灯具的温度,尤其是可避免LED智能发光单元的温度过高而影响LED智能灯具的寿命。
灯具控制命令可以是调节LED发光单元1的工作电压、工作电流、亮度、颜色、温度及开关时间中的至少一个参数的调节命令,相应地,LED智能灯具的工作状态信息也将包括LED发光单元1的工作电压、工作电流、亮度、颜色、温度、定时开关设置信息中的至少一个。用户可以根据环境光线的强弱调节LED发光单元1的亮度,使其适合当前光线环境,亮度可从10%到100%间无级调节。也可以调节LED发光单元1的颜色,使其具有合适的色温,使人们感觉舒适。还可以远程对LED智能灯具进行开关控制或设定LED发光单元1的开关时间,使LED发光单元1定时开关,以实现节能。LED发光单元1可以包括若干LED灯珠。另外,工作状态信息还可进一步包括LED智能灯具的实时功耗信息,使用户可以随时了解各LED智能灯具的实时功耗情况。
如图2所示,该LED智能灯具还可包括环境光亮度传感器4,将环境光亮度传感器4与控制模块3连接,环境光亮度传感器4可以检测当前环境光亮度,并将检测到的当前环境光亮度信号发送到控制模块3,这样,控制模块3可根据环境光亮度传感器4检测到的环境光亮度信号,通过电源模块2自动调节LED发光单元1的亮度。
基于上述LED智能灯具,本发明还提供了一种LED智能灯具控制系统。如图3所示,该LED智能灯具控制系统包括若干上述的LED智能灯具,还包括控制终端6,控制终端6用于通过Wi-Fi或互联网向各LED智能灯具发送灯具控制命令及接收各LED智能灯具的工作状态信息。具体而言,控制终端6及各LED智能灯具可通过Wi-Fi加入同一路由器5的局域网,这样,控制终端6可通过Wi-Fi向各LED智能灯具发送上述灯具控制命令及接收各LED智能灯具的工作状态信息。各LED智能灯具上可设置二维码,控制终端6通过读取该二维码可获取该LED智能灯具的识别信息,从而将该LED智能灯具的识别信息存储到控制终端6的系统中,便于后续控制终端6对LED智能灯具的识别及控制。同时,控制终端6也可通过互联网连接LED智能灯具所在的局域网,比如,将各LED智能灯具加入路由器5的局域网,并通过互联网将控制终端6与路由器5连接,这样,控制终端6可通过互联网向各LED智能灯具发送灯具控制命令及接收各LED智能灯具的工作状态信息。这样用户不仅可以在路由器5的Wi-Fi信号覆盖范围内连接路由器5,还可以在任何可以连接互联网的地方连接上路由器5,以实现对各LED智能灯具的监控。实际运用中,该LED智能灯具控制系统还可包括云端服务器,云端服务器通过互联网与路由器5连接,控制终端6可与云端服务器连接,控制终端6可通过云端服务器经由互联网发送灯具控制命令及接收各LED智能灯具的工作状态信息。例如,控制终端6发送的控制命令经过云端服务器后,再经互联网传送给路由器5,最后经路由器5传送到各LED智能灯具,以实现对各LED智能灯具的控制,各LED智能灯具的工作状态信息可由相同路径逆向传送到控制终端6。控制终端6上可安装LED智能灯具的控制程序,通过控制程序可生成上述灯具控制命令。通过控制终端6上安装的控制程序可对各LED智能灯具进行统一或独立控制,并可集中同步显示各LED智能灯具的工作状态信息。控制终端6上可预设多个情景模式,不同的情景模式下,LED发光单元1具有不同的颜色及亮度,通过控制终端6可以选择不同的情景模式,LED智能灯具可根据控制终端6选择的情景模式自动调节LED发光单元1的颜色及亮度。当然,情景模式也可以只包括LED发光单元1的颜色或亮度。此外,还可以赋予不同的控制终端6不同的控制权限等级,以对各LED智能灯具进行不同程度的控制。具有最高控制权限等级的控制终端6可以远程强制关闭LED智能灯具,非最高控制权限等级的控制终端6解锁,其他任何非最高控制权限等级的控制终端6都不能开启被具有最高控制权限等级的控制终端6所强制关闭的LED智能灯具。通过这种方式可以实现远程EMC(Energy Management Contracting,能源合约管理)管理。EMC公司可以提供LED智能灯具给用户,并通过控制终端6对用户家中的LED智能灯具进行管理比如对违反合约(如欠费)的用户家中的LED智能灯具进行限电或强制关闭。智能手机、平板电脑、个人笔记本等都可以作为控制终端6,各LED智能灯具的工作状态信息可显示在控制终端6上,方便用户实时查看。
以上所述仅为本发明的较佳实施例而已,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、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (12)

  1. 一种LED智能灯具,其特征在于,包括LED发光单元、电源模块及控制模块;
    所述控制模块与所述电源模块连接;所述电源模块与所述LED发光单元连接;
    所述控制模块用于接收控制终端发送的灯具控制命令,并将所述灯具控制命令发送到所述电源模块,同时,将所述LED智能灯具的工作状态信息发送出去;
    所述电源模块用于根据所述灯具控制命令调节所述LED智能灯具的工作状态。
  2. 如权利要求1所述的LED智能灯具,其特征在于,还包括温度传感器;所述温度传感器与所述电源模块及控制模块连接,设置在所述LED智能灯具内,用于检测所述LED发光单元的温度,并将检测到的温度值发送到电源模块;所述电源模块内预存有LED发光单元的温度阈值,当所述LED发光单元的温度上升到所述温度阈值时,所述电源模块自动减小输出电流,直到所述LED发光单元的温度降低到所述温度阈值以下。
  3. 如权利要求1所述的LED智能灯具,其特征在于,所述灯具控制命令包括调节所述LED发光单元的工作电压、工作电流、亮度、颜色、温度及开关时间中的至少一个参数的调节命令。
  4. 如权利要求1所述的LED智能灯具,其特征在于,所述LED智能灯具的工作状态信息包括所述LED发光单元的工作电压、工作电流、亮度、颜色、温度、定时开关设置信息中的至少一个。
  5. 如权利要求1所述的LED智能灯具,其特征在于,所述LED智能灯具的工作状态信息包括所述LED智能灯具的实时功耗信息。
  6. 如权利要求1所述的LED智能灯具,其特征在于,所述控制模块上设置有Wi-Fi模块,所述Wi-Fi模块用于接收控制终端发送的灯具控制命令。
  7. 如权利要求1所述的LED智能灯具,其特征在于,还包括环境光亮度传感器;所述环境光亮度传感器与所述控制模块连接;所述控制模块可根据所述环境光亮度传感器检测到的环境光亮度信号,通过所述电源模块自动调节所述LED发光单元的亮度。
  8. 一种LED智能灯具控制系统,其特征在于,包括若干如权利要求1-7中任一权利要求所述的LED智能灯具,还包括控制终端;
    所述控制终端用于通过Wi-Fi或互联网向各LED智能灯具发送所述灯具控制命令及接收各LED智能灯具的工作状态信息。
  9. 如权利要求8所述的LED智能灯具控制系统,其特征在于,所述控制终端上安装有所述LED智能灯具的控制程序;通过所述控制程序可生成所述灯具控制命令。
  10. 如权利要求8所述的LED智能灯具控制系统,其特征在于,所述控制终端具有控制权限等级,具有最高控制权限等级的控制终端可以远程强制关闭所述LED智能灯具;非最高控制权限等级的控制终端不能开启被具有最高控制权限等级的控制终端所强制关闭的LED智能灯具。
  11. 如权利要求8所述的LED智能灯具控制系统,其特征在于,所述LED智能灯具上设置有二维码,所述控制终端通过读取所述二维码可获取所述LED智能灯具的识别信息,并将所述识别信息存储到所述控制终端的系统中。
  12. 如权利要求8所述的LED智能灯具控制系统,其特征在于,还包括云端服务器,所述云端服务器与所述互联网连接,所述控制终端与所述云端服务器连接;所述控制终端用于通过所述云端服务器经由互联网发送所述灯具控制命令及接收各LED智能灯具的工作状态信息。
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