WO2019041962A1 - 基于智能冰箱的组网及控制方式、***、智能冰箱 - Google Patents

基于智能冰箱的组网及控制方式、***、智能冰箱 Download PDF

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Publication number
WO2019041962A1
WO2019041962A1 PCT/CN2018/090969 CN2018090969W WO2019041962A1 WO 2019041962 A1 WO2019041962 A1 WO 2019041962A1 CN 2018090969 W CN2018090969 W CN 2018090969W WO 2019041962 A1 WO2019041962 A1 WO 2019041962A1
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WO
WIPO (PCT)
Prior art keywords
smart refrigerator
information
device information
refrigerator
server
Prior art date
Application number
PCT/CN2018/090969
Other languages
English (en)
French (fr)
Inventor
杨深振
陈海雷
季涛
姚育
Original Assignee
合肥美的智能科技有限公司
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 合肥美的智能科技有限公司 filed Critical 合肥美的智能科技有限公司
Priority to US16/642,857 priority Critical patent/US11128486B2/en
Priority to CA3074100A priority patent/CA3074100A1/en
Publication of WO2019041962A1 publication Critical patent/WO2019041962A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L12/2838Distribution of signals within a home automation network, e.g. involving splitting/multiplexing signals to/from different paths
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D29/00Arrangement or mounting of control or safety devices
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L12/2816Controlling appliance services of a home automation network by calling their functionalities
    • H04L12/282Controlling appliance services of a home automation network by calling their functionalities based on user interaction within the home
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L12/283Processing of data at an internetworking point of a home automation network
    • H04L12/2832Interconnection of the control functionalities between home networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/44Star or tree networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • H04L67/125Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks involving control of end-device applications over a network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/18Self-organising networks, e.g. ad-hoc networks or sensor networks
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D11/00Self-contained movable devices, e.g. domestic refrigerators
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L2012/284Home automation networks characterised by the type of medium used
    • H04L2012/2841Wireless
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L69/00Network arrangements, protocols or services independent of the application payload and not provided for in the other groups of this subclass
    • H04L69/28Timers or timing mechanisms used in protocols
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/005Discovery of network devices, e.g. terminals

Definitions

  • the present invention relates to the field of refrigerator technology, and in particular to a smart refrigerator-based networking and control method, a smart refrigerator-based networking and control system, and a smart refrigerator.
  • the present invention aims to solve at least one of the technical problems existing in the prior art or related art.
  • the first aspect of the present invention provides a networking and control method based on a smart refrigerator.
  • a second aspect of the present invention is to provide a smart refrigerator based networking and control system.
  • a third aspect of the invention provides a smart refrigerator.
  • a smart refrigerator-based networking and control method includes: acquiring device information of the smart refrigerator; and receiving device information sent by the device to be accessed through the Bluetooth module. And the network access request; binding the device information of the device to be networked and the device information of the smart refrigerator, and generating the binding information; sending the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, so that the server is based on the network to be accessed.
  • the device information of the device, the device information of the smart refrigerator, and the binding information respond to the network access request.
  • the smart refrigerator-based networking and control method provided by the present invention acquires device information of the smart refrigerator, and the device information of the refrigerator such as a refrigerator barcode, a refrigerator model, a refrigerator ID, and then the refrigerator receives a device to be accessed, such as a smart microwave oven, a smart rice cooker, etc.
  • the device information and the network access request sent by the Bluetooth module are bound to the device information of the smart refrigerator and the information of the device to be accessed, and the binding information is generated.
  • the ID of the smart refrigerator and the ID of the device to be connected are bound, and the smart refrigerator transmits itself.
  • the device information, the received information of the device to be accessed, and the binding information of the device information to the server acquires device information of the smart refrigerator, and the device information of the refrigerator such as a refrigerator barcode, a refrigerator model, a refrigerator ID, and then the refrigerator receives a device to be accessed, such as a smart microwave oven, a smart rice cooker, etc.
  • the server is based on the device information of the received smart refrigerator, the device information of the device to be accessed, and the binding of the smart refrigerator and the device to be accessed.
  • the information is in response to the network access request of the device to be accessed.
  • the server to be connected to the network device connects to the smart refrigerator through BLE (Bluetooth Low Energy Technology), binds the device information with the smart refrigerator, and then connects to the Internet through protocol conversion, so that the device to be accessed and the smart device are connected.
  • BLE Bluetooth Low Energy Technology
  • the refrigerator uses an ID to connect to the internet, reducing The WIFI device connection on the routing side reduces the routing load and enhances the stability of the star architecture.
  • the method before receiving the device information and the network access request sent by the Bluetooth device, the method further includes: turning on a Bluetooth module of the smart refrigerator to connect the Bluetooth module of the network device to be connected; and confirming that the smart refrigerator is a Bluetooth connection.
  • Bluetooth master device before receiving the device information and the network access request sent by the Bluetooth device, the method further includes: turning on a Bluetooth module of the smart refrigerator to connect the Bluetooth module of the network device to be connected; and confirming that the smart refrigerator is a Bluetooth connection.
  • Bluetooth master device before receiving the device information and the network access request sent by the Bluetooth device.
  • the Bluetooth module of the smart refrigerator is connected to connect the Bluetooth module of the device to be connected, and then the process of connecting to the Bluetooth distribution network is entered.
  • the Bluetooth link is formed by two processes: inquiry and page. Each node alternates between Inquiry mode and Inquiry scan mode.
  • the Bluetooth node has variables WEIGHT, variable BACK, variable TIMEOUT and FHS (File System Hierarchical Standard) package.
  • the process of connecting to the Bluetooth distribution network includes: First, the Bluetooth initialization periodically switches to the Inquiry and Inquiry Scan modes to discover other devices or be discovered. Secondly, the TIMEOUT value is determined.
  • the WEIGHT value is compared.
  • the smaller WEIGHT value transmits the FHS packet to the party with the larger WEIGHT value and enters the Page scan state.
  • the WEIGHT value is larger.
  • the party After receiving the FHS packet of the other party, the party resets the TIMEOUT and continues to randomly enter the Inquiry or Inquiry scan mode. Again, repeat until TIMEOUT is 0, enter the Page mode, and confirm the master node.
  • the smart refrigerator is a Bluetooth-connected Bluetooth master device, so that the smart refrigerator receives the device information of the device to be connected to the network and the network access request, and the smart refrigerator as the main device of the Bluetooth connection finally realizes the device for accessing the network through the Bluetooth connection. control.
  • the method further includes: receiving the ID information of the registered terminal; and sending the registration terminal
  • the ID information and device information of the smart refrigerator are connected to the server to bind the registered terminal and the smart refrigerator.
  • the registration terminal After acquiring the device information of the smart refrigerator, before the Bluetooth module of the smart refrigerator is turned on to connect the Bluetooth module of the network device to be connected, that is, before the smart refrigerator and the network access device start to connect, the registration terminal is first received.
  • ID information the registration terminal may be a smart phone, a computer, a tablet, a wearable wristband, etc., and a control APP for controlling the smart home appliance is installed thereon, and the ID information of the registered terminal and the device information of the smart refrigerator are sent to the server.
  • the registered terminal and the smart refrigerator to realize the control of the smart refrigerator through the registered smart terminal.
  • the method further includes: determining whether the return data of the server is received; The return data to the server receives the device information and the network access request sent by the device to be accessed via Bluetooth; if the return data of the server is not received, the ID information of the registered terminal and the device information of the smart refrigerator are resent to the server.
  • the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information are sent to the server, so that the server according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information.
  • the method further includes: receiving a registration terminal control instruction to control the network access device according to the control instruction.
  • the smart refrigerator sends the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, and the server responds to the network access request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information.
  • the network device is connected to the smart refrigerator via BLE and connected to the Internet through protocol conversion
  • the registered terminal control command is received to control the device to be accessed according to the control instruction.
  • the refrigerator is controlled by one button, and the control process is simple. It improves the working efficiency of the devices to be connected to the network and improves the user experience.
  • a smart refrigerator-based networking and control system for a smart refrigerator, comprising: an obtaining unit for acquiring device information of the smart refrigerator; and a first receiving unit for receiving The device information and the network access request sent by the device to be connected to the network through the Bluetooth module; the binding unit is configured to bind the device information of the device to be connected to the device and the device information of the smart refrigerator, and generate binding information; the first sending unit is configured to send the The device information of the network access device, the device information of the smart refrigerator, and the binding information are sent to the server, so that the server responds to the network access request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information.
  • the intelligent refrigerator-based networking and control system acquires device information of the smart refrigerator, the device information of the refrigerator such as a refrigerator barcode, a refrigerator model, a refrigerator ID, and then the first receiving unit of the refrigerator receives the device to be accessed, for example The smart microwave oven, the smart rice cooker, and the like, and the device information and the network access request sent by the Bluetooth module, the binding unit is bound to the device information of the smart refrigerator and the information of the device to be accessed, and generates binding information, such as the ID of the smart refrigerator and the device to be accessed.
  • the device information of the refrigerator such as a refrigerator barcode, a refrigerator model, a refrigerator ID
  • the first receiving unit of the refrigerator receives the device to be accessed, for example The smart microwave oven, the smart rice cooker, and the like, and the device information and the network access request sent by the Bluetooth module
  • the binding unit is bound to the device information of the smart refrigerator and the information of the device to be accessed, and generates binding information, such as the ID of the smart refrigerator and the device to
  • the ID is bound, and the first sending unit of the smart refrigerator sends its own device information, the received information of the device to be accessed, and the binding information of the device information to the server, and the server according to the device information of the received smart refrigerator,
  • the device information of the device to be connected to the device and the binding information of the smart device and the device to be connected to the device are in response to the network access request of the network device to be accessed.
  • the server to be connected to the network device is connected to the smart refrigerator through the BLE (Bluetooth Low Energy Technology), and the smart refrigerator is bound to the device.
  • Information and then connect to the Internet through protocol conversion, making And network device using a smart refrigerator ID Internet connection, WIFI reducing end connection routing device, routing load reduction, enhanced stability star schema.
  • the above intelligent refrigerator-based networking and control system according to the present invention may further have the following technical features:
  • the opening unit is configured to open a Bluetooth module of the smart refrigerator to connect the Bluetooth module of the network access device
  • the confirmation unit is configured to confirm that the smart refrigerator is a Bluetooth connected Bluetooth main device.
  • the opening unit needs to open the Bluetooth module of the smart refrigerator to connect the Bluetooth module of the device to be connected, and then enter the Bluetooth distribution network connection.
  • the process of Bluetooth link formation consists of two processes: inquiry and page. Each node alternates between Inquiry mode and Inquiry scan mode.
  • the Bluetooth node has variables WEIGHT, variable BACK, and variable. TIMEOUT and FHS (File System Hierarchy Standard) packages.
  • the process of connecting to the Bluetooth distribution network includes: First, the Bluetooth initialization periodically switches to the Inquiry and Inquiry Scan modes to discover other devices or be discovered. Secondly, the TIMEOUT value is determined.
  • the WEIGHT value is compared.
  • the smaller WEIGHT value transmits the FHS packet to the party with the larger WEIGHT value and enters the Page scan state.
  • the WEIGHT value is larger.
  • the party After receiving the FHS packet of the other party, the party resets the TIMEOUT and continues to randomly enter the Inquiry or Inquiry scan mode. Again, repeat until TIMEOUT is 0, enter the Page mode, and confirm the master node.
  • the confirmation unit confirms that the smart refrigerator is a Bluetooth-connected Bluetooth master device, so that the smart refrigerator receives the device information of the device to be connected to the network and the network access request, and the smart refrigerator as the main device of the Bluetooth connection finally realizes the treatment through the Bluetooth connection. Control of the network access device.
  • the second receiving unit is configured to receive the ID information of the registered terminal
  • the second sending unit is configured to send the ID information of the registered terminal and the device information of the smart refrigerator to the server to bind the registration. Terminal and smart refrigerator.
  • the second receiving unit is first.
  • the registration terminal may be a terminal such as a smart phone, a computer, a tablet, a wearable wristband, and the like, and a control APP for controlling the smart home appliance is installed thereon, and the second sending unit sends the ID information of the registered terminal.
  • the device information of the smart refrigerator is connected to the server to bind the registered terminal and the smart refrigerator, and realize the control of the smart refrigerator through the registered smart terminal.
  • the determining unit is configured to determine whether the return data of the server is received, and the first receiving unit is configured to: if receiving the return data of the server, receive the device to be connected to send through the Bluetooth module.
  • the device information and the network access request; the second sending unit is further configured to resend the ID information of the registered terminal and the device information of the smart refrigerator to the server if the return data of the server is not received.
  • the determining unit needs to determine whether the server returns data for the transmitted data, and if the server returns The data indicates that the registration of the registered terminal is successful. If the smart refrigerator is successfully bound, the first receiving unit receives the device information and the network access request sent by the device to be accessed via Bluetooth, so as to implement the control of the network access device through the smart refrigerator. If the return data of the server is not received, it indicates that no registration and binding is successful, then the second sending unit resends the ID information of the registered terminal and the device information of the smart refrigerator to the server to implement registration and binding again.
  • control unit is configured to receive the registration terminal control instruction to control the network access device according to the control instruction.
  • the smart refrigerator sends the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, and the server responds to the network access request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information. That is, after the device to be connected to the network is connected to the smart refrigerator through BLE, and the Internet is connected through the protocol conversion, the control unit receives the registration terminal control command to control the device to be accessed according to the control instruction, thus implementing the one-key control of the device to be accessed by the refrigerator, and controlling The process is simple, improves the working efficiency of the devices to be accessed, and improves the user experience.
  • the present invention provides a smart refrigerator comprising the smart refrigerator-based networking and control system in any of the above technical solutions.
  • the smart refrigerator provided by the present invention includes the smart refrigerator-based networking and control system in any of the above technical solutions, and therefore has all the beneficial effects of the smart refrigerator-based networking and control system, and details are not described herein again.
  • FIG. 1 is a schematic flow chart of a smart refrigerator-based networking and control method according to an embodiment of the present invention
  • FIG. 2 is a schematic flow chart showing a networking and a control method of a smart refrigerator according to another embodiment of the present invention.
  • FIG. 3 is a schematic flow chart showing a networking and a control method of a smart refrigerator according to an embodiment of the present invention
  • FIG. 4 is a schematic flow chart of a method for a Bluetooth distribution network between a smart refrigerator and a network device to be accessed according to an embodiment of the present invention
  • FIG. 5 is a schematic block diagram of a smart refrigerator-based networking and control system according to an embodiment of the present invention.
  • FIG. 6 is a schematic block diagram of a smart refrigerator-based networking and control system in accordance with another embodiment of the present invention.
  • Fig. 7 is a block diagram showing the structure of a smart refrigerator according to an embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of a smart refrigerator-based networking and control method according to an embodiment of the present invention:
  • Step 102 Obtain device information of the smart refrigerator.
  • Step 104 Receive device information and a network access request sent by the device to be accessed through the Bluetooth module.
  • Step 106 Bind device information of the device to be networked and device information of the smart refrigerator, and generate binding information.
  • Step 108 Send the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, so that the server responds to the network access request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information.
  • the smart refrigerator-based networking and control method provided by the present invention acquires device information of the smart refrigerator, and the device information of the refrigerator such as a refrigerator barcode, a refrigerator model, a refrigerator ID, and then the refrigerator receives a device to be accessed, such as a smart microwave oven, a smart rice cooker, etc.
  • the device information and the network access request sent by the Bluetooth module are bound to the device information of the smart refrigerator and the information of the device to be accessed, and the binding information is generated.
  • the ID of the smart refrigerator and the ID of the device to be connected are bound, and the smart refrigerator transmits itself.
  • the device information, the received information of the device to be accessed, and the binding information of the device information to the server acquires device information of the smart refrigerator, and the device information of the refrigerator such as a refrigerator barcode, a refrigerator model, a refrigerator ID, and then the refrigerator receives a device to be accessed, such as a smart microwave oven, a smart rice cooker, etc.
  • the server is based on the device information of the received smart refrigerator, the device information of the device to be accessed, and the binding of the smart refrigerator and the device to be accessed.
  • the information is in response to the network access request of the device to be accessed.
  • the server to be connected to the network device connects to the smart refrigerator through BLE (Bluetooth Low Energy Technology), binds the device information with the smart refrigerator, and then connects to the Internet through protocol conversion, so that the device to be accessed and the smart device are connected.
  • BLE Bluetooth Low Energy Technology
  • the refrigerator uses an ID to connect to the internet, reducing The WIFI device connection on the routing side reduces the routing load and enhances the stability of the star architecture.
  • FIG. 2 is a schematic flow chart showing a smart refrigerator-based networking and control method according to another embodiment of the present invention. Wherein the method comprises:
  • Step 202 Obtain device information of the smart refrigerator.
  • Step 204 Receive ID information of the registered terminal.
  • Step 206 Send ID information of the registered terminal and device information of the smart refrigerator to the server to bind the registration terminal and the smart refrigerator;
  • Step 208 it is determined whether the return data of the server is received, if yes, proceed to step 210, if not, then repeat step 206;
  • Step 210 Turn on the Bluetooth module of the smart refrigerator to connect the Bluetooth module of the device to be connected to the network;
  • Step 212 confirming that the smart refrigerator is a Bluetooth connected Bluetooth main device
  • Step 214 Receive device information and a network access request sent by the device to be accessed through the Bluetooth module.
  • Step 216 Bind device information of the device to be networked and device information of the smart refrigerator, and generate binding information.
  • Step 218 Send the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, so that the server responds to the network access request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information.
  • Step 220 Receive a registration terminal control instruction to control the device to be accessed according to the control instruction.
  • the method before receiving the device information and the network access request sent by the Bluetooth device, the method further includes: turning on a Bluetooth module of the smart refrigerator to connect the Bluetooth module of the network access device; and confirming that the smart refrigerator is Bluetooth-connected Bluetooth master device.
  • the Bluetooth module of the smart refrigerator is connected to connect the Bluetooth module of the network device to be connected, and then the process of connecting to the Bluetooth distribution network is entered.
  • the Bluetooth link is formed by two processes: inquiry and page. Each node alternates between Inquiry mode and Inquiry scan mode.
  • the Bluetooth node has variables WEIGHT, variable BACK, variable TIMEOUT and FHS (File System Hierarchical Standard) package.
  • the process of entering the Bluetooth distribution network includes: First, the Bluetooth initialization periodically switches to the Inquiry and Inquiry Scan modes to discover other devices or be discovered. Secondly, the TIMEOUT value is determined.
  • the WEIGHT value is compared.
  • the smaller WEIGHT value transmits the FHS packet to the party with the larger WEIGHT value and enters the Page scan state.
  • the WEIGHT value is larger.
  • the party After receiving the FHS packet of the other party, the party resets the TIMEOUT and continues to randomly enter the Inquiry or Inquiry scan mode. Again, repeat until TIMEOUT is 0, enter the Page mode, and confirm the master node.
  • the smart refrigerator is a Bluetooth-connected Bluetooth master device, so that the smart refrigerator receives the device information of the device to be connected to the network and the network access request, and the smart refrigerator as the main device of the Bluetooth connection finally realizes the device for accessing the network through the Bluetooth connection. control.
  • the method further includes: receiving the ID information of the registered terminal; The ID information of the terminal and the device information of the smart refrigerator are connected to the server to bind the registered terminal and the smart refrigerator.
  • the registration terminal after acquiring the device information of the smart refrigerator, before the Bluetooth module of the smart refrigerator is turned on to connect the Bluetooth module of the network device to be connected, that is, before the smart refrigerator and the network access device start to connect, the registration terminal is first received.
  • ID information the registration terminal may be a smart phone, a computer, a tablet, a wearable wristband, etc., and a control APP for controlling the smart home appliance is installed thereon, and the ID information of the registered terminal and the device information of the smart refrigerator are sent to the server.
  • the registered terminal and the smart refrigerator to realize the control of the smart refrigerator through the registered smart terminal.
  • the method further includes: determining whether the return data of the server is received; Receiving the return data of the server, receiving the device information and the network access request sent by the device to be accessed via Bluetooth; if the return data of the server is not received, resending the ID information of the registered terminal and the device information of the smart refrigerator to the server.
  • the server after transmitting the ID information of the registration terminal and the device information of the smart refrigerator to the server to bind the registration terminal and the smart refrigerator, it is necessary to determine whether the server returns data for the transmitted data, and if the return data of the server is received, The registration of the registered terminal is successful. If the smart refrigerator is successfully bound, the device information and the network access request sent by the device to be accessed via Bluetooth are received, so as to implement the control of the network access device through the smart refrigerator. If the return data of the server is not received, it means that no registration and binding is successful, then the ID information of the registered terminal and the device information of the smart refrigerator are resent to the server to implement registration and binding again.
  • the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information are sent to the server, so that the server according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding
  • the method further includes: receiving the registration terminal control instruction to control the network access device according to the control instruction.
  • the smart refrigerator sends the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, and the server responds to the network access request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information.
  • the network device is connected to the smart refrigerator via BLE and connected to the Internet through protocol conversion
  • the registered terminal control command is received to control the device to be accessed according to the control instruction.
  • the refrigerator is controlled by one button, and the control process is simple. It improves the working efficiency of the devices to be connected to the network and improves the user experience.
  • Step 302 Register a mobile phone ID on the screen of the smart refrigerator
  • Step 304 it is determined whether the server returns data, if yes, then proceeds to step 306, otherwise, proceeds to step 302;
  • Step 306 Waiting for the small household electrical appliance device to open the Bluetooth distribution network
  • Step 308 The small household electrical appliance sends the network access request and the device information.
  • Step 310 Acquire intelligent refrigerator device information.
  • Step 312 binding the smart refrigerator and the small household appliances to be connected to the network to generate binding information
  • Step 314 the smart refrigerator sends its own device information, the information of the small household appliances to be accessed and the binding information are sent to the server (Mideasmart);
  • Step 316 the small appliances to be connected to the network are connected to the network
  • Step 318 the registered terminal controls the small household appliance through the smart refrigerator.
  • the Bluetooth mobile network (the periodic entry into the INQUIRY (inquiry) and the INQUIRY SCAN (query scan) mode) of the small household appliances to be connected to the network is detailed as shown in FIG. 4, and the Bluetooth link is formed by the query ( Inquiry and page (page) are composed of two processes, each node alternating between Inquiry mode and Inquiry scan mode.
  • the Bluetooth node has variables WEIGHT, variable BACK, variable TIMEOUT and FHS (file) System hierarchy standard) package.
  • the specific process is: Bluetooth initialization periodically switches to Inquiry and Inquiry Scan mode to discover other devices or is found; after the Bluetooth nodes whose TIMEOUT values are in relative mode discover each other, the WEIGHT value is compared.
  • the smaller WEIGHT value passes the FHS packet to the party with the larger WEIGHT value and enters the Page scan state.
  • the party with the larger WEIGHT value receives the FHS packet of the other party, resets the TIMEOUT, and continues to randomly enter the Inquiry or Inquiry scan mode; Until TIMEOUT is 0, enter the Page mode and confirm the master node.
  • the small household appliance is connected to the smart refrigerator through BLE, and the working efficiency of the home appliance is improved by one-key control of the refrigerator;
  • the device BLE is connected to the smart refrigerator, and the protocol is converted into the Internet, thereby reducing
  • the WIFI device connection on the routing side reduces the routing load and enhances the stability of the star architecture.
  • FIG. 5 is a schematic block diagram of a smart refrigerator-based networking and control system according to an embodiment of the present invention:
  • the obtaining unit 502 is configured to acquire device information of the smart refrigerator
  • the first receiving unit 504 is configured to receive device information and a network access request sent by the device to be accessed through the Bluetooth module.
  • the binding unit 506 is configured to bind the device information of the device to be connected to the device and the device information of the smart refrigerator, and generate binding information.
  • the first sending unit 508 is configured to send the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, so that the server responds to the network request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information. .
  • the intelligent refrigerator-based networking and control system 500 acquires device information of the smart refrigerator, such as a refrigerator barcode, a refrigerator model, and a refrigerator ID, and then the first receiving unit 504 of the refrigerator receives the network to be accessed.
  • the device such as a smart microwave oven, a smart rice cooker, and the like, and the device information and the network access request sent by the Bluetooth module
  • the binding unit 506 binds the device information of the smart refrigerator and the information of the device to be accessed, and generates binding information, such as the ID of the smart refrigerator and The ID of the device to be connected is bound
  • the first sending unit 508 of the smart refrigerator sends its own device information, the received information of the device to be accessed, and the binding information of the device information to the server.
  • the server receives the smart information according to the received information.
  • the device information of the refrigerator, the device information of the device to be connected to the network, and the binding information of the smart refrigerator and the device to be accessed are responded to the network access request of the device to be accessed.
  • the server to be connected to the network connects to the smart refrigerator through BLE (Bluetooth Low Energy Technology), and
  • the smart refrigerator binds the device information, and then connects and connects through the protocol.
  • Network so that the network device to be used with a smart refrigerator ID connect to the Internet, reducing the WIFI connection route terminal apparatus, reducing the routing load, star schema enhanced stability.
  • FIG. 6 shows a schematic block diagram of a smart refrigerator based networking and control system 600 in accordance with another embodiment of the present invention.
  • the smart refrigerator-based networking and control system 600 includes:
  • the obtaining unit 602 is configured to acquire device information of the smart refrigerator
  • the first receiving unit 604 is configured to receive device information and a network access request sent by the device to be accessed through the Bluetooth module.
  • the binding unit 606 is configured to bind the device information of the device to be connected to the device and the device information of the smart refrigerator, and generate binding information.
  • the first sending unit 608 is configured to send the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, so that the server responds to the network request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information. ;
  • the opening unit 610 is configured to enable a Bluetooth module of the smart refrigerator to connect the Bluetooth module of the device to be connected to the network;
  • the confirmation unit 612 is configured to confirm that the smart refrigerator is a Bluetooth connected Bluetooth main device
  • the second receiving unit 614 is configured to receive ID information of the registered terminal.
  • a second sending unit 616 configured to send ID information of the registered terminal and device information of the smart refrigerator to the server to bind the registration terminal and the smart refrigerator;
  • the determining unit 618 is configured to determine whether the return data of the server is received
  • the first receiving unit 604 is configured to: if receiving the return data of the server, receive the device information and the network access request sent by the device to be accessed by using the Bluetooth;
  • the second sending unit 616 is further configured to resend the ID information of the registered terminal and the device information of the smart refrigerator to the server if the return data of the server is not received;
  • the control unit 620 is configured to receive a registration terminal control instruction to control the network access device according to the control instruction.
  • the opening unit 610 is configured to enable a Bluetooth module of the smart refrigerator to connect the Bluetooth module of the network access device, and the confirmation unit 612 is configured to confirm that the smart refrigerator is a Bluetooth connected Bluetooth master device.
  • the opening unit 610 needs to enable the Bluetooth module of the smart refrigerator to connect the Bluetooth module of the network device to be accessed, and then enter the Bluetooth distribution network.
  • the Bluetooth link formation consists of two processes: inquiry and page. Each node alternates between the inquiry mode and the inquiry scan mode.
  • the Bluetooth node has the variable WEIGHT and the variable. BACK, variable TIMEOUT, and FHS (File System Hierarchy Standard) packages.
  • the process of Bluetooth distribution connection includes: First, Bluetooth initialization periodically switches to Inquiry and Inquiry Scan mode to discover other devices or be discovered. Secondly, the TIMEOUT value is determined.
  • the WEIGHT value is compared.
  • the smaller WEIGHT value transmits the FHS packet to the party with the larger WEIGHT value and enters the Page scan state.
  • the WEIGHT value is larger.
  • the party After receiving the FHS packet of the other party, the party resets the TIMEOUT and continues to randomly enter the Inquiry or Inquiry scan mode. Again, repeat until TIMEOUT is 0, enter the Page mode, and confirm the master node.
  • the confirmation unit 612 confirms that the smart refrigerator is a Bluetooth-connected Bluetooth master device, so that the smart refrigerator receives the device information of the device to be accessed and the network access request, and the smart refrigerator is finally connected as a Bluetooth-connected master device through Bluetooth. Control the access to the network device.
  • the second receiving unit 614 is configured to receive the ID information of the registered terminal
  • the second sending unit 616 is configured to send the ID information of the registered terminal and the device information of the smart refrigerator to the server. Bind registration terminals and smart refrigerators.
  • the second receiving unit After acquiring the device information of the smart refrigerator, before the Bluetooth module of the smart refrigerator is turned on to connect the Bluetooth module of the network device to be connected, that is, before the smart refrigerator and the network access device start to connect, the second receiving unit is first.
  • the 614 receives the ID information of the registered terminal, and the registration terminal may be a terminal such as a smart phone, a computer, a tablet, a wearable wristband, and the like, and a control APP for controlling the smart home appliance is installed thereon, and the second sending unit 616 sends the registered terminal.
  • the ID information and the device information of the smart refrigerator are connected to the server to bind the registered terminal and the smart refrigerator, and realize the control of the smart refrigerator through the registered smart terminal.
  • the determining unit 618 is configured to determine whether the return data of the server is received.
  • the first receiving unit 604 is configured to: if receiving the return data of the server, receive the device to be accessed through the network.
  • the second sending unit 616 is further configured to resend the ID information of the registered terminal and the device information of the smart refrigerator to the server if the return data of the server is not received.
  • the determining unit 618 needs to determine whether the server returns data for the transmitted data, if the server is received. If the data is returned, the registration of the registered terminal is successful. If the smart refrigerator is successfully bound, the first receiving unit 604 receives the device information and the network access request sent by the device to be accessed through the Bluetooth to implement the control of the network access device through the smart refrigerator. If the return data of the server is not received, it indicates that the registration and the binding are successful, and the second sending unit 616 resends the ID information of the registered terminal and the device information of the smart refrigerator to the server to implement registration and binding again.
  • control unit 620 is configured to receive a registration terminal control instruction to control the network access device according to the control instruction.
  • the smart refrigerator sends the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information to the server, and the server responds to the network access request according to the device information of the device to be accessed, the device information of the smart refrigerator, and the binding information.
  • the control unit 620 receives the registered terminal control command to control the device to be accessed according to the control command, so that the refrigerator is controlled by the one-key control device, and the device is connected to the network through the protocol conversion.
  • the control process is simple, which improves the working efficiency of the devices to be connected to the network and improves the user experience.
  • FIG. 7 is a schematic structural diagram of a smart refrigerator 700 according to the present invention, including a smart refrigerator-based networking and control system 702 according to any of the above embodiments. .
  • the intelligent refrigerator 700 provided by the present invention includes the smart refrigerator-based networking and control system 702 in any of the above embodiments, and therefore has all the beneficial effects of the smart refrigerator-based networking and control system 702, and details are not described herein again.
  • the description of the terms “one embodiment”, “some embodiments”, “specific embodiments” and the like means that the specific features, structures, materials or characteristics described in connection with the embodiments or examples are included in the present invention. At least one embodiment or example.
  • the schematic representation of the above terms does not necessarily refer to the same embodiment or example.
  • the particular features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples.

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Abstract

本发明提出了一种基于智能冰箱的组网及控制方式、基于智能冰箱的组网及控制***、智能冰箱。其中,基于智能冰箱的组网及控制方式,用于智能冰箱,包括:获取智能冰箱的设备信息;接收待入网设备通过蓝牙模块发送的设备信息及入网请求;绑定待入网设备的设备信息及智能冰箱的设备信息,并生成绑定信息;发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求。本发明实现了小家电及其他需连接入网的设备,通过蓝牙低能耗技术连接至智能冰箱,通过协议转化连接入网,减少了路由端的WIFI设备连接,降低了路由负载,增强了星型架构稳定性。

Description

基于智能冰箱的组网及控制方式、***、智能冰箱
本申请要求于2017年8月28日提交中国专利局、申请号为201710748471.4、发明名称为“基于智能冰箱的组网及控制方式、***、智能冰箱”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及冰箱技术领域,具体而言,涉及一种基于智能冰箱的组网及控制方式、基于智能冰箱的组网及控制***、智能冰箱。
背景技术
现今智能冰箱发展迅速,智能家居概念也深入人心,厨房中小家电繁多,冰箱在整个厨房***中占有重要的地位,目前依靠WIFI构建的家庭局域网已经相当成熟,智能家居行业中大部分电器由WIFI直接连接路由入网,尤其厨房电器数量较多,路由压力较大且控制繁琐。通过WIFI构建的家庭局域网已经相当成熟,而厨房中BLE、ZIGBEE等传感器网络通过协议转换进入WIFI网络,然后连入Internet成为趋势。至今行业内还没有提出一个有效的解决方案。
发明内容
本发明旨在至少解决现有技术或相关技术中存在的技术问题之一。
为此,本发明第一个方面在于提出一种基于智能冰箱的组网及控制方式。
本发明的第二个方面在于提出一种基于智能冰箱的组网及控制***。
本发明的第三个方面在于提出一种智能冰箱。
有鉴于此,根据本发明的一个方面,提出了一种基于智能冰箱的组网及 控制方法,用于智能冰箱,包括:获取智能冰箱的设备信息;接收待入网设备通过蓝牙模块发送的设备信息及入网请求;绑定待入网设备的设备信息及智能冰箱的设备信息,并生成绑定信息;发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求。
本发明提供的基于智能冰箱的组网及控制方法,获取智能冰箱的设备信息,冰箱的设备信息如冰箱条形码、冰箱型号、冰箱ID,然后冰箱接收待入网设备,比如智能微波炉、智能电饭煲等通过蓝牙模块发送的自身设备信息和入网请求,绑定智能冰箱的设备信息和待入网设备信息,生成绑定信息,如将智能冰箱的ID和待入网设备的ID进行绑定,智能冰箱再发送自身的设备信息、接收到的待入网设备的信息以及两者设备信息的绑定信息至服务器,服务器根据接收到的智能冰箱的设备信息、待入网设备的设备信息以及智能冰箱与待入网设备的绑定信息来响应待入网设备的入网请求,如此,服务器待入网设备通过BLE(蓝牙低能耗技术)连接智能冰箱,与智能冰箱绑定设备信息,再通过协议转化连接互联网,使得待入网设备与智能冰箱使用一个ID连接互联网,减少了路由端的WIFI设备连接,降低路由负载,增强星型架构稳定性。
根据本发明的上述基于智能冰箱的组网及控制方法,还可以具有以下技术特征:
在上述技术方案中,优选地,接收待入网设备通过蓝牙模块发送的设备信息及入网请求之前,还包括:开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块;确认智能冰箱为蓝牙连接的蓝牙主设备。
在该技术方案中,智能冰箱接收待入网设备通过蓝牙发送的设备信息及入网请求之前,首先,要开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块,之后,进入蓝牙配网连接的过程,蓝牙链接形成由查询(Inquiry)和寻呼(page)两个过程组成,每个节点在Inquiry查询模式和Inquiry scan查询扫描模式之间交替变化,蓝牙节点具有变量WEIGHT、变量BACK、变量TIMEOUT和FHS(文件***层次化标准)包。入蓝牙配网连接的过程包括:首先,蓝牙初始化周期性切换成Inquiry与Inquiry Scan模式,以发现其 他设备或被发现。其次,判定TIMEOUT值,处于相对模式的蓝牙节点互相发现后,进行WEIGHT值的比较,WEIGHT值较小一方将FHS包传给WEIGHT值较大的一方,并进入Page scan状态,WEIGHT值较大的一方接收对方的FHS封包后,将TIMEOUT复位,继续随机进入Inquiry或Inquiry scan模式。再次,重复直到TIMEOUT为0,进入Page模式,确认主节点。通过上述蓝牙配网连接的过程,确认智能冰箱为蓝牙连接的蓝牙主设备,以便智能冰箱接收待入网设备的设备信息以及入网请求,智能冰箱作为蓝牙连接的主设备最终实现通过蓝牙连接对待入网设备的控制。
在上述任一技术方案中,优选地,在获取智能冰箱的设备信息之后,在开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块之前,还包括:接收注册终端的ID信息;发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱。
在该技术方案中,在获取智能冰箱的设备信息之后,在开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块之前,也就是在智能冰箱与待入网设备开始连接之前,首先接收注册终端的ID信息,该注册终端可以是智能手机、电脑、平板、可穿戴手环等终端,并在其上安装用于控制智能家电的控制APP,发送注册终端的ID信息和智能冰箱的设备信息至服务器,来绑定注册终端和智能冰箱,实现通过注册的智能终端对智能冰箱的控制。
在上述任一技术方案中,优选地,在发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱之后,还包括:判断是否接收到服务器的返回数据;若接收到服务器的返回数据,则接收待入网设备通过蓝牙发送的设备信息及入网请求;若未接收到服务器的返回数据,则重新发送注册终端的ID信息和智能冰箱的设备信息至服务器。
在该技术方案中,在发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱之后,需要判断服务器针对发送的数据是否返回数据,若接收到服务器的返回数据,就说明注册终端注册成功,以智能冰箱绑定成功,则接收待入网设备通过蓝牙发送的设备信息及入网请求,以实现通过智能冰箱对待入网设备的控制。若未接收到服务器的返回数据,就说明没有注册及绑定成功,那么重新发送注册终端的ID信息和智能冰箱的设备信息至 服务器,以实现再次注册及绑定。
在上述任一技术方案中,优选地,发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求之后,还包括:接收注册终端控制指令以根据控制指令控制待入网设备。
在该技术方案中,智能冰箱发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器,服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求之后,也就是在待入网设备通过BLE连接智能冰箱,且通过协议转化连接互联网后,接收注册终端控制指令以根据控制指令控制待入网设备,如此,实现了冰箱一键控制待入网设备,控制过程简单,提高了待入网设备的工作效率,提升了用户体验度。
根据本发明的第二个方面,提出了一种基于智能冰箱的组网及控制***,用于智能冰箱,包括:获取单元,用于获取智能冰箱的设备信息;第一接收单元,用于接收待入网设备通过蓝牙模块发送的设备信息及入网请求;绑定单元,用于绑定待入网设备的设备信息及智能冰箱的设备信息,并生成绑定信息;第一发送单元,用于发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求。
本发明提供的基于智能冰箱的组网及控制***,获取单元获取智能冰箱的设备信息,冰箱的设备信息如冰箱条形码、冰箱型号、冰箱ID,然后冰箱的第一接收单元接收待入网设备,比如智能微波炉、智能电饭煲等通过蓝牙模块发送的自身设备信息和入网请求,绑定单元绑定智能冰箱的设备信息和待入网设备信息,生成绑定信息,如将智能冰箱的ID和待入网设备的ID进行绑定,智能冰箱的第一发送单元再发送自身的设备信息、接收到的待入网设备的信息以及两者设备信息的绑定信息至服务器,服务器根据接收到的智能冰箱的设备信息、待入网设备的设备信息以及智能冰箱与待入网设备的绑定信息来响应待入网设备的入网请求,如此,服务器待入网设备通过BLE(蓝牙低能耗技术)连接智能冰箱,与智能冰箱绑定设备信息,再通过协议转化连接互联网,使得待入网设备与智能冰箱使用一个ID连接互 联网,减少了路由端的WIFI设备连接,降低路由负载,增强星型架构稳定性。
根据本发明的上述基于智能冰箱的组网及控制***,还可以具有以下技术特征:
在上述技术方案中,优选地,开启单元,用于开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块;确认单元,用于确认智能冰箱为蓝牙连接的蓝牙主设备。
在该技术方案中,智能冰箱接收待入网设备通过蓝牙发送的设备信息及入网请求之前,首先,开启单元要开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块,之后,进入蓝牙配网连接的过程,蓝牙链接形成由查询(Inquiry)和寻呼(page)两个过程组成,每个节点在Inquiry查询模式和Inquiry scan查询扫描模式之间交替变化,蓝牙节点具有变量WEIGHT、变量BACK、变量TIMEOUT和FHS(文件***层次化标准)包。入蓝牙配网连接的过程包括:首先,蓝牙初始化周期性切换成Inquiry与Inquiry Scan模式,以发现其他设备或被发现。其次,判定TIMEOUT值,处于相对模式的蓝牙节点互相发现后,进行WEIGHT值的比较,WEIGHT值较小一方将FHS包传给WEIGHT值较大的一方,并进入Page scan状态,WEIGHT值较大的一方接收对方的FHS封包后,将TIMEOUT复位,继续随机进入Inquiry或Inquiry scan模式。再次,重复直到TIMEOUT为0,进入Page模式,确认主节点。通过上述蓝牙配网连接的过程,确认单元确认智能冰箱为蓝牙连接的蓝牙主设备,以便智能冰箱接收待入网设备的设备信息以及入网请求,智能冰箱作为蓝牙连接的主设备最终实现通过蓝牙连接对待入网设备的控制。
在上述任一技术方案中,优选地,第二接收单元,用于接收注册终端的ID信息;第二发送单元,用于发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱。
在该技术方案中,在获取智能冰箱的设备信息之后,在开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块之前,也就是在智能冰箱与待入网设备开始连接之前,首先第二接收单元接收注册终端的ID信息,该注册终端可以是智能手机、电脑、平板、可穿戴手环等终端,并在其上安装用于控制智能家 电的控制APP,第二发送单元发送注册终端的ID信息和智能冰箱的设备信息至服务器,来绑定注册终端和智能冰箱,实现通过注册的智能终端对智能冰箱的控制。
在上述任一技术方案中,优选地,判断单元,用于判断是否接收到服务器的返回数据;第一接收单元,具体用于若接收到服务器的返回数据,则接收待入网设备通过蓝牙模块发送的设备信息及入网请求;第二发送单元,还用于若未接收到服务器的返回数据,则重新发送注册终端的ID信息和智能冰箱的设备信息至服务器。
在该技术方案中,在发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱之后,判断单元需要判断服务器针对发送的数据是否返回数据,若接收到服务器的返回数据,就说明注册终端注册成功,以智能冰箱绑定成功,则第一接收单元接收待入网设备通过蓝牙发送的设备信息及入网请求,以实现通过智能冰箱对待入网设备的控制。若未接收到服务器的返回数据,就说明没有注册及绑定成功,那么第二发送单元重新发送注册终端的ID信息和智能冰箱的设备信息至服务器,以实现再次注册及绑定。
在上述任一技术方案中,优选地,控制单元,用于接收注册终端控制指令以根据控制指令控制待入网设备。
在该技术方案中,智能冰箱发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器,服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求之后,也就是在待入网设备通过BLE连接智能冰箱,且通过协议转化连接互联网后,控制单元接收注册终端控制指令以根据控制指令控制待入网设备,如此,实现了冰箱一键控制待入网设备,控制过程简单,提高了待入网设备的工作效率,提升了用户体验度。
根据本发明的第三个方面,本发明提供了一种智能冰箱,包括上述任一技术方案中的基于智能冰箱的组网及控制***。
本发明提供的智能冰箱,包括上述任一技术方案中的基于智能冰箱的组网及控制***,因此具有该基于智能冰箱的组网及控制***的全部有益效果,在此不再赘述。
本发明的附加方面和优点将在下面的描述部分中变得明显,或通过本 发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1示出了本发明的一个实施例的基于智能冰箱的组网及控制方法的流程示意图;
图2示出了本发明的另一个实施例的智能冰箱的组网及控制方法的流程示意图;
图3示出了本发明的一个具体实施例的智能冰箱的组网及控制方法的流程示意图;
图4示出了本发明的一个实施例的智能冰箱与待入网设备蓝牙配网方法流程示意图;
图5示出了本发明的一个实施例的基于智能冰箱的组网及控制***的示意框图;
图6示出了本发明的另一个实施例的基于智能冰箱的组网及控制***的示意框图;
图7示出了本发明的一个实施例的智能冰箱结构示意图。
具体实施方式
为了能够更清楚地理解本发明的上述方面、特征和优点,下面结合附图和具体实施方式对本发明进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是,本发明还可以采用其他不同于在此描述的其他方式来实施,因此,本发明的保护范围并不限于下面公开的具体实施例的限制。
本发明第一方面的实施例,提出一种基于智能冰箱的组网及控制方法,图1示出了本发明的一个实施例的基于智能冰箱的组网及控制方法的流程示意图:
步骤102,获取智能冰箱的设备信息;
步骤104,接收待入网设备通过蓝牙模块发送的设备信息及入网请求;
步骤106,绑定待入网设备的设备信息及智能冰箱的设备信息,并生成绑定信息;
步骤108,发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求。
本发明提供的基于智能冰箱的组网及控制方法,获取智能冰箱的设备信息,冰箱的设备信息如冰箱条形码、冰箱型号、冰箱ID,然后冰箱接收待入网设备,比如智能微波炉、智能电饭煲等通过蓝牙模块发送的自身设备信息和入网请求,绑定智能冰箱的设备信息和待入网设备信息,生成绑定信息,如将智能冰箱的ID和待入网设备的ID进行绑定,智能冰箱再发送自身的设备信息、接收到的待入网设备的信息以及两者设备信息的绑定信息至服务器,服务器根据接收到的智能冰箱的设备信息、待入网设备的设备信息以及智能冰箱与待入网设备的绑定信息来响应待入网设备的入网请求,如此,服务器待入网设备通过BLE(蓝牙低能耗技术)连接智能冰箱,与智能冰箱绑定设备信息,再通过协议转化连接互联网,使得待入网设备与智能冰箱使用一个ID连接互联网,减少了路由端的WIFI设备连接,降低路由负载,增强星型架构稳定性。
图2示出了本发明的另一个实施例的基于智能冰箱的组网及控制方法的流程示意图。其中,该方法包括:
步骤202,获取智能冰箱的设备信息;
步骤204,接收注册终端的ID信息;
步骤206,发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱;
步骤208,判断是否接收到服务器的返回数据,如是,则进入步骤210,如否,则重复步骤206;
步骤210,开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块;
步骤212,确认智能冰箱为蓝牙连接的蓝牙主设备;
步骤214,接收待入网设备通过蓝牙模块发送的设备信息及入网请求;
步骤216,绑定待入网设备的设备信息及智能冰箱的设备信息,并生成绑定信息;
步骤218,发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求;
步骤220,接收注册终端控制指令以根据控制指令控制待入网设备。
在本发明的一个实施例中,优选地,接收待入网设备通过蓝牙模块发送的设备信息及入网请求之前,还包括:开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块;确认智能冰箱为蓝牙连接的蓝牙主设备。
在该实施例中,智能冰箱接收待入网设备通过蓝牙发送的设备信息及入网请求之前,首先,要开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块,之后,进入蓝牙配网连接的过程,蓝牙链接形成由查询(Inquiry)和寻呼(page)两个过程组成,每个节点在Inquiry查询模式和Inquiry scan查询扫描模式之间交替变化,蓝牙节点具有变量WEIGHT、变量BACK、变量TIMEOUT和FHS(文件***层次化标准)包。进入蓝牙配网连接的过程包括:首先,蓝牙初始化周期性切换成Inquiry与Inquiry Scan模式,以发现其他设备或被发现。其次,判定TIMEOUT值,处于相对模式的蓝牙节点互相发现后,进行WEIGHT值的比较,WEIGHT值较小一方将FHS包传给WEIGHT值较大的一方,并进入Page scan状态,WEIGHT值较大的一方接收对方的FHS封包后,将TIMEOUT复位,继续随机进入Inquiry或Inquiry scan模式。再次,重复直到TIMEOUT为0,进入Page模式,确认主节点。通过上述蓝牙配网连接的过程,确认智能冰箱为蓝牙连接的蓝牙主设备,以便智能冰箱接收待入网设备的设备信息以及入网请求,智能冰箱作为蓝牙连接的主设备最终实现通过蓝牙连接对待入网设备的控制。
在本发明的一个实施例中,优选地,在获取智能冰箱的设备信息之后,在开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块之前,还包括:接收注册终端的ID信息;发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱。
在该实施例中,在获取智能冰箱的设备信息之后,在开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块之前,也就是在智能冰箱与待入网设备开始连接之前,首先接收注册终端的ID信息,该注册终端可以是智能手机、电脑、平板、可穿戴手环等终端,并在其上安装用于控制智能家电的控制APP,发送注册终端的ID信息和智能冰箱的设备信息至服务器,来绑定注册终端和智能冰箱,实现通过注册的智能终端对智能冰箱的控制。
在本发明的一个实施例中,优选地,在发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱之后,还包括:判断是否接收到服务器的返回数据;若接收到服务器的返回数据,则接收待入网设备通过蓝牙发送的设备信息及入网请求;若未接收到服务器的返回数据,则重新发送注册终端的ID信息和智能冰箱的设备信息至服务器。
在该实施例中,在发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱之后,需要判断服务器针对发送的数据是否返回数据,若接收到服务器的返回数据,就说明注册终端注册成功,以智能冰箱绑定成功,则接收待入网设备通过蓝牙发送的设备信息及入网请求,以实现通过智能冰箱对待入网设备的控制。若未接收到服务器的返回数据,就说明没有注册及绑定成功,那么重新发送注册终端的ID信息和智能冰箱的设备信息至服务器,以实现再次注册及绑定。
在本发明的一个实施例中,优选地,发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求之后,还包括:接收注册终端控制指令以根据控制指令控制待入网设备。
在该实施例中,智能冰箱发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器,服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求之后,也就是在待入网设备通过BLE连接智能冰箱,且通过协议转化连接互联网后,接收注册终端控制指令以根据控制指令控制待入网设备,如此,实现了冰箱一键控制待入网设备,控制过程简单,提高了待入网设备的工作效率,提升了用户体验度。
下面结合图3、图4说明本发明的一个具体实施例的智能冰箱的组网及 控制方法。
如图3所示,本发明的一个具体实施例的智能冰箱的组网及控制方法的流程:
步骤302,智能冰箱屏端注册手机ID;
步骤304,判断服务器是否返回数据,是,则进入步骤306,否,则进入步骤302;
步骤306,待入网小家电设备蓝牙开启蓝牙配网;
步骤308,小家电设备发送入网请求和设备信息;
步骤310,获取智能冰箱设备信息;
步骤312,绑定智能冰箱与待入网小家电,生成绑定信息;
步骤314,智能冰箱发送自身设备信息、待入网小家电设备信息和绑定信息发送至服务器(Mideasmart);
步骤316,待入网小家电连接入网络;
步骤318,注册终端通过智能冰箱控制小家电。
其中,在步骤306中的待入网小家电设备蓝牙开启蓝牙配网(周期性进入INQUIRY(查询)和INQUIRY SCAN(查询扫描)模式的具体详细的过程如图4所示,蓝牙链接形成由查询(Inquiry)和寻呼(page)两个过程组成,每个节点在Inquiry(查询模式)和Inquiry scan(查询扫描)模式之间交替变化。蓝牙节点具有变量WEIGHT、变量BACK、变量TIMEOUT和FHS(文件***层次化标准)包。具体过程为:蓝牙初始化周期性切换成Inquiry与Inquiry Scan模式,以发现其他设备或被发现;判定TIMEOUT值处于相对模式的蓝牙节点互相发现后,进行WEIGHT值的比较,WEIGHT值较小一方将FHS包传给WEIGHT值较大的一方,并进入Page scan状态,WEIGHT值较大的一方接收对方的FHS封包后,将TIMEOUT复位,继续随机进入Inquiry或Inquiry scan模式;重复直到TIMEOUT为0,进入Page模式,确认主节点。
该具体实施例提供的基于智能冰箱的组网及控制方法,小家电通过BLE连接至智能冰箱,通过冰箱一键控制提高家电工作效率;设备BLE连接智能冰箱,通过协议转化接入互联网,减少了路由端的WIFI设备连接,降低 路由负载,增强星型架构稳定性。
本发明第二方面的实施例,提出一种基于智能冰箱的组网及控制***500,图5示出了本发明的一个实施例的基于智能冰箱的组网及控制***的示意框图:
获取单元502,用于获取智能冰箱的设备信息;
第一接收单元504,用于接收待入网设备通过蓝牙模块发送的设备信息及入网请求;
绑定单元506,用于绑定待入网设备的设备信息及智能冰箱的设备信息,并生成绑定信息;
第一发送单元508,用于发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求。
本发明提供的基于智能冰箱的组网及控制***500,获取单元502获取智能冰箱的设备信息,冰箱的设备信息如冰箱条形码、冰箱型号、冰箱ID,然后冰箱的第一接收单元504接收待入网设备,比如智能微波炉、智能电饭煲等通过蓝牙模块发送的自身设备信息和入网请求,绑定单元506绑定智能冰箱的设备信息和待入网设备信息,生成绑定信息,如将智能冰箱的ID和待入网设备的ID进行绑定,智能冰箱的第一发送单元508再发送自身的设备信息、接收到的待入网设备的信息以及两者设备信息的绑定信息至服务器,服务器根据接收到的智能冰箱的设备信息、待入网设备的设备信息以及智能冰箱与待入网设备的绑定信息来响应待入网设备的入网请求,如此,服务器待入网设备通过BLE(蓝牙低能耗技术)连接智能冰箱,与智能冰箱绑定设备信息,再通过协议转化连接互联网,使得待入网设备与智能冰箱使用一个ID连接互联网,减少了路由端的WIFI设备连接,降低路由负载,增强星型架构稳定性。
图6示出了本发明的另一个实施例的基于智能冰箱的组网及控制***600的示意框图。其中,基于智能冰箱的组网及控制***600包括:
获取单元602,用于获取智能冰箱的设备信息;
第一接收单元604,用于接收待入网设备通过蓝牙模块发送的设备信息及 入网请求;
绑定单元606,用于绑定待入网设备的设备信息及智能冰箱的设备信息,并生成绑定信息;
第一发送单元608,用于发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器以使服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求;
开启单元610,用于开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块;
确认单元612,用于确认智能冰箱为蓝牙连接的蓝牙主设备;
第二接收单元614,用于接收注册终端的ID信息;
第二发送单元616,用于发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱;
判断单元618,用于判断是否接收到服务器的返回数据;
第一接收单元604,具体用于若接收到服务器的返回数据,则接收待入网设备通过蓝牙发送的设备信息及入网请求;
第二发送单元616,还用于若未接收到服务器的返回数据,则重新发送注册终端的ID信息和智能冰箱的设备信息至服务器;
控制单元620,用于接收注册终端控制指令以根据控制指令控制待入网设备。
在本发明的一个实施例中,优选地,开启单元610,用于开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块;确认单元612,用于确认智能冰箱为蓝牙连接的蓝牙主设备。
在该实施例中,智能冰箱接收待入网设备通过蓝牙发送的设备信息及入网请求之前,首先,开启单元610要开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块,之后,进入蓝牙配网连接的过程,蓝牙链接形成由查询(Inquiry)和寻呼(page)两个过程组成,每个节点在Inquiry查询模式和Inquiry scan(查询扫描)模式之间交替变化,蓝牙节点具有变量WEIGHT、变量BACK、变量TIMEOUT和FHS(文件***层次化标准)包。蓝牙配网连接的过程包括:首先,蓝牙初始化周期性切换成Inquiry与Inquiry Scan 模式,以发现其他设备或被发现。其次,判定TIMEOUT值,处于相对模式的蓝牙节点互相发现后,进行WEIGHT值的比较,WEIGHT值较小一方将FHS包传给WEIGHT值较大的一方,并进入Page scan状态,WEIGHT值较大的一方接收对方的FHS封包后,将TIMEOUT复位,继续随机进入Inquiry或Inquiry scan模式。再次,重复直到TIMEOUT为0,进入Page模式,确认主节点。通过上述蓝牙配网连接的过程,确认单元612确认智能冰箱为蓝牙连接的蓝牙主设备,以便智能冰箱接收待入网设备的设备信息以及入网请求,智能冰箱作为蓝牙连接的主设备最终实现通过蓝牙连接对待入网设备的控制。
在本发明的一个实施例中,优选地,第二接收单元614,用于接收注册终端的ID信息;第二发送单元616,用于发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱。
在该实施例中,在获取智能冰箱的设备信息之后,在开启智能冰箱的蓝牙模块以连接待入网设备的蓝牙模块之前,也就是在智能冰箱与待入网设备开始连接之前,首先第二接收单元614接收注册终端的ID信息,该注册终端可以是智能手机、电脑、平板、可穿戴手环等终端,并在其上安装用于控制智能家电的控制APP,第二发送单元616发送注册终端的ID信息和智能冰箱的设备信息至服务器,来绑定注册终端和智能冰箱,实现通过注册的智能终端对智能冰箱的控制。
在本发明的一个实施例中,优选地,判断单元618,用于判断是否接收到服务器的返回数据;第一接收单元604,具体用于若接收到服务器的返回数据,则接收待入网设备通过蓝牙发送的设备信息及入网请求;第二发送单元616,还用于若未接收到服务器的返回数据,则重新发送注册终端的ID信息和智能冰箱的设备信息至服务器。
在该实施例中,在发送注册终端的ID信息和智能冰箱的设备信息至服务器以绑定注册终端和智能冰箱之后,判断单元618需要判断服务器针对发送的数据是否返回数据,若接收到服务器的返回数据,就说明注册终端注册成功,以智能冰箱绑定成功,则第一接收单元604接收待入网设备通过蓝牙发送的设备信息及入网请求,以实现通过智能冰箱对待入网设备的控制。若未接收到服务器的返回数据,就说明没有注册及绑定成功,那么第二发送单元616重新发 送注册终端的ID信息和智能冰箱的设备信息至服务器,以实现再次注册及绑定。
在本发明的一个实施例中,优选地,控制单元620,用于接收注册终端控制指令以根据控制指令控制待入网设备。
在该实施例中,智能冰箱发送待入网设备的设备信息、智能冰箱的设备信息及绑定信息至服务器,服务器根据待入网设备的设备信息、智能冰箱的设备信息及绑定信息响应入网请求之后,也就是在待入网设备通过BLE连接智能冰箱,且通过协议转化连接互联网后,控制单元620接收注册终端控制指令以根据控制指令控制待入网设备,如此,实现了冰箱一键控制待入网设备,控制过程简单,提高了待入网设备的工作效率,提升了用户体验度。
本发明第三方面的实施例,提出了一种智能冰箱,图7示出了本发明的一个智能冰箱700的结构示意图,包括上述任一实施例中的基于智能冰箱的组网及控制***702。
本发明提供的智能冰箱700,包括上述任一实施例中的基于智能冰箱的组网及控制***702,因此具有基于智能冰箱的组网及控制***702的全部有益效果,在此不再赘述。
在本说明书的描述中,术语“一个实施例”、“一些实施例”、“具体实施例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或实例。而且,描述的具体特征、结构、材料或特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。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。

Claims (11)

  1. 一种基于智能冰箱的组网及控制方法,用于所述智能冰箱,其特征在于,包括:
    获取所述智能冰箱的设备信息;
    接收待入网设备通过蓝牙模块发送的设备信息及入网请求;
    绑定所述待入网设备的设备信息及所述智能冰箱的设备信息,并生成绑定信息;
    发送所述待入网设备的设备信息、所述智能冰箱的设备信息及所述绑定信息至服务器以使所述服务器根据所述待入网设备的设备信息、所述智能冰箱的设备信息及所述绑定信息响应所述入网请求。
  2. 根据权利要求1所述的基于智能冰箱的组网及控制方法,其特征在于,所述接收待入网设备通过蓝牙模块发送的设备信息及入网请求之前,还包括:
    开启所述智能冰箱的蓝牙模块以连接所述待入网设备的所述蓝牙模块;
    确认所述智能冰箱为蓝牙连接的蓝牙主设备。
  3. 根据权利要求2所述的基于智能冰箱的组网及控制方法,其特征在于,在获取所述智能冰箱的设备信息之后,在开启所述智能冰箱的蓝牙模块以连接所述待入网设备的蓝牙模块之前,还包括:
    接收注册终端的ID信息;
    发送所述注册终端的ID信息和所述智能冰箱的设备信息至所述服务器以绑定所述注册终端和所述智能冰箱。
  4. 根据权利要求3所述的基于智能冰箱的组网及控制方法,其特征在于,在发送所述注册终端的ID信息和所述智能冰箱的设备信息至服务器以绑定所述注册终端和所述智能冰箱之后,还包括:
    判断是否接收到所述服务器的返回数据;
    若接收到所述服务器的所述返回数据,则接收所述待入网设备通过所述蓝牙模块发送的所述设备信息及所述入网请求;
    若未接收到所述服务器的所述返回数据,则重新发送所述注册终端的ID信息和所述智能冰箱的所述设备信息至所述服务器。
  5. 根据权利要求4所述的基于智能冰箱的组网及控制方法,其特征在于,发送所述待入网设备的设备信息、所述智能冰箱的设备信息及绑定信息至服务器以使所述服务器根据所述待入网设备的设备信息、所述智能冰箱的设备信息及所述绑定信息响应所述入网请求之后,还包括:
    接收所述注册终端的控制指令以根据所述控制指令控制所述待入网设备。
  6. 一种基于智能冰箱的组网及控制***,用于所述智能冰箱,其特征在于,包括:
    获取单元,用于获取所述智能冰箱的设备信息;
    第一接收单元,用于接收待入网设备通过蓝牙模块发送的设备信息及入网请求;
    绑定单元,用于绑定所述待入网设备的设备信息及所述智能冰箱的设备信息,并生成绑定信息;
    第一发送单元,用于发送所述待入网设备的设备信息、所述智能冰箱的设备信息及所述绑定信息至服务器以使所述服务器根据所述待入网设备的设备信息、所述智能冰箱的设备信息及所述绑定信息响应所述入网请求。
  7. 根据权利要求6所述的基于智能冰箱的组网及控制***,其特征在于,还包括:
    开启单元,用于开启所述智能冰箱的蓝牙模块以连接所述待入网设备的所述蓝牙模块;
    确认单元,用于确认所述智能冰箱为蓝牙连接的蓝牙主设备。
  8. 根据权利要求7所述的基于智能冰箱的组网及控制***,其特征在于,还包括:
    第二接收单元,用于接收注册终端的ID信息;
    第二发送单元,用于发送所述注册终端的ID信息和所述智能冰箱的设备信息至所述服务器以绑定所述注册终端和所述智能冰箱。
  9. 根据权利要求8所述的基于智能冰箱的组网及控制***,其特征在于,还包括:
    判断单元,用于判断是否接收到所述服务器的返回数据;
    所述第一接收单元,具体用于若接收到所述服务器的所述返回数据,则接 收所述待入网设备通过所述蓝牙模块发送的所述设备信息及所述入网请求;
    所述第二发送单元,还用于若未接收到所述服务器的所述返回数据,则重新发送所述注册终端的ID信息和所述智能冰箱的所述设备信息至所述服务器。
  10. 根据权利要求9所述的基于智能冰箱的组网及控制***,其特征在于,还包括:
    控制单元,用于接收所述注册终端的控制指令以根据所述控制指令控制所述待入网设备。
  11. 一种智能冰箱,其特征在于,包括如权利要求6至10中任一项所述的基于智能冰箱的组网及控制***。
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