WO2017198059A1 - Système de commande de prise intelligente infrarouge - Google Patents

Système de commande de prise intelligente infrarouge Download PDF

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Publication number
WO2017198059A1
WO2017198059A1 PCT/CN2017/082318 CN2017082318W WO2017198059A1 WO 2017198059 A1 WO2017198059 A1 WO 2017198059A1 CN 2017082318 W CN2017082318 W CN 2017082318W WO 2017198059 A1 WO2017198059 A1 WO 2017198059A1
Authority
WO
WIPO (PCT)
Prior art keywords
infrared
module
coupled
smart socket
control
Prior art date
Application number
PCT/CN2017/082318
Other languages
English (en)
Chinese (zh)
Inventor
陈辉萍
张文彬
汪序凯
彭灵
俞伟良
王炳峰
李东洋
朱荆莲
钟城广
肖胜男
黄安宁
谭卫文
Original Assignee
深圳佳比泰智能照明股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳佳比泰智能照明股份有限公司 filed Critical 深圳佳比泰智能照明股份有限公司
Publication of WO2017198059A1 publication Critical patent/WO2017198059A1/fr

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component

Definitions

  • the present invention relates to the field of smart socket remote control technologies, and in particular, to an infrared smart socket control system.
  • the smart home takes the residential as the platform, the home electrical appliance and the household electrical appliance as the main control objects, and utilizes the integrated wiring technology, the network communication technology, the security prevention technology, the automatic control technology, the audio and video technology to relate the home life.
  • the facility integrates efficiently, builds an efficient control system for residential facilities and family schedules, and enhances the home smart, safe, convenient, comfortable, and environmentally friendly energy-saving integrated smart home network control system platform.
  • SmartPlug usually refers to the built-in Wi-Fi unit, which is used to operate the socket through the client of the smartphone. The most basic function is to remotely control the on/off current of the socket through the mobile client, and set the limit of the socket. .
  • Smart sockets now do not focus on security functions, but emphasize the intelligence of the home. Smart sockets are often used in conjunction with home appliances to achieve functions such as setting and closing.
  • the wireless socket panel can only satisfy the wireless control of the user's indoors.
  • the control of the working state of the home equipment is powerless, and the real network control can not be realized.
  • the user does not have a mobile phone or tablet terminal at home, it is not possible to intuitively know the status of the indoor outlet.
  • the present invention provides an infrared smart socket control system, including:
  • a remote server [0007] a remote server; [0008] an infrared code library server for storing and providing an infrared code, communicatively connected to the remote server; [0009] a smart socket for performing local infrared control and learning, communicatively connected to the remote server;
  • the socket surface is provided with an infrared transceiver module;
  • a control terminal for remotely controlling the smart socket for infrared control is communicatively coupled to the remote server.
  • the smart socket includes:
  • a control module the infrared transceiver module is coupled to the control module
  • a communication module for connecting to the remote server via a network is coupled to the control module.
  • the smart socket further includes:
  • a main control board the control module is disposed on the main control board;
  • a power board for accessing the mains and supplying power to the main control board is coupled to the main control board, and the power supply jack is disposed on the power board;
  • a current transformer for detecting the current of the power supply jack, coupled to the power supply jack, disposed on the power board;
  • an AC voltage detecting module for detecting the voltage of the power supply jack, coupled to the power supply jack, disposed on the power board;
  • a power supply module for controlling the power of the main control board is coupled to the main control board and disposed on the power supply board.
  • the smart socket further includes:
  • an indicator light coupled to the control module, disposed on the main control board;
  • an infrared human body sensing module coupled to the control module, disposed on the main control board;
  • a temperature and humidity sensing module coupled to the control module, disposed on the main control board;
  • the photosensitive sensing module is coupled to the control module and disposed on the main control board.
  • the method further includes
  • the sound collection module is coupled to the communication module and disposed on the main control board.
  • the infrared transceiver module includes:
  • an infrared receiving sub-module coupled to the control module, disposed on the main control board;
  • the infrared emission sub-module is coupled to the control module and disposed on the main control board.
  • the communication module includes:
  • a communication antenna coupled to the communication chip
  • a storage module coupled to the communication chip.
  • the power supply jack includes a switch circuit, a fire hole, a neutral hole, and a ground hole;
  • the hot hole is coupled to the mains hot line by the switching circuit; the neutral line is coupled to the mains zero line; the ground hole is coupled to the city Electrical ground; the shut-off circuit is coupled to the control module.
  • the invention has the beneficial effects that the infrared intelligent library control is realized by the infrared learning and the infrared forwarding with the infrared library server, and the other household appliances are controlled through the smart socket, and the power consumption of the socket is learned through the detection of the current and voltage. To achieve intelligent, safe and energy-saving effects.
  • FIG. 1 is a schematic diagram of connection of an infrared smart socket control system according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a connection of an infrared smart socket control system according to another embodiment of the present invention.
  • FIG. 3 is a structural block diagram of a smart socket provided by the present invention.
  • the present invention provides an infrared smart socket control system 1000, the purpose of which is to pass through the smart socket 10 0 sets the communication component to realize the remote control function, and realizes the remote intelligent infrared control through the infrared learning and infrared forwarding with the infrared library server 300, and actually controls other home appliances through the smart socket 100, and through the detection of the current and voltage, the socket is actually learned. Power consumption for intelligent, safe and energy efficient
  • FIG. 1 is a schematic diagram of a connection of an infrared smart socket control system 1000 according to an embodiment of the present invention, including a remote server 200, an infrared code database server 300, a smart socket 100, and a control terminal 400.
  • the remote server 200 is mainly responsible for information scheduling and global control, and can receive the control command issued by the control terminal 400 to remotely control the smart socket 100, and can call the infrared code of the infrared code database server 300 to forward to the smart socket 100 for infrared learning or Infrared control, or infrared code for infrared learning by the smart socket 100 is transferred to the infrared code library server 300 and the like.
  • the infrared code library server 300 is configured to store and provide an infrared code, and the infrared code library server 300 is communicably connected to the remote server 200; the infrared code library server 300 is generally a server provided by a third-party cloud infrared code library.
  • the smart socket 100 is used for local infrared control and learning, and the smart socket 100 is communicably connected to the remote server 200; the smart socket surface is provided with an infrared transceiver module 9.
  • the smart socket 100 is connected to the remote server 200 through the router 101.
  • the smart socket 100 has a built-in wifi module to connect to the router 101, and then to the remote server 200 through the router 101.
  • the control terminal 400 is configured to remotely control the smart socket for infrared control, and the control terminal 400 is communicably connected to the remote server 200.
  • the control terminal 400 can be a mobile terminal, such as a mobile phone, a PAD, a notebook computer, etc., or can be a fixed terminal, such as a desktop computer. Remote control of the smart socket 100 can be achieved by downloading the corresponding APP in the control terminal 400.
  • FIG. 2 is a schematic diagram of connection of an infrared smart socket control system according to another embodiment of the present invention.
  • the embodiment is different from the previous embodiment in that the smart socket 100 is connected through a mobile data network.
  • the smart socket 100 has a data network communication module such as a SIM (Subscriber Identity Module) card built in, and is connected to the remote server 20 through a mobile data network such as 2G, 3G, or 4G.
  • SIM Subscriber Identity Module
  • FIG. 3 is a structural block diagram of a smart socket 100 according to the present invention.
  • the smart socket 100 includes a main Control board 1, control module 2, power board 3, power supply jack 4, communication module 5, current transformer 6, AC voltage detection module 7, power supply module 8, infrared transceiver module 9, indicator light 10, infrared human body
  • the control module 2 is disposed on the main control board 1; the control module 2 is preferably an MCU
  • the main control board 1 is the MCU main control board 1, and the MCU is embedded on the MCU main control board 1, and is connected to other modules through the MCU main control board 1.
  • the power board 3 for accessing the mains and supplying power to the main control board 1 is coupled to the main control board 1; after being connected to the mains, it is converted into 3.3V or 5V to supply power to the main control board 1. .
  • the power supply jack 4 controlled by the control module 2 is disposed on the power board 3, and the power jack 4 is coupled to the control module 2; preferably, the power plug
  • the hole 4 includes a shut-off circuit 401, a fire hole 402, a neutral hole 403, and a ground hole 404.
  • the fire hole 402 is coupled to the mains line Lin (ie, Live) by the switch circuit 401.
  • the neutral hole 403 is coupled to the neutral line N of the mains (ie, Neutral); the ground hole 404 is coupled to the ground line E (ie, Earth) of the mains; To the control module 2.
  • a communication module 5 for communication connection to the network is coupled to the control module 2.
  • a current transformer 6 for detecting the current of the power supply jack 4 is coupled to the power supply jack 4, and is disposed on the power board 3; the induced voltage is obtained through the current transformer 6 circuit, and the voltage is input. Go to the ADC pin of the MCU controller.
  • the AC voltage detecting module 7 for detecting the voltage of the power supply jack 4 is coupled to the power supply jack 4 and disposed on the power board 3; the voltage after the step-down is performed by the step-down rectifier circuit Input to the ADC pin of the MCU controller.
  • a power supply module 8 for controlling the power supply of the main control board 1 is coupled to the main control board 1, and is disposed on the power supply board 3.
  • the power supply module 8 can control the power supply board 3 to supply power to the main control board 1 using 3.3V or 5V.
  • the infrared transceiver module 9 for connecting to the external infrared transceiver device and transmitting and receiving the infrared signal is coupled to the control module 2, and is disposed on the main control board 1.
  • the infrared transceiver module 9 includes infrared The receiving submodule 901 and the infrared emitting submodule 902.
  • An infrared receiving sub-module 901 is coupled to the control module 2
  • the infrared emission sub-module 902 is coupled to the control module 2 and disposed on the main control board 1.
  • an indicator light 10 coupled to the control module 2, disposed on the main control board 1, and the MCU passes PWM (Pulse Width)
  • this indicator light 10 is preferably a colorful indicator light 10, indicator light
  • 10 can be set to red, green, blue, colorful, colorful gradient, flash, slow flash, double flash, off and other state modes.
  • the infrared human body sensing module 11 is coupled to the control module 2 and disposed on the main control board 1; the infrared human body sensing is used to implement automatic scene switching under human and unmanned conditions. For example, when the scene is air-conditioned, there is someone in the space, and the room temperature is higher than the set temperature, the air conditioner will automatically start. Infrared sensing is effective. ⁇ , ⁇ ⁇ ⁇ ⁇ Turn off the air conditioner. When the scene is illuminated, it can achieve the automatic control of the person to turn on the light and the person to turn off the light.
  • the temperature and humidity sensing module 12 is coupled to the control module 2 and disposed on the main control board 1; through the temperature and humidity sensor circuit, the MCU reads the temperature and humidity values through the temperature and humidity sensor communication protocol.
  • the photosensitive sensing module 13 is coupled to the control module 2 and disposed on the main control board 1.
  • the light intensity signal is converted into a voltage signal and input to the ADC pin of the MCU controller through the photosensitive resistor circuit.
  • the sound collection module 14 is coupled to the communication module 5 and disposed on the main control board 1.
  • Voice control uses third-party cloud voice recognition services, so this feature needs to work under normal network conditions.
  • the sound signal is collected by the local pickup, and the collected sound signal is sent to the cloud for voice recognition, and then the recognition result is transmitted back to the smart socket 100, and the smart socket 100 receives the instruction and performs corresponding action.
  • the communication module 5 includes a communication chip 501, a communication antenna 502, and a storage module 503.
  • the communication module 5 can be a wifi module, a Bluetooth module, or the like.
  • the communication module 5 is a wifi module
  • the communication chip 501 is preferably a wifi.
  • the MCU is connected to the MCU, and the MCU is connected to the wifi Soc via RST communication.
  • a communication antenna 502 is coupled to the communication chip 501; the communication is preferably a PCB printed Antenna.
  • PCB printed antenna
  • a storage module 503 is coupled to the communication chip 501.
  • the storage module 503 is preferably spi flash, that is, serial external storage.
  • the communication module 5 is connected to the network, and the remote terminal is connected to the mobile terminal, and the mobile terminal can remotely control the smart socket 100.
  • the following functions can be implemented:
  • the mobile phone APP issues a power-off command to the server, and the server forwards the command to the smart socket 100, and the smart socket 100 receives the command, performs the corresponding power-off action after identifying the command, and feeds back the state information to the server. , update the mobile APP interface.
  • the setting is determined by local precision. In the case of a network, use the network to calibrate.
  • the fixed-off function is used to set the relay and cut off the power.
  • the air conditioner is turned off first, then the power is turned off.
  • the wide-band infrared receiving head With the wide-band infrared receiving head, it can reach 10 meters distance learning.
  • the infrared code learned by the IC is read out by the MCU, and then uploaded to the server through communication, and forwarded by the server to the mobile phone APP.
  • the A PP is matched by the built-in infrared code.
  • the library finds the infrared remote control type and saves it on the mobile app and device.
  • Solution 2 The third-party cloud infrared code library is used to upload the learned infrared coding level to the server, and then the server requests the third-party cloud infrared code library to return the infrared matching result, and obtains the infrared remote control type and saves it on the server. [0076] 4) Remote infrared forwarding
  • Solution 1 By the type of infrared remote control learned, the built-in infrared code table is queried by the APP, and the infrared code group packet is sent, and the infrared code is sent to the remote server 200, and the remote server 200 forwards the device to the device. To the infrared code data, the data is written to the infrared code library IC, and the IC performs infrared transmission to achieve the purpose of remotely controlling the home appliance or other devices.
  • Scheme 2 third-party cloud infrared code library used by remote infrared forwarding (ie, infrared code library server 300)
  • the remote server 200 sends the infrared forwarding command to the remote server 200 through the mobile phone APP, and then the remote server 200 obtains the infrared code from the third-party cloud (ie, the infrared code database server 300), and forwards the obtained infrared code to the smart socket 100, and the smart socket 100 receives After the command is recognized, the infrared code is forwarded through the infrared transmitting tube to achieve the purpose of remotely controlling the home appliance or other equipment.
  • the third-party cloud ie, the infrared code database server 300
  • the device When the device has a status change, the status is fed back to the server, and the server notifies the mobile phone APP update operation interface to achieve interface synchronization.
  • Infrared human body sensing is used to achieve automatic scenes under human and unmanned conditions. For example, when the scene is empty, there is someone in the space, and the room temperature is higher than the set temperature, the air conditioner will automatically start. The person is away from the blush.
  • the effective range of the external ⁇ , ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ ⁇ When the scene is illuminated, it can achieve the automatic control of people's lights and people's lights.
  • the voice control uses a third-party cloud voice recognition service, so this function needs to work under normal network conditions.
  • the sound signal is collected by the local pickup, and the collected sound signal is sent to the cloud for voice recognition, and then the recognition result is transmitted back to the smart socket 100, and the smart socket 100 receives the instruction and performs corresponding action.
  • the indicator light 10 can be set to red, green, blue, colorful, colorful gradient, flash, slow flash, double flash, off.
  • High-power automatic protection the software will periodically check the load power. When the load exceeds the maximum rated power, the power supply is automatically disconnected, and the protection of the electrical appliance and the socket is achieved.
  • the air conditioner when the air conditioner is turned off (it is standby, there is power consumption), then the socket will cut off the power supply to save energy.
  • the smart mode has an intelligent sleep mode, an intelligent air conditioning mode, and a smart indicator light 10 mode.
  • the air conditioner temperature is automatically raised to a comfortable temperature after sleeping, so as to prevent the cold from falling late at night.
  • the air conditioner When the intelligent air conditioning mode is activated, according to the GPS positioning information, when the distance from the home is ⁇ , the air conditioner is automatically turned on and set to a comfortable temperature in advance (using this function, the first time the socket is configured must be at home) Carry out, in order to record the location of the residence).
  • the indicator light 10 When the smart indicator light 10 mode is activated, the indicator light 10 will be adjusted according to the ambient light intensity.
  • This product can be upgraded remotely for product problem repair and product function upgrade. This greatly shortens the burst cycle and product maintenance costs.
  • the one or more operations may constitute computer readable instructions stored on one or more computer readable media that, when executed by an electronic device, cause the computing device to perform the operations.
  • the order in which some or all of the operations are described should not be construed as implying that the operations must be sequential. Those skilled in the art will appreciate an alternative ordering that has the benefit of this description. Moreover, it should be understood that not all operations must be present in every embodiment provided herein.
  • the word "preferred” as used herein is intended to serve as an example, instance, or illustration. Any aspect or design described as “preferred” in the text is not necessarily to be construed as being more advantageous than other aspects or designs. Instead, the use of the word “preferred” is intended to present a concept in a specific manner.
  • the term “or” as used in the present application is intended to mean “or” or “excluding”. That is, “X uses A or B” means naturally including any one of the permutations unless otherwise specified or clear from the context. That is, if X uses A; X uses B; or X uses A and B Both, then "X uses A or B" is satisfied in any of the foregoing examples.
  • Each functional unit in the embodiment of the present invention may be integrated into one processing module, or each unit may exist physically separately, or two or more units may be integrated into one module.
  • the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
  • the integrated modules, if implemented in the form of software functional modules and sold or used as separate products, may also be stored in a computer readable storage medium.
  • the above mentioned storage medium may be a read only memory, a magnetic disk or an optical disk or the like.

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Abstract

L'invention porte sur un système de commande de prise intelligente infrarouge (1000), comprenant : un serveur distant (200) ; un serveur de bibliothèque de codes infrarouges (300), utilisé pour stocker et fournir des codes infrarouges, et en connexion de communication avec le serveur distant (200) ; une prise intelligente (100), utilisée pour effectuer une commande et un apprentissage infrarouge locaux, et en connexion de communication avec le serveur distant (200), une surface de la prise intelligente (100) étant pourvue d'un module émetteur-récepteur infrarouge (9) ; un terminal de commande (400), utilisé pour télécommander la prise intelligente (100) afin d'effectuer une commande infrarouge, et placé en connexion de communication avec le serveur distant (200). Une télécommande infrarouge intelligente est mise en œuvre par apprentissage infrarouge et transfert infrarouge en coordination avec le serveur de bibliothèque de codes infrarouges (300), d'autres appareils domestiques sont commandés en temps réel par l'intermédiaire de la prise intelligente (100), et la consommation d'énergie de la prise (100) est obtenue en temps réel par détection de courant et de tension, ce qui permet d'obtenir des effets intelligents, sûrs et économisant l'énergie.
PCT/CN2017/082318 2016-05-17 2017-04-28 Système de commande de prise intelligente infrarouge WO2017198059A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201620449330.3U CN206135089U (zh) 2016-05-17 2016-05-17 一种红外智能插座控制***
CN201620449330.3 2016-05-17

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CN106204389A (zh) * 2016-07-01 2016-12-07 南通苏宝建筑节能科技有限公司 一种智慧节能交互平台及交互方法
WO2020072016A3 (fr) * 2018-10-01 2020-12-24 Ertug Yazilim Elektrik Elektronik San. Ve Tic. Ltd. Sti. Système de maison avec clé intelligente/prise électrique intelligente

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CN107390565A (zh) * 2016-05-17 2017-11-24 深圳市蚂蚁雄兵物联技术有限公司 一种智能插座远程控制***及方法
CN206135089U (zh) * 2016-05-17 2017-04-26 深圳市蚂蚁雄兵物联技术有限公司 一种红外智能插座控制***
CN107134696A (zh) * 2017-05-05 2017-09-05 广东万家乐燃气具有限公司 一种带人体感应的WiFi智能插座
CN107863658A (zh) * 2017-11-29 2018-03-30 杭州爱尚智能家居有限公司 一种智能温湿度检测插座
CN112509310A (zh) * 2020-09-16 2021-03-16 江西飞尚科技有限公司 一种***管理***区域限定的方法
CN113835348B (zh) * 2021-09-17 2023-08-08 广东电网有限责任公司 一种智能家居控制***

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WO2020072016A3 (fr) * 2018-10-01 2020-12-24 Ertug Yazilim Elektrik Elektronik San. Ve Tic. Ltd. Sti. Système de maison avec clé intelligente/prise électrique intelligente

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