WO2019001405A1 - 一种基于红外感应的led球泡灯控制系统 - Google Patents

一种基于红外感应的led球泡灯控制系统 Download PDF

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Publication number
WO2019001405A1
WO2019001405A1 PCT/CN2018/092759 CN2018092759W WO2019001405A1 WO 2019001405 A1 WO2019001405 A1 WO 2019001405A1 CN 2018092759 W CN2018092759 W CN 2018092759W WO 2019001405 A1 WO2019001405 A1 WO 2019001405A1
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led bulb
module
sensor
power
control
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PCT/CN2018/092759
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English (en)
French (fr)
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范志林
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上海顿格电子贸易有限公司
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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
    • 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
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/30Driver circuits
    • H05B45/32Pulse-control circuits
    • H05B45/325Pulse-width modulation [PWM]

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  • the invention relates to the technical field of lighting fixtures, in particular to an LED bulb control system based on infrared induction.
  • the aisle corridor is generally a temporary lighting place.
  • an LED sensor light with a light-controlled human body sensing function instead of the ordinary one.
  • the LED illuminator is turned off when no one passes, and can be turned on when the environment is dark and someone enters the sensing area.
  • the LED induction lamp generally has the following characteristics.
  • the LED induction lamp is generally turned on when the ambient light is below a certain illumination value. When the human body leaves the sensing area, the LED induction lamp will be turned off after a preset time delay.
  • the LED induction lamp with the light-controlled human body sensing function has parameters such as the illuminance value and the delay time, which are set before the production, and the user cannot adjust according to the specific use occasion and the demand, affecting the use;
  • Some LED sensor lamps with adjustable parameters are generally equipped with an LED sensor light connection adjustment device, which is set at a fixed position, and the user needs to go to the position to adjust the parameters, which is inconvenient to use.
  • an LED bulb control system based on infrared sensing, comprising: a mobile terminal, an inductor and an LED bulb, the sensor and the mobile terminal and the Said LED bulb to achieve wireless communication connection;
  • the inductor further includes:
  • a light detecting module configured to detect the illuminance of the light in the environment where the LED bulb is located, and output a corresponding first detection result
  • control module connected to the light detecting module, wherein an open illuminance value is preset in the control module, and the control module opens the light when the illuminance is lower than the open illuminance value according to the first detection result Sensor
  • a human body infrared sensing module is connected to the control module, configured to detect a human body activity state within a sensing range of the sensor, and output a corresponding second detection result to the control module;
  • the control module is further configured to process the second detection result to obtain a corresponding control instruction and output, the control instruction including an opening instruction for turning on the LED bulb when the human body enters the sensing range, and
  • the control module is further configured to send the control instruction to the LED bulb by way of wireless communication to control the operation of the LED bulb;
  • the mobile terminal further includes:
  • a setting module configured to provide a user with an initial parameter of the sensor, where the initial parameter includes the preset brightness, the open illuminance value, and the preset time;
  • the setting module is further configured to send the initial parameter to the sensor by way of wireless communication to perform an initial parameter setting operation of the sensor.
  • the sensor further includes:
  • a power module for powering the inductor for powering the inductor.
  • the sensor further includes:
  • a power detection module connected to the power module and the control module, configured to detect a remaining power of the power module, and output a power detection result to the control module;
  • An alarm power is preset in the control module, and when the remaining power is lower than the alarm power, the control module sends a power reminder to the mobile terminal by way of wireless communication.
  • the setting module includes a power setting component for providing the user with the alarm power.
  • control module comprises:
  • a storage unit configured to store the initial parameter and the alarm power.
  • the LED bulb further comprises:
  • a signal processing module configured to receive, by way of wireless communication, a control command sent by the sensor, and process the control command into a dimming signal of a pulse width modulation signal;
  • An LED light source module as an illuminant of the LED bulb lamp
  • the dimming module is configured to connect the LED light source module and the signal processing module to perform a corresponding dimming operation on the LED light source module according to the dimming signal.
  • the mobile terminal and the sensor are connected by using Bluetooth communication;
  • the inductor and the LED bulb are connected by Bluetooth communication.
  • the human body infrared sensing module is implemented by a pyroelectric sensor.
  • the wireless communication connection between the sensor and the mobile terminal and the user can set the initial parameters of the sensor through the mobile terminal to improve the user experience.
  • Figure 1 is a block diagram showing the construction of an LED bulb control system based on infrared sensing in a preferred embodiment of the present invention.
  • an infrared bulb-based LED bulb control system includes: a mobile terminal 1, a sensor 2, and an LED bulb 3, and the sensor 2 and the sensor 2 respectively A wireless communication connection between the mobile terminal 1 and the LED bulb 3 is implemented;
  • the sensor 2 further includes:
  • the light detecting module 21 is configured to detect the illuminance of the light in the environment where the LED bulb 3 is located, and output a corresponding first detection result;
  • the control module 22 is connected to the light detecting module 21, and the control module 22 presets an open illuminance value, and the control module 22 turns on the sensor 2 when the illuminance is lower than the illuminance value according to the first detection result;
  • the human body infrared sensing module 23 is connected to the control module 22 for detecting the human body activity state within the sensing range of the sensor 2, and outputting the corresponding second detection result to the control module 22;
  • the control module 22 is further configured to process the second detection result to obtain a corresponding control instruction and output the control instruction, and the control instruction includes an opening instruction for turning on the LED bulb 3 when the human body enters the sensing range, and
  • the control module 22 is further configured to send a control command to the LED bulb 3 by means of wireless communication to control the operation of the LED bulb 3;
  • the mobile terminal 1 further includes:
  • the setting module 11 is configured to provide the user with initial parameters of the sensor 2, where the initial parameters include a preset brightness, an opening illuminance value, and a preset time;
  • the setting module 11 is further configured to send the initial parameters to the sensor 2 by means of wireless communication to perform an initial parameter setting operation of the sensor 2.
  • the senor 2 and the LED bulb 3 are separately arranged, which can avoid a large number of modification of the traditional LED lamp; in addition, the heat generated by the LED bulb 3 can be prevented from affecting the detection effect of the human body infrared sensor module 23. , improve the working efficiency of the sensor 2;
  • the user can set the initial parameters of the sensor 22 through the mobile terminal 1 according to requirements, thereby improving the user.
  • the user can set the initial parameters of the sensor 22 through the mobile terminal 1 according to requirements, thereby improving the user.
  • the light detection module 21 detects the illuminance of the light in the environment where the LED bulb 3 is located, and presets an illuminance value in the control module 22, and only when the ambient illuminance is low, the illuminance is low. 2 is turned on, and the control module 22 processes the detection result output by the human body infrared sensing module 23, that is, the sensor 2 starts to work only when the ambient light is dark, and the operation of the LED bulb 3 can be further reduced. Time, saving electricity, extending the service life of the LED bulb 3; at the same time, reducing the consumption of the sensor 2 itself.
  • the senor 2 further includes:
  • the power module 24 is configured to supply power to the inductor 2.
  • the senor 2 further includes:
  • the power detection module 25 is connected to the power module 24 and the control module 22 for detecting the remaining power of the power module 24, and outputting the power detection result to the control module 22;
  • An alarm power is preset in the control module 22, and when the remaining power is lower than the alarm power, the control module 22 sends a power alarm to the mobile terminal 1 by means of wireless communication. Further, in this embodiment, the mobile terminal 1 has Display the function of the phone.
  • the inductor 2 and the LED bulb 3 are separately provided, and the inductor 2 is conveniently disposed, the inductor 2 uses an independent power source, and the power module 24 can be various batteries having a suitable size.
  • the power consumption of the power module 24 is monitored in real time by setting the power detection module 25, and the power module is sent by the control module 22 by wireless communication when the power is low. The user is reminded to replace the power module 25 in time.
  • the setting module 11 includes a power setting component for providing a user with an alarm power.
  • the setting module 11 provides the user with the function of setting the alarm power, and the user can set according to the specific situation.
  • Reasonable alarm power to avoid inconvenience to pedestrians due to sudden power failure of sensor 2.
  • control module 22 includes:
  • the storage unit 221 is configured to store initial parameters and alarm power.
  • the LED bulb 3 further includes:
  • the signal processing module 31 is configured to receive the control command sent by the sensor 2 by means of wireless communication, and process the control command into a dimming signal of the pulse width modulation signal;
  • LED light source module 32 as an illuminant of LED bulb 3;
  • the dimming module 33 is connected to the LED light source module 32 and the signal processing module 31 for performing a corresponding dimming operation on the LED light source module 32 according to the dimming signal.
  • the mobile terminal 1 and the sensor 2 are connected by Bluetooth communication;
  • the sensor 2 and the LED bulb 3 are connected by Bluetooth communication.
  • the human body infrared sensing module 23 is implemented by a pyroelectric sensor.

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  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

本发明公开了一种基于红外感应的LED球泡灯控制系统,属于照明灯具技术领域,包括:移动终端、感应器和LED球泡灯,感应器分别与移动终端和LED球泡灯实现无线通讯连接;感应器用于在环境照度值低于预设值时,在一定范围内检测人体活动状态,并根据相应的检测结果通过无线通讯的方式发送控制指令给LED球泡灯,以控制LED球泡灯工作;移动终端用于提供给使用者设置感应器的初始参数,并通过无线通讯的方式将初始参数发送至感应器,以执行感应器的初始参数设置操作。上述技术方案的有益效果是:感应器与移动终端之间通过无线通讯连接,使用者可以通过移动终端设置感应器的初始参数,提高用户体验。

Description

一种基于红外感应的LED球泡灯控制系统 技术领域
本发明涉及照明灯具技术领域,尤其涉及一种基于红外感应的LED球泡灯控制系统。
背景技术
现在由于楼梯,过道走廊一般是临时性照明场所,为了避免照明灯全天候工作影响照明灯的使用寿命以及降低公共照明的用电量,一般选择使用具有光控人体感应功能的LED感应灯来代替普通的LED照明灯,感应灯在无人经过时处于关闭状态,并且可以在环境较暗且有人进入感应区时开启LED灯。LED感应灯一般具有以下几个特性,LED感应灯一般在环境光线低于一定照度值时才开启,当人体离开感应区域后,LED感应灯会延时预设时间后才关闭。
现有技术中,具有光控人体感应功能的LED感应灯,其开启照度值及延时时间等参数在出产前就设置好了,使用者无法根据具体使用场合及需求调节,影响使用;有一些可调节参数的LED感应灯,一般是具有一个LED感应灯连接的调节装置,设置于固定的位置,使用者需要走到该位置才能调节参数,使用不方便。
发明内容
根据现有技术中存在的上述问题,现提供一种基于红外感应的LED球 泡灯控制系统,包括:移动终端、感应器和LED球泡灯,所述感应器分别与所述移动终端和所述LED球泡灯实现无线通讯连接;
所述感应器进一步包括:
光线检测模块,用于检测所述LED球泡灯所在环境的光线照度,并输出相应的第一检测结果;
控制模块,连接所述光线检测模块,所述控制模块内预先设定一开启照度值,所述控制模块根据所述第一检测结果,于所述光线照度低于所述开启照度值时开启所述感应器;
人体红外感应模块,连接所述控制模块,用于在所述感应器的感应范围内检测人体活动状态,并将相应的第二检测结果输出至所述控制模块;
所述控制模块还用于处理所述第二检测结果得到相应的控制指令并输出,所述控制指令包括用于当人体进入所述感应范围时开启所述LED球泡灯的开启指令,以及
用于在人体离开所述感应范围时将所述LED球泡灯调节至预设亮度的亮度调节指令,以及
用于在人体离开所述感应范围后延时预设时间后关闭所述LED球泡灯的关闭指令;
所述控制模块还用于通过无线通讯的方式将所述控制指令发送至所述LED球泡灯,以控制所述LED球泡灯工作;
所述移动终端进一步包括:
设置模块,用于提供给使用者设置所述感应器的初始参数,所述初始参数包括所述预设亮度、所述开启照度值及所述预设时间;
所述设置模块还用于通过无线通讯的方式将所述初始参数发送至所述感应器,以执行所述感应器的初始参数设置操作。
较佳的,上述LED球泡灯控制系统中,所述感应器还包括:
电源模块,用于给所述感应器供电。
较佳的,上述LED球泡灯控制系统中,所述感应器还包括:
电源检测模块,连接所述电源模块和所述控制模块,用于检测所述电源模块的剩余电量,并将电量检测结果输出至所述控制模块;
于所述控制模块内预先设定一报警电量,当所述剩余电量低于所述报警电量时,所述控制模块通过无线通讯的方式发送电量提醒至所述移动终端。
较佳的,上述LED球泡灯控制系统中,所述设置模块中包括电量设置部件,用于提供给使用者设置所述报警电量。
较佳的,上述LED球泡灯控制系统中,所述控制模块包括:
存储单元,用于储存所述初始参数及所述报警电量。
较佳的,上述LED球泡灯控制系统中,所述LED球泡灯进一步包括:
信号处理模块,用于通过无线通讯的方式接收所述感应器发送的控制指令,并且将所述控制指令处理成为脉宽调制信号的调光信号;
LED光源模块,作为所述LED球泡灯的发光体;
调光模块,连接所述LED光源模块和所述信号处理模块,用于根据所述调光信号对所述LED光源模块进行相应的调光操作。
较佳的,上述LED球泡灯控制系统中,所述移动终端与所述感应器之间采用蓝牙通讯的方式连接;以及
所述感应器与所述LED球泡灯之间采用蓝牙通讯的方式连接。
较佳的,上述LED球泡灯控制系统中,所述人体红外感应模块由热释电传感器实现。
上述技术方案的有益效果是:感应器与移动终端之间通过无线通讯连接,使用者可以通过移动终端设置感应器的初始参数,提高用户体验。
附图说明
图1是本发明的较佳的实施例中,一种基于红外感应的LED球泡灯控 制系统的结构框图。
具体实施方式
下面结合附图和具体实施例对本发明作进一步说明,但不作为本发明的限定。
本发明的较佳的实施例中,如图1所示,一种基于红外感应的LED球泡灯控制系统,包括:移动终端1、感应器2和LED球泡灯3,感应器2分别与移动终端1和LED球泡灯3之间实现无线通讯连接;
感应器2进一步包括:
光线检测模块21,用于检测LED球泡灯3所在环境的光线照度,并输出相应的第一检测结果;
控制模块22,连接光线检测模块21,控制模块22内预先设定一开启照度值,控制模块22根据上述第一检测结果于上述光线照度低于开启照度值时开启感应器2;
人体红外感应模块23,连接控制模块22,用于在感应器2感应范围内检测人体活动状态,并将相应的第二检测结果输出至控制模块22;
控制模块22还用于处理上述第二检测结果得到相应的控制指令并输出,控制指令包括用于当人体进入感应范围时开启LED球泡灯3的开启指令,以及
用于在人体离开感应范围时将LED球泡灯3调节至预设亮度的亮度调节指令,以及
用于在人体离开感应范围后延时预设时间后关闭LED球泡灯3的关闭指令;
控制模块22还用于通过无线通讯的方式将控制指令发送至LED球泡灯3,以控制LED球泡灯3工作;
移动终端1进一步包括:
设置模块11,用于提供给使用者设置感应器2的初始参数,上述初始参数包括预设亮度、开启照度值及预设时间;
设置模块11还用于通过无线通讯的方式将上述初始参数发送至感应器2,以执行感应器2的初始参数设置操作。
上述技术方案中,感应器2和LED球泡灯3分开设置,可避免对传统的LED灯进行大量改造;另外可避免LED球泡灯3工作时产生的热量影响人体红外感应模块23的检测效果,提高感应器2的工作效率;
进一步地,通过在感应器2与移动终端1之间实现无线通讯连接,并在移动终端1内设置一设置模块11,使用者可以根据需求通过移动终端1设置感应器22的初始参数,提高用户体验。
进一步地,通过光线检测模块21,对LED球泡灯3所在环境的光线照度进行检测,并在控制模块22内预设一开启照度值,只有在环境光线照度低上述开启照度值时,感应器2才开启,控制模块22才会对人体红外感应模块23输出的检测结果进行处理,即只有在环境光线较暗的情况下,感应器2才开始工作,可进一步减少LED球泡灯3的工作时间,节约用电,延长LED球泡灯3的使用寿命;同时也可减少感应器2自身电量的消耗。
本发明的较佳的实施例中,感应器2还包括:
电源模块24,用于给感应器2供电。
本发明的较佳的实施例中,感应器2还包括:
电源检测模块25,连接电源模块24和控制模块22,用于检测电源模块24的剩余电量,并将电量检测结果输出至控制模块22;
于控制模块22内预先设定一报警电量,当剩余电量低于报警电量时,控制模块22通过无线通讯的方式发送电量提醒至移动终端1,进一步地,本实施例中,移动终端1为具有显示功能的手机。
上述技术方案中,由于感应器2和LED球泡灯3分开设置,且为了方 便设置感应器2,因此感应器2使用独立电源,电源模块24可以是各种具有合适尺寸的电池。感应器2在工作的过程中伴随着电量的消耗,通过设置电源检测模块25对电源模块24的电量进行实时监测,并在电量较低时由控制模块22通过无线通讯的方式发送电量提醒给使用者,提醒使用者及时对电源模块25进行更换。
本发明的较佳的实施例中,设置模块11中包括电量设置部件,用于提供给使用者设置报警电量。
上述技术方案中,由于不同场合的人流量不同,感应器2在具有相同电量的情况下其工作时间长短不同,因此设置模块11提供给使用者设置报警电量的功能,使用者可根据具体情况设置合理的报警电量,避免因感应器2突然断电对行人带来不便。
本发明的较佳的实施例中,控制模块22包括:
存储单元221,用于储存初始参数及报警电量。
本发明的较佳的实施例中,LED球泡灯3进一步包括:
信号处理模块31,用于通过无线通讯的方式接收感应器2发送的控制指令,并且将控制指令处理成为脉宽调制信号的调光信号;
LED光源模块32,作为LED球泡灯3的发光体;
调光模块33,连接LED光源模块32和信号处理模块31,用于根据调光信号对LED光源模块32进行相应的调光操作。
本发明的较佳的实施例中,移动终端1与感应器2之间采用蓝牙通讯的方式连接;以及
感应器2与LED球泡灯3之间采用蓝牙通讯的方式连接。
本发明的较佳的实施例中,人体红外感应模块23由热释电传感器实现。
以上所述仅为本发明较佳的实施例,并非因此限制本发明的实施方式及保护范围,对于本领域技术人员而言,应当能够意识到凡运用本发明说明书及图示内容所作出的等同替换和显而易见的变化所得到的方案,均应当包含 在本发明的保护范围内。

Claims (8)

  1. 一种基于红外感应的LED球泡灯控制系统,其特征在于,包括:移动终端、感应器和LED球泡灯,所述感应器分别与所述移动终端和所述LED球泡灯实现无线通讯连接;
    所述感应器进一步包括:
    光线检测模块,用于检测所述LED球泡灯所在环境的光线照度,并输出相应的第一检测结果;
    控制模块,连接所述光线检测模块,所述控制模块内预先设定一开启照度值,所述控制模块根据所述第一检测结果,于所述光线照度低于所述开启照度值时开启所述感应器;
    人体红外感应模块,连接所述控制模块,用于在所述感应器的感应范围内检测人体活动状态,并将相应的第二检测结果输出至所述控制模块;
    所述控制模块还用于处理所述第二检测结果得到相应的控制指令并输出,所述控制指令包括用于当人体进入所述感应范围时开启所述LED球泡灯的开启指令,以及
    用于在人体离开所述感应范围时将所述LED球泡灯调节至预设亮度的亮度调节指令,以及
    用于在人体离开所述感应范围后延时预设时间后关闭所述LED球泡灯的关闭指令;
    所述控制模块还用于通过无线通讯的方式将所述控制指令发送至所述LED球泡灯,以控制所述LED球泡灯工作;
    所述移动终端进一步包括:
    设置模块,用于提供给使用者设置所述感应器的初始参数,所述初始参数包括所述预设亮度、所述开启照度值及所述预设时间;
    所述设置模块还用于通过无线通讯的方式将所述初始参数发送至所述感 应器,以执行所述感应器的初始参数设置操作。
  2. 如权利要求1所述的LED球泡灯控制系统,其特征在于,所述感应器还包括:
    电源模块,用于给所述感应器供电。
  3. 如权利要求2所述的LED球泡灯控制系统,其特征在于,所述感应器还包括:
    电源检测模块,连接所述电源模块和所述控制模块,用于检测所述电源模块的剩余电量,并将电量检测结果输出至所述控制模块;
    于所述控制模块内预先设定一报警电量,当所述剩余电量低于所述报警电量时,所述控制模块通过无线通讯的方式发送电量提醒至所述移动终端。
  4. 如权利要求3所述的LED球泡灯控制系统,其特征在于,所述设置模块中包括电量设置部件,用于提供给使用者设置所述报警电量。
  5. 如权利要求3所述的LED球泡灯控制系统,其特征在于,所述控制模块包括:
    存储单元,用于储存所述初始参数及所述报警电量。
  6. 如权利要求1所述的LED球泡灯控制系统,其特征在于,所述LED球泡灯进一步包括:
    信号处理模块,用于通过无线通讯的方式接收所述感应器发送的控制指令,并且将所述控制指令处理成为脉宽调制信号的调光信号;
    LED光源模块,作为所述LED球泡灯的发光体;
    调光模块,连接所述LED光源模块和所述信号处理模块,用于根据所述调光信号对所述LED光源模块进行相应的调光操作。
  7. 如权利要求1所述的LED球泡灯控制系统,其特征在于,所述移动终端与所述感应器之间采用蓝牙通讯的方式连接;以及
    所述感应器与所述LED球泡灯之间采用蓝牙通讯的方式连接。
  8. 如权利要求1所述的LED球泡灯控制系统,其特征在于,所述人体 红外感应模块由热释电传感器实现。
PCT/CN2018/092759 2017-06-26 2018-06-26 一种基于红外感应的led球泡灯控制系统 WO2019001405A1 (zh)

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