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WO2013185402A1 - 一种led灯及led照明系统 - Google Patents

一种led灯及led照明系统 Download PDF

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Publication number
WO2013185402A1
WO2013185402A1 PCT/CN2012/078791 CN2012078791W WO2013185402A1 WO 2013185402 A1 WO2013185402 A1 WO 2013185402A1 CN 2012078791 W CN2012078791 W CN 2012078791W WO 2013185402 A1 WO2013185402 A1 WO 2013185402A1
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WIPO (PCT)
Prior art keywords
led
signal
routing module
lighting system
led lighting
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PCT/CN2012/078791
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English (en)
French (fr)
Inventor
阮家阳
沈锦祥
Original Assignee
浙江生辉照明有限公司
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Publication date
Application filed by 浙江生辉照明有限公司 filed Critical 浙江生辉照明有限公司
Priority to KR1020137023895A priority Critical patent/KR20140006943A/ko
Priority to EP12876076.6A priority patent/EP2733416A4/en
Priority to US14/130,925 priority patent/US20140133400A1/en
Priority to AU2012380416A priority patent/AU2012380416A1/en
Priority to JP2014520512A priority patent/JP2014522559A/ja
Publication of WO2013185402A1 publication Critical patent/WO2013185402A1/zh

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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
    • H05B47/175Controlling the light source by remote control
    • H05B47/19Controlling the light source by remote control via wireless transmission
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/18Information format or content conversion, e.g. adaptation by the network of the transmitted or received information for the purpose of wireless delivery to users or terminals
    • 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
    • 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
    • H05B47/196Controlling the light source by remote control characterised by user interface arrangements
    • H05B47/1965Controlling the light source by remote control characterised by user interface arrangements using handheld communication devices

Definitions

  • the invention relates to the technical field of LED lighting, in particular to an LED lamp and a lighting system with Wi-Fi routing function.
  • the Wi-Fi wireless control method is increasingly sought after by consumers because of its convenience of use and no additional requirements for installation and wiring of lamps.
  • the traditional Wi-Fi wireless control method is limited by obstacles, transmission distance and transmission power, and the coverage is often limited, which limits the convenience and reliability of wireless control.
  • Figure 1 depicts the above traditional Wi-Fi based Controlling the lighting system
  • Figure 1 depicts the conventional Wi-Fi based lighting system described above, including an external Wi-Fi router 10, the lighting devices 21, 22 are within their signal coverage effective range, and the lighting devices 31, 32 Then, in the no-signal area 40 due to distances and obstacles, a valid Wi-Fi signal cannot be received.
  • the wireless connection between the router and the luminaire is a star-shaped structure, and the luminaire and the luminaire cannot transmit information to each other, thereby physically limiting the transmission distance of the wireless signal.
  • the present invention is directed to the above-mentioned deficiencies in the prior art, and provides an LED with Wi-Fi routing function. Lights can be connected to the Internet and LAN in separate or ad hoc networks, making it easier to understand and remotely control the status of the fixtures.
  • An LED lamp comprising at least one LED lighting component, at least one LED driving circuit, and at least one Wi-Fi routing module having a routing function for receiving and transmitting a Wi-Fi signal, the LED driving circuit and the LED lighting component respectively Wi-Fi routing module is connected .
  • the Wi-Fi routing module accesses an Internet network or a local area network through a Wi-Fi signal. .
  • the Wi-Fi routing module is disposed inside or outside the LED lamp housing.
  • the working frequency band of the Wi-Fi routing module is 2.4 GHz or 5 GHz.
  • An LED illumination system consisting of at least two LED lamp nodes as described above, each node transmitting a received Wi-Fi signal to other nodes within its Wi-Fi signal coverage.
  • Each LED The light can act as a Wi-Fi router, passing the received Wi-Fi signal, bridging other LED lights within the coverage of its Wi-Fi signal, forming a Wi-Fi based Network structure wireless network.
  • the system is connected to an Internet network or a local area network via a Wi-Fi signal.
  • the system also includes a control terminal that implements state reading and remote control of nodes in the system, the control terminal being coupled to each node via a Wi-Fi signal.
  • control terminal is a computer, a tablet or a smart phone.
  • the lights allow the luminaire to simultaneously become a router for the wireless network, or a wireless hub. In this way, as long as a luminaire receives the signal, the signal can be transmitted through layers, and the coverage of the wireless network is continuously extended and expanded to break through.
  • the propagation distance and penetration capability of Wi-Fi signals are examples of Wi-Fi signals.
  • the LED of the present invention Illumination devices can be Wi-Fi alone or in the form of an ad hoc network and Internet and LAN
  • the form of the connection makes the understanding and control of the state of the luminaire more convenient and quicker.
  • Figure 1 is a schematic structural view of a conventional wirelessly controlled lighting system
  • FIG. 2 is a schematic structural view of an LED lamp of the present invention
  • FIG. 3 is a schematic structural view of an LED lighting system of the present invention.
  • the LED lamp 40 of the present invention includes an LED lighting assembly 41, an LED Drive circuit 42 and a Wi-Fi routing module 43. Wherein the Wi-Fi routing module 43 and the LED driving circuit 42 are between the LED driving circuit 42 and The LED lighting assembly 41 is electrically connected.
  • the working frequency band of the Wi-Fi routing module 43 can be 2.4 GHz or 5 GHz.
  • the Wi-Fi routing module 43 can be built-in inside the lamp body shell, such as integrated with LED driver circuit 42 on a circuit board, can be attached to the surface of the lamp body shell, or it can be externally mounted outside the lamp body.
  • Wi-Fi The electrical connection between the routing module 43 and the LED drive circuit 42 enables detection of the status of the LEDs, such as the on/off state of the lamp and the intensity of the light adjustment. Also available by Wi-Fi routing module 43 The received signal is input to the control port of the LED driving circuit 42, and the state control and brightness adjustment of the lamp are realized. Further, the Wi-Fi routing module sends a PWM signal to the LED The dimming control input of the drive circuit can realize the dimming function.
  • LED lights 40 It does not specifically refer to a single light source, such as a single light bulb. It also includes a luminaire with multiple bulbs that can also be connected to the same Wi-Fi routing module to detect and control the status of the adjustment lamp.
  • FIG. 3 depicts the LED lighting system of the present invention, 50, 60, 70, 80, 90 and 100 are all LED lights.
  • the LED light 50 passes through its Wi-Fi routing module 51 and its Wi-Fi routing module 61 for the LED lights 60, 70 within its signal coverage, 71 connection; LED lights 60, 70 are also connected via Wi-Fi.
  • LED lights 60, 70 as Wi-Fi routers, respectively, LED lights 50 is connected to the spaced LEDs 80, 90, and 100 to bridge the network structure, and so on, to form a meshed Wi-Fi network.
  • Wi-Fi The network is extended to break the signal distance and penetration limit of a single Wi-Fi router. As long as one light receives the command, it will be layered to the entire mesh Wi-Fi Each node in the network makes wireless control more convenient in large buildings such as office buildings and shopping malls.
  • the Wi-Fi network formed by the lighting system shown in Figure 3 can be connected to the internet. Or a local area network, allowing customers to implement status monitoring and remote control through terminals connected to the network. For example, you can use a smartphone to implement LEDs through a specific application. Lights are switched, brightness and color or tone adjustment.
  • the working principle and core of the invention is to break through Wi-Fi by using the Wi-Fi routing function of the lighting device and the self-organizing network function.
  • the network coverage is limited; the ad hoc network has Internet and LAN access capabilities; the control terminal and the Wi-Fi routing module are electrically connected, enabling remote control of the status and adjustment of the lights through the network.

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

Abstract

一种LED灯(40、50、60、70、80、90、100),包括LED发光组件(41),LED驱动电路(42),和接收并发射Wi-Fi信号的具有路由功能的Wi-Fi路由模块(43、51、61、71、81、91、101)。LED驱动电路(42)分别与LED发光组件(41)和Wi-Fi路由模块(43、51、61、71、81、91、101)相连。另有一种LED照明系统,该系统是由至少两个如上所述的LED灯(50、60、70、80、90、100)节点组成,每个节点传递所接收到的Wi-Fi信号到其Wi-Fi信号覆盖范围内的其它节点。该LED灯让灯具同时成为无线网络的路由器,或者说是无线集线器。这样只要有一个灯具接收到信号,该信号就能被层层传递,无线网络的覆盖范围得到持续的延伸和扩展,从而突破Wi-Fi信号的传播距离和穿透能力的限制。

Description

一种LED灯及LED照明系统 技术领域
本发明涉及 LED 照明技术领域,特别涉及一种带 Wi-Fi 路由功能的 LED 灯及照明系统。
背景技术
智能化控制照明装置及其系统始终是新一代照明方案的研究课题。常用的概念无外乎以下几种:
1. 通过传感器来获知外在条件,例如通过光感元件检测环境亮度,来自动开关灯具。
2. 通过有线接口网络来读取灯具的状态,从而了解和控制建筑物的灯具开关盒调光。
3. 通过无线信号,如Wi-Fi网络来控制具备无线收发能力的灯具,从而实现远程调控。
在以上几种控制方式中,Wi-Fi无线控制方法因其使用的便利和对灯具安装布线的无附加要求,越来越受到消费者的追捧。而传统的Wi-Fi无线控制方法,受到障碍物、传输距离和传输功率的限制,覆盖面往往有限,从而限制了无线控制的便利性和可靠性。
图1就描述了上述传统的基于 Wi-Fi 控制照明系统,图1就描述了上述的传统的基于Wi-Fi控制照明系统,包括外置Wi-Fi路由器10,照明装置21、22是在其信号覆盖有效范围内,而照明装置31、32则因诸如距离和障碍物的原因处在无信号区域40中,不能接收到有效的Wi-Fi信号。此外,在上述无线控制方法中,路由器和灯具的无线连接是星状结构,灯具和灯具间并不能相互传递信息,从而也从物理上限制了无线信号的传输距离。
技术解决方案
本发明针对上述现有技术中存在的不足,提供了一种带有 Wi-Fi 路由功能的 LED 灯,可以单独或以自组网络的形式和 Internet 及局域网连接,从而使得对灯具状态的了解和远程控制变得更加便捷。
本发明的技术方案是这样实现的:
一种LED灯,它包括至少一个LED发光组件,至少一个LED驱动电路,和至少一个接收并发射Wi-Fi信号的具有路由功能的Wi-Fi路由模块,所述LED驱动电路分别与LED发光组件、Wi-Fi路由模块相连 。
作为优选, 所述的Wi-Fi路由模块通过Wi-Fi信号接入Internet网络或局域网中 。
作为优选, 所述的Wi-Fi路由模块设置在LED灯外壳的内部或外部 。
作为优选, 所述Wi-Fi路由模块的工作频段为2.4GHZ或5GHZ 。
一种LED照明系统,该系统是由至少两个如上所述的LED灯节点组成,每个节点传递所接收到的Wi-Fi信号到其Wi-Fi信号覆盖范围内的其它节点 。每个 LED 灯可以作为 Wi-Fi 路由器,传递所接收到的 Wi-Fi 信号,桥接在其 Wi-Fi 信号覆盖范围内的其它 LED 灯,组成一个基于 Wi-Fi 的网状结构无线网络。
作为优选, 该系统通过Wi-Fi信号接入Internet网络或局域网中 。
作为优选, 该系统还包括有实现对该系统中节点的状态读取和远程控制的控制终端,所述的控制终端通过Wi-Fi信号与每个节点相连。
作为优选, 所述的控制终端为计算机,平板电脑或智能手机。
有益效果
采用了上述技术方案的本发明的设计思想及有益效果是:
本发明的 LED 灯让灯具也能同时成为无线网络的路由器,或者说是无线集线器。这样只要有一个灯具接收到信号,该信号就能被层层传递,无线网络的覆盖范围得到持续的延伸和扩展,从而突破 Wi-Fi 信号的传播距离和穿透能力的限制。
另外,本发明所述的LED 照明装置,无论是单个灯体,还是多个灯体组成的灯具,都可以单独或以自组网络的形式和 Internet 及局域网以 Wi-Fi 的形式连接,从而使得对灯具状态的了解和控制变得更加方便和迅捷。
附图说明
图 1 为传统的基于无线控制照明系统的结构示意图;
图2为本发明LED灯的结构示意图;
图3为本发明LED照明系统的结构示意图。
本发明的实施方式
本发明的具体实施方式如下:
实施例: 本发明的 LED 灯 40 ,如图 1 所示,包括一个 LED 发光组件 41 ,一个 LED 驱动电路 42 和一个 Wi-Fi 路由模块 43 。其中所述 Wi-Fi 路由模块 43 和 LED 驱动电路 42 之间, LED 驱动电路 42 和 LED 发光组件 41 之间都是电连接。其中 Wi-Fi 路由模块 43 的工作频段可以为 2.4GHz ,也可以为 5GHz 。所述 Wi-Fi 路由模块 43 可以内置安装在灯体外壳内,如和 LED 驱动电路 42 集成在一个电路板上,可以附着安装在灯体外壳表面,也可以是外置安装在灯体之外。 Wi-Fi 路由模块 43 和 LED 驱动电路 42 之间的电连接,可以实现检测 LED 灯的状态,如灯的开关状态,光的调节强度。同时也可由 Wi-Fi 路由模块 43 将接收到的信号输入到 LED 驱动电路 42 的控制端口,实现对灯的状态控制和亮度调节等。再进一步的, Wi-Fi 路由模块发出 PWM 信号到 LED 驱动电路的调光控制输入端,即可实现调光功能。
其中 LED 灯 40 并不专指单个的光源,如单个灯泡。也包括一个装有多个灯泡的灯具,这些灯泡的驱动电路同样可连接至同一个 Wi-Fi 路由模块,来检测和控制调节灯的状态。
图 3 描述了本发明的 LED 照明系统, 50, 60, 70, 80, 90 和 100 都为上述的 LED 灯。 LED 灯 50 通过其 Wi-Fi 路由模块 51 ,和其信号覆盖范围内的 LED 灯 60 、 70 的 Wi-Fi 路由模块 61 、 71 连接; LED 灯 60 、 70 之间也通过 Wi-Fi 相连接。同时, LED 灯 60 、 70 作为 Wi-Fi 路由器,分别将 LED 灯 50 与间隔的 LED 灯 80 、 90 和 100 都连接起来,从而实现桥接网络结构,以此类推,构成一个网状结构的 Wi-Fi 网络。由此, Wi-Fi 网络得到延伸,可以突破单个 Wi-Fi 路由器的信号距离和穿透能力的限制。只要有一个灯接收到指令,就会被层层传递至整个网状结构 Wi-Fi 网络中的每个节点,使得在办公楼和商场等大型建筑物的场合,无线控制变得更加便利。
图 3 所示照明系统形成的 Wi-Fi 网络,可以接入 internet 或局域网,让客户可以通过连接到该网络的终端来实现状态监控和远程控制。例如,可以采用智能手机通过特定的应用程序,实现对 LED 灯的开关动作,亮度和颜色或色调调节。
本发明的工作原理和核心是:利用照明装置的 Wi-Fi 路由功能和自组网络功能,突破 Wi-Fi 网络覆盖范围的限制;该自组网络具备 Internet 和局域网接入能力;控制终端和 Wi-Fi 路由模块电连接,可实现远程的通过网络控制灯的状态和调节。
以上所述仅是本发明专利的较佳实施例,故依据本发明专利申请范围所述的构造,特征和原理所做的变化和修正,对于相关领域的技术人员来说是明显的,仍将属于附属权利要求所规定的本发明的精神和保护范围内。

Claims (1)

  1. 1. 一种LED灯,其特征在于:它包括至少一个LED发光组件,至少一个LED驱动电路,和至少一个接收并发射Wi-Fi信号的具有路由功能的Wi-Fi路由模块,所述LED驱动电路分别与LED发光组件、Wi-Fi路由模块相连。
    2. 根据权利要求1所述的一种LED灯,其特征是:所述的Wi-Fi路由模块通过Wi-Fi信号接入Internet网络或局域网中。
    3. 根据权利要求1所述的一种LED灯,其特征是:所述的Wi-Fi路由模块设置在LED灯外壳的内部或外部。
    4. 根据权利要求1所述的一种LED灯,其特征是:所述Wi-Fi路由模块的工作频段为2.4GHZ或5GHZ。
    5. 一种LED照明系统,其特征是,该系统是由至少两个如权利要求1所述的LED灯节点组成,每个节点传递所接收到的Wi-Fi信号到其Wi-Fi信号覆盖范围内的其它节点。
    6. 根据权利要求5所述的一种LED照明系统,其特征是,该系统通过Wi-Fi信号接入Internet网络或局域网中。
    7. 根据权利要求5所述的一种LED照明系统,其特征是,该系统还包括有实现对该系统中节点的状态读取和远程控制的控制终端,所述的控制终端通过Wi-Fi信号与每个节点相连。
    8. 根据权利要求7所述的一种LED照明系统,其特征是,所述的控制终端为计算机,平板电脑或智能手机。
PCT/CN2012/078791 2012-06-12 2012-07-18 一种led灯及led照明系统 WO2013185402A1 (zh)

Priority Applications (5)

Application Number Priority Date Filing Date Title
KR1020137023895A KR20140006943A (ko) 2012-06-12 2012-07-18 엘이디 등 및 엘이디 조명시스템
EP12876076.6A EP2733416A4 (en) 2012-06-12 2012-07-18 LED LIGHT AND LED LIGHTING SYSTEM
US14/130,925 US20140133400A1 (en) 2012-06-12 2012-07-18 LED Lamp and LED Illumination System
AU2012380416A AU2012380416A1 (en) 2012-06-12 2012-07-18 An LED lamp and LED illumination system
JP2014520512A JP2014522559A (ja) 2012-06-12 2012-07-18 Ledランプおよびled照明システム

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CN201210196628.4A CN102752916B (zh) 2012-06-12 2012-06-12 一种led灯及led照明系统
CN201210196628.4 2012-06-12

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EP (1) EP2733416A4 (zh)
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KR (1) KR20140006943A (zh)
CN (1) CN102752916B (zh)
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