WO2024199549A1 - 组合设备的联网方法及组合设备系统 - Google Patents

组合设备的联网方法及组合设备系统 Download PDF

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Publication number
WO2024199549A1
WO2024199549A1 PCT/CN2024/094990 CN2024094990W WO2024199549A1 WO 2024199549 A1 WO2024199549 A1 WO 2024199549A1 CN 2024094990 W CN2024094990 W CN 2024094990W WO 2024199549 A1 WO2024199549 A1 WO 2024199549A1
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Prior art keywords
networking
information
combined
relay
network
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PCT/CN2024/094990
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English (en)
French (fr)
Inventor
苏忠城
薛晨曦
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Wuxi Little Swan Electric Co Ltd
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Wuxi Little Swan Electric Co Ltd
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Publication of WO2024199549A1 publication Critical patent/WO2024199549A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • H04L41/084Configuration by using pre-existing information, e.g. using templates or copying from other elements
    • H04L41/0846Configuration by using pre-existing information, e.g. using templates or copying from other elements based on copy from other elements
    • 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
    • H04L12/2807Exchanging configuration information on appliance services in a home automation network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0894Policy-based network configuration management
    • 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

Definitions

  • the present disclosure relates to the technical field of intelligent devices, and in particular to a networking method for combined devices and a combined device system.
  • Smart home As an application field of the Internet of Things, smart home has gradually been accepted and used by users. Smart devices in smart homes are connected to the Internet after being configured in various ways. Users can control smart devices remotely or in the field, providing users with more efficient, convenient and comfortable services.
  • At least two smart devices are used in combination to obtain a better user experience, such as more convenient operation, more energy-saving or more space-saving, etc.
  • the smart device cannot use the network, and the user must manually reconfigure the network for the smart device.
  • the technical problem to be solved by the present disclosure is to solve the problem that if one smart device in the combined device is disconnected from the network, the smart device cannot use the network and the user must manually re-configure the network for the smart device.
  • the present disclosure provides a networking method and a combined device system for a combined device, wherein when a second device in the combined device is disconnected from the network, a first device connected to the second device in communication sends networking information to the second device, and the second device receives the network information according to the connection information.
  • the network information is used to perform networking operations, without the need for the user to manually configure the network for the second device that is in an offline state.
  • the present disclosure provides a networking method for a combined device, the networking method being applied to a first device in a combined device system that is in a networked state, the combined device system further comprising a second device that is communicatively connected to the first device; the networking method comprising:
  • the networking information is used to control the second device to perform a networking operation.
  • the networking method further includes:
  • the networking information includes at least a networking name and a networking password, and the networking information is used to control the second device to connect to a networking device corresponding to the networking name through the networking password to enable the second device to connect to the network.
  • the networking method before sending the networking information to the second device, the networking method further includes:
  • a re-networking instruction is received; the re-networking instruction is used to control the first device to execute sending networking information to the second device.
  • the combined device system further includes a terminal device, and the first device is communicatively connected to the terminal device; and the networking method further includes:
  • the configuration binding information is the connection information between the first device and the terminal device, and the configuration binding information is used to control the second device to perform a configuration binding operation to achieve a communication connection between the second device and the terminal device.
  • the combined device system further includes a relay device, and the first device and the second device are connected to each other through the relay device; and the networking method further includes:
  • Determining that the second device is in an offline state sending networking information and/or configuration binding information to the relay device, so that the relay device forwards the networking information and/or the configuration binding information to the second device;
  • the present disclosure further provides a networking method for a combined device, the networking method being applied to a second device in a combined device system that is in an off-network state, the combined device system further comprising a first device that is communicatively connected to the second device; the networking method comprising:
  • the networking method further includes:
  • the networking result includes a networking failure of the second device and/or a networking success of the second device.
  • the networking information at least includes a networking name and a networking password; and performing a networking operation according to the networking information includes:
  • a networking request and a networking password are sent to a networking device corresponding to the networking name, so that the networking password is verified by the networking device.
  • the combined device system further includes a terminal device, and the first device is communicatively connected to the terminal device; and the networking method further includes:
  • the configuration binding information is connection information between the first device and the terminal device.
  • the combined device system further includes a relay device, and the first device and the second device are connected to each other through the relay device; and the networking method further includes:
  • the present disclosure further provides a networking method for a combined device, the networking method being applied to a terminal device in a combined device system, the combined device system further comprising a first device and a second device, the first device and the second device being communicatively connected, and the first device and the second device being communicatively connected to the terminal device; the networking method comprising:
  • the reconnection instruction is used to control the first device to execute sending of networking information to the second device.
  • the present disclosure further provides a combined device system, including: a first device and a second device, wherein the first device and the second device are communicatively connected;
  • the first device is used to perform the steps of any one of the networking methods provided in the first aspect above;
  • the second device is used to execute the steps of any one of the networking methods provided in the second aspect above.
  • the combined device system further includes: a terminal device and a relay device;
  • the first device and the second device are both communicatively connected to the terminal device; the terminal device is used to execute the steps of the networking method provided in the third aspect above;
  • the first device and the second device are communicatively connected via the relay device.
  • the first device and the relay device are connected to each other in a wired or wireless manner;
  • the relay device and the second device are connected to each other via Bluetooth.
  • the first device is a clothes processing device
  • the second device is a floor cleaning device
  • the first device is a floor cleaning device
  • the second device is a clothes processing device
  • the networking method of a combined device is applied to a first device in a combined device system, and the combined device system also includes a second device connected to the first device in communication;
  • the combined device networking method includes: when it is determined that the second device is in a disconnected state, sending networking information to the second device; the networking information is used to control the second device to perform a networking operation.
  • the first device connected to the second device in communication sends the networking information to the second device, and the second device performs a networking operation according to the networking information, without the need for the user to manually configure the network for the second device in a disconnected state.
  • FIG1 is a schematic diagram of the structure of a combined device system provided by an embodiment of the present disclosure.
  • FIG2 is a schematic diagram of a flow chart of a networking method for a combined device provided in an embodiment of the present disclosure
  • FIG3 is a schematic diagram of a flow chart of another networking method of a combined device provided in an embodiment of the present disclosure
  • FIG4 is a schematic flow chart of another method for networking a combined device provided in an embodiment of the present disclosure.
  • FIG5 is a schematic flow chart of another method for networking a combined device provided in an embodiment of the present disclosure.
  • Smart home is a networked intelligent home control system that integrates automation control systems, computer network systems and network communication technologies. Smart home will allow users to have more convenient means to manage home devices. For example, they can control home devices through touch screens, wireless remote controls, telephones, the Internet or voice recognition, and can also perform scene operations to link multiple devices. On the other hand, various devices in smart homes can communicate with each other and can interact and operate according to different states without user commands, thus bringing users the greatest degree of efficiency, convenience, comfort and safety.
  • the premise for users to remotely control smart devices in smart homes is that the smart home appliances must be connected to the Internet. If the smart device is disconnected from the Internet, It cannot use the network and cannot receive control commands sent by the user. At this time, the user must manually configure the network for it.
  • an embodiment of the present disclosure provides a networking method for a combination device.
  • the first device that is communicatively connected to the second device sends networking information to the second device.
  • the second device performs a networking operation according to the networking information and connects to the corresponding networked device. There is no need for the user to manually configure the second device in the offline state.
  • the networking method of a combination device and a combination device system provided by an embodiment of the present disclosure are exemplarily described below with reference to FIGS. 1 to 5 .
  • Fig. 1 is a schematic diagram of a structure of a combined device system provided by an embodiment of the present disclosure.
  • the combined device system 100 includes: a first device 101 and a second device 102, and the first device 101 and the second device 102 are in communication connection.
  • the first device 101 and the second device 102 may be connected to each other via a wired communication method, or may be connected to each other via a short-range communication technology, such as wireless, Bluetooth, and ZigBee, etc., which are not limited here.
  • a short-range communication technology such as wireless, Bluetooth, and ZigBee, etc., which are not limited here.
  • the combined device system further includes a terminal device 103 , and both the first device 101 and the second device 102 are communicatively connected to the terminal device 103 .
  • the terminal device 103 includes but is not limited to a mobile phone, a tablet, a computer, a touch panel, a remote control or a voice recognition device, and also includes terminal devices with communication and control functions known to those skilled in the art, which are not limited here.
  • the combined device system 100 includes at least two devices, and the at least two devices are used in combination to obtain a better user experience; for example, a washing machine and a sweeper are used in combination, and the washing machine is placed above the sweeper base station, which improves space utilization, and the sweeper can also share the water inlet and drainage pipes with the washing machine, simplifying the device structure and facilitating the miniaturization of the device.
  • the disclosed embodiments do not limit the type of device, and the device can also be any smart device with functions known to those skilled in the art.
  • the embodiment of the present disclosure does not limit the number and type of devices in the combined device system.
  • the number of devices can also be three or more, and the types of multiple devices can be different.
  • the types can be the same or different.
  • the combined equipment system includes multiple washing machines and multiple dryers. These devices are connected to the same terminal device for communication. Users can operate on the terminal device to monitor and control each device.
  • both the first device 101 and the second device 102 need to be connected to a networking device (such as a router) to have networking functionality.
  • a networking device such as a router
  • the first device 101 and the second device 102 establish a wireless communication connection with the terminal device 103; when one of the devices is in an offline state, the device cannot communicate with the terminal device 103.
  • the first device 101 and the second device 102 are connected to a networked device (such as a router), and then after the configuration and binding operation, the first device 101 and the second device 102 establish a communication connection with the terminal device 103, so that data interaction or signal transmission can be performed wirelessly with the terminal device 103.
  • a networked device such as a router
  • the first device 101 and the second device 102 establish a communication connection with the terminal device 103, so that data interaction or signal transmission can be performed wirelessly with the terminal device 103.
  • a user can monitor or control the smart home appliance bound to it on the mobile phone, providing users with better convenience services and technological experience.
  • FIG2 a flowchart of a networking method for a combined device provided by an embodiment of the present disclosure is provided.
  • the following two methods can be used to achieve re-networking of the second device: one is that the first device (in an online state) determines that the second device is in an offline state, and sends networking information to the second device; the second device receives the networking information, and performs a networking operation according to the networking information to network with the corresponding networked device; after performing the networking operation, the second device feeds back the networking result to the first device; the first device receives the networking result, and if the networking is successful, the networking method ends, and if the networking fails, it returns to the step of sending networking information to the second device.
  • the second is that the terminal device determines that the second device is in an offline state, and sends a re-networking instruction to the first device (in an online state); the first device receives the re-networking instruction sent by the terminal device, and sends networking information to the second device (in an offline state), and the subsequent steps are the same as the previous method, which will not be repeated here. In this way, the user does not need to manually configure the network for the device in the offline state, which improves the user experience.
  • the second device can also be triggered to reconnect to the network by the user operating on the terminal device.
  • the terminal device sends a reconnection notification to the first device. Network instructions.
  • the combined device system further includes a relay device, and the first device and the second device are communicatively connected via the relay device.
  • the first device and the second device are both communicatively connected to the relay device.
  • the function of the relay device is to receive information sent by the first device and the second device, and forward the received information to the other party.
  • the first device and the second device achieve two-way communication through the relay device; the communication path includes: first device-relay device-second device, and second device-relay device-first device.
  • the first device and the relay device are connected to each other via wired or wireless communication; the relay device and the second device are connected to each other via Bluetooth communication.
  • the washing machine corresponds to the first device
  • the sweeping machine body corresponds to the second device
  • the sweeping machine base station corresponds to the relay device
  • the washing machine and the sweeping machine base station are communicated and connected in a wired or wireless manner
  • the sweeping machine base station and the sweeping machine body are communicated and connected in a Bluetooth manner.
  • the base station of the sweeping machine and the sweeping machine body can be automatically paired. Even if the user restores the sweeping machine body to factory settings, the sweeping machine body can still be connected to the sweeping machine base station via Bluetooth, so that the sweeping machine body in an offline state can still communicate with the washing machine.
  • the first device and the second device may also communicate via Bluetooth, ZigBee or Near Field Communication (NFC), and the second device and the relay device may also communicate via Near Field Communication, which is not limited here.
  • NFC Near Field Communication
  • the first device is a clothes processing device
  • the second device is a floor cleaning device
  • the first device is a floor cleaning device
  • the second device is a clothes processing device
  • clothing processing equipment includes washing machines, dryers, all-in-one washing and drying machines, clothing care machines and all clothing care equipment known to technical personnel in this field
  • floor cleaning equipment includes sweepers, scrubbers, vacuum cleaners and all floor cleaning equipment known to technical personnel in this field, which are not limited here.
  • the present disclosure also provides a networking method for a combined device.
  • the networking method is applied to a first device in a networked state in a combined device system.
  • the combined device system further comprises a second device that is communicatively connected to the first device.
  • the networking method may comprise the following steps:
  • the first device and the second device communicate via wired or Bluetooth, they can still communicate even if the second device is disconnected from the network, but the second device cannot communicate wirelessly with the terminal device.
  • Determine that the second device is disconnected from the network control the first device in the networked state to send network information to the second device, and then control the second device to perform a network operation according to the network information; performing a network operation means that the second device establishes a connection with the corresponding networked device according to the network information, and the user does not need to manually configure the network.
  • the network information stored on the device is deleted, causing the device to be disconnected from the network.
  • the device is the second device, and the other devices in the combined device system are still connected to the network, namely the first device.
  • the second device that has been restored to factory settings can still communicate with the first device via wired or Bluetooth, and can control the first device to send network information to the second device.
  • the second device establishes a communication connection with the corresponding networked device based on the network information, without the need for the user to manually configure the network, thereby improving the user experience.
  • the networking name and networking password of a networked device are changed, all devices in the combined device system cannot connect to the networked device, that is, all devices are in a disconnected state. In this case, the user only needs to manually configure the network for one of the devices. After the device is connected to the network, the device is controlled to send updated networking information to other devices in a disconnected state. Other devices establish communication connections with the corresponding networked devices based on the updated networking information. The user does not need to manually configure the network for all devices, which greatly saves manpower and improves user experience.
  • the new device when a new device is added to the combined device system, the new device is connected to the original device in the combined device system via Bluetooth or wired mode, so that the new device can communicate with the original device; at this time, the new device has not yet been connected to the networked device and is in a disconnected state, and the original device in the networked state can be controlled to send network information to the new device.
  • the newly added device establishes a communication connection with the corresponding wireless networking device based on the networking information, without the need for users to manually configure the network, thus improving the user experience.
  • the networking method of the combination device provided in the embodiment of the present disclosure is applied to the first device in the combination device system that is in a networked state.
  • the first device that is communicatively connected to the second device sends networking information to the second device, and the second device performs a networking operation according to the networking information.
  • the user There is no need for the user to manually configure the network for the second device that is in a disconnected state, thereby improving the user experience.
  • the networking method further includes the following steps:
  • the second device if the networking result is that the second device fails to connect to the network, the second device continues to send networking information until the networking result is that the second device connects to the network successfully, thereby ensuring that the second device is reconnected to the network and can exchange data or transmit signals with the terminal device.
  • the first device can be controlled to send a prompt message to the terminal device to remind the user that the second device is in an offline state.
  • the networking information includes at least a networking name and a networking password; the networking information is used to control the second device to connect to the networking device corresponding to the networking name through the networking password to enable the second device to connect to the network.
  • the networking device is a router, and the first device sends its networking information with the router to the second device; after receiving the networking information, the second device sends a networking request and a networking password to the router corresponding to the networking name; the router receives the networking request and the networking password, and verifies the networking password with the preset password, determines that the networking password is the same as the preset password, and allows the second device to establish a connection with the router through the networking request, thereby realizing the networking of the second device.
  • FIG4 a flowchart of another method for networking a combined device provided in an embodiment of the present disclosure is provided.
  • the networking method when sending a networking signal to a second device, Before receiving the information, the networking method further includes the following steps:
  • determining the status of the second device is performed by the terminal device, and determining whether there is a second device in a disconnected state based on the communication status between each device and the terminal device. If so, the terminal device is controlled to send a reconnection instruction to the first device; after the first device receives the reconnection instruction, it executes S420, that is, sends networking information to the second device, and finally realizes the reconnection of the second device without the need for manual network configuration by the user.
  • the user can also trigger the second device to reconnect to the network by operating on the terminal device.
  • the terminal device sends a reconnection instruction to the first device.
  • the combined device system further includes a terminal device, and the first device is communicatively connected to the terminal device; the networking method further includes the following steps:
  • the configuration binding information is the connection information between the first device and the terminal device, and the configuration binding information is used to control the second device to perform a configuration binding operation to achieve a communication connection between the second device and the terminal device.
  • the networking information and configuration binding information stored on the second device are deleted, and the first device is controlled to send the networking information to the second device, and at the same time, the configuration binding information of the first device is also sent; the second device is controlled to perform networking operations according to the networking information, and establish a communication connection with the corresponding networking device, and then the networked second device is controlled to establish a communication connection with the corresponding terminal device according to the configuration binding information of the first device, thereby realizing the communication connection between the second device and the terminal device, and data interaction or signal transmission can be performed between the second device and the terminal device.
  • the combined device system further includes a relay device, and the first device and the second device are connected to each other through the relay device; the networking method further includes:
  • Determining that the second device is in an offline state sending networking information and/or configuration binding information to the relay device, so that the relay device forwards the networking information and/or configuration binding information to the second device;
  • the role of the relay device is to forward the networking information and/or configuration binding information sent by the first device to the second device, and forward the networking result sent by the second device to the first device, so as to realize two-way communication between the first device and the second device.
  • the embodiment of the present disclosure further provides a networking method for a combined device, which is applied to a second device in a disconnected state in a combined device system, and the combined device system also includes a first device that is communicatively connected to the second device.
  • the networking method may include the following steps:
  • S510 Receive networking information sent by the first device, and perform a networking operation according to the networking information.
  • the second device even if the second device is in a disconnected state, the communication link between the first device and the second device will not be affected, and the two can still communicate normally, but the second device in a disconnected state cannot communicate wirelessly with the terminal device.
  • the second device After the second device receives the networking information sent by the first device, it connects to the corresponding networking device according to the networking information, and the user does not need to manually configure the network for the second device in a disconnected state, thereby improving the user experience.
  • the networking method further includes the following steps:
  • the networking result includes a networking failure of the second device and/or a networking success of the second device.
  • the second device executes the networking operation, it sends the networking result to the first device. If the networking result is that the second device fails to connect to the network, indicating that the second device is still in an offline state, the first device is controlled to continue sending networking information to the second device; if the networking result is that the second device is successfully connected to the network, indicating that the second device is in an online state, the process ends.
  • the networking information includes at least a networking name and a networking password; and “performing a networking operation according to the networking information” includes:
  • a network request and a network password are sent to a network device corresponding to the network name, so that the network device verifies the network password.
  • the second device after receiving the networking information sent by the first device, the second device sends a networking request and a networking password to the networking device corresponding to the networking name, so that the networking device The networking password is verified; the verification process is: comparing the networking password with the preset password, and determining that the networking password is the same as the preset password, then allowing the second device to connect to the networking device through a networking request, thereby realizing the networking of the second device.
  • the combined device system further includes a terminal device, and the first device is communicatively connected to the terminal device; the networking method further includes the following steps:
  • the configuration binding information is the connection information between the first device and the terminal device.
  • the networking information and configuration binding information stored on the second device are deleted.
  • the first device simultaneously sends the networking information and configuration binding information to the second device.
  • the second device performs networking operations according to the networking information, establishes a communication connection with the corresponding networking device, and then establishes a communication connection with the corresponding terminal device according to the configuration binding information of the first device, thereby realizing data interaction or signal transmission between the second device and the terminal device.
  • the combined device system further includes a relay device, and the first device and the second device are connected to each other through the relay device; the networking method further includes:
  • the role of the relay device is to forward the networking information and/or configuration binding information sent by the first device to the second device, and forward the networking result sent by the second device to the first device, so as to realize two-way communication between the first device and the second device.
  • the embodiment of the present disclosure further provides a networking method for a combined device, the networking method is applied to a terminal device in a combined device system, the combined device system further includes a first device and a second device, the first device and the second device are communicatively connected, and the first device and the second device are respectively communicatively connected to the terminal device;
  • the networking method may include the following steps:
  • the new networking instruction is used to control the first device to send networking information to the second device.
  • the method for determining whether the second device is in an offline state is: first, after the user restores the factory settings of the second device, an operation is performed on the terminal device to trigger the second device to reconnect to the network.
  • the terminal device sends a reconnection instruction to the first device; second, the terminal device automatically identifies and determines whether there is a second device in an offline state based on the communication status of each device and the terminal device. If so, a reconnection instruction is sent to the first device; ultimately, the second device is reconnected to the network without the need for the user to manually configure the network.
  • the terminal device is controlled to send a reconnection instruction to the first device in an online state, so as to control the first device to send networking information to the second device in the offline state after receiving the reconnection instruction.
  • the network information stored on the device is deleted, causing the device to be unable to connect to the network.
  • This device is the second device.
  • the user can operate on the terminal device to trigger the sending of a re-networking instruction to the first device in a networked state.
  • the first device sends the network information to the second device.
  • the second device performs the network operation without requiring the user to manually configure the network for the second device.
  • the user can also not perform any operation.
  • the terminal device determines whether there is a second device in a disconnected state in the system based on the communication status between it and each device. If so, the terminal device is controlled to send a re-networking instruction to the first device in a networked state. The subsequent steps are the same and will not be repeated here.
  • the combined device is not limited to clothes processing equipment and floor cleaning equipment, and other types of smart home appliances can also be selected, such as a home theater system, which includes smart devices such as a television, a microphone, a speaker, and a light.
  • a home theater system which includes smart devices such as a television, a microphone, a speaker, and a light.
  • the combined device can also be used in office scenarios, for example, combining devices such as a computer, a printer, and a projector.
  • the present disclosure provides a networking method for a combined device and a combined device system, the networking method is applied to a first device in the combined device system, the combined device system also includes a second device connected to the first device in communication; the networking method for the combined device includes: when it is determined that the second device is in a disconnected state, sending networking information to the second device; the networking information is used to control the second device to perform a networking operation.
  • the first device connected to the second device in communication sends networking information to the second device, and the second device performs a networking operation according to the networking information, without the need for the user to manually configure the first and second devices in the disconnected state, thereby improving the intelligence of the combined device system, being conducive to improving the user experience, and having strong industrial practicality.

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  • Computer Networks & Wireless Communication (AREA)
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Abstract

本公开涉及组合设备的联网方法及组合设备系统,该联网方法应用于组合设备系统中的第一设备,组合设备系统还包括与第一设备通讯连接的第二设备;该组合设备的联网方法包括:确定第二设备处于断网状态时,向第二设备发送联网信息;联网信息用于控制第二设备执行联网操作。由此,当第二设备处于断网状态时,与第二设备通讯连接的第一设备向第二设备发送联网信息,第二设备根据联网信息执行联网操作,无需用户对处于断网状态的第二设备进行手动配网。

Description

组合设备的联网方法及组合设备系统
本公开要求于2023年3月30日提交中国专利局、申请号为202310328853.7、发明名称为“组合设备的联网方法及组合设备系统”的中国专利申请的优先权,其全部内容通过引用结合在本公开中。
技术领域
本公开涉及智能设备技术领域,尤其涉及一种组合设备的联网方法及组合设备系统。
背景技术
智能家居作为物联网的一个应用领域,已经逐渐被用户接受并使用。智能家居内的智能设备通过各种方式配置后连接到互联网,用户可以远程控制智能设备,也可以近场控制智能设备,为用户提供更加高效、便利、舒适的服务。
相关技术中,将至少两种智能设备组合使用以获得更好的用户体验,比如操作更方便、更节能或更节省空间等。然而,组合设备使用过程中,若其中一个智能设备发生断网,该智能设备就无法使用网络,必须由用户重新为该智能设备手动配网。
发明内容
(一)要解决的技术问题
本公开要解决的技术问题是解决若组合设备中一个智能设备发生断网,该智能设备就无法使用网络,必须由用户重新为该智能设备手动配网。
(二)技术方案
为了解决上述技术问题,本公开提供了一种组合设备的联网方法及组合设备系统,当组合设备中的第二设备处于断网状态时,与第二设备通讯连接的第一设备向第二设备发送联网信息,第二设备根据联 网信息执行联网操作,无需用户对处于断网状态的第二设备进行手动配网。
第一方面,本公开提供了一种组合设备的联网方法,所述联网方法应用于组合设备系统中处于联网状态的第一设备,所述组合设备系统还包括与所述第一设备通讯连接的第二设备;所述联网方法包括:
确定所述第二设备处于断网状态,向所述第二设备发送联网信息;所述联网信息用于控制所述第二设备执行联网操作。
可选地,所述联网方法还包括:
接收所述第二设备反馈的联网结果;
确定所述联网结果为第二设备联网失败,再次向所述第二设备发送联网信息,直至所述联网结果为第二设备联网成功。
可选地,所述联网信息至少包括联网名称和联网密码,所述联网信息用于控制所述第二设备通过所述联网密码连接到与所述联网名称对应的联网设备,以实现所述第二设备联网。
可选地,在所述向所述第二设备发送联网信息之前,所述联网方法还包括:
接收重新联网指令;所述重新联网指令用于控制所述第一设备执行向所述第二设备发送联网信息。
可选地,所述组合设备系统还包括终端设备,所述第一设备与所述终端设备通讯连接;所述联网方法还包括:
向所述第二设备发送配置绑定信息;所述配置绑定信息为所述第一设备与所述终端设备的连接信息,所述配置绑定信息用于控制所述第二设备执行配置绑定操作,以实现所述第二设备与所述终端设备通讯连接。
可选地,所述组合设备系统还包括中继设备,所述第一设备和所述第二设备通过中继设备实现通讯连接;所述联网方法还包括:
确定所述第二设备处于断网状态,向所述中继设备发送联网信息和/或配置绑定信息,以由所述中继设备将所述联网信息和/或所述配置绑定信息转发给所述第二设备;
以及,接收由所述中继设备转发的联网结果。
第二方面,本公开还提供了一种组合设备的联网方法,所述联网方法应用于组合设备系统中处于断网状态的第二设备,所述组合设备系统还包括与所述第二设备通讯连接的第一设备;所述联网方法包括:
接收所述第一设备发送的联网信息,并根据所述联网信息执行联网操作。
可选地,所述联网方法还包括:
向所述第一设备反馈联网结果;所述联网结果包括所述第二设备联网失败和/或所述第二设备联网成功。
可选地,所述联网信息至少包括联网名称和联网密码;所述根据所述联网信息执行联网操作包括:
向与所述联网名称对应的联网设备发送联网请求以及联网密码,以由所述联网设备对所述联网密码进行验证。
可选地,所述组合设备系统还包括终端设备,所述第一设备与所述终端设备通讯连接;所述联网方法还包括:
接收所述第一设备发送的配置绑定信息,并根据所述配置绑定信息执行配置联网操作,以实现所述第二设备与所述终端设备通讯连接;所述配置绑定信息为所述第一设备与所述终端设备的连接信息。
可选地,所述组合设备系统还包括中继设备,所述第一设备和所述第二设备通过中继设备实现通讯连接;所述联网方法还包括:
接收由所述中继设备转发的所述联网信息和/或所述配置绑定信息;
以及,向所述中继设备反馈联网结果,以由所述中继设备将所述联网结果转发给所述第一设备。
第三方面,本公开还提供了一种组合设备的联网方法,所述联网方法应用于组合设备系统中的终端设备,所述组合设备系统还包括第一设备和第二设备,所述第一设备和所述第二设备通讯连接,所述第一设备和所述第二设备均与所述终端设备通讯连接;所述联网方法包括:
确定第二设备处于断网状态,向第一设备发送重新联网指令;所述重新联网指令用于控制所述第一设备执行向所述第二设备发送联网信息。
第四方面,本公开还提供了一种组合设备系统,包括:第一设备和第二设备,所述第一设备和所述第二设备通讯连接;
所述第一设备用于执行上述第一方面提供的任一种联网方法的步骤;
或者,所述第二设备用于执行上述第二方面提供的任一种联网方法的步骤。
可选地,所述组合设备系统还包括:终端设备和中继设备;
所述第一设备和所述第二设备均与所述终端设备通讯连接;所述终端设备用于执行上述第三方面提供的联网方法的步骤;
所述第一设备和所述第二设备通过所述中继设备实现通讯连接。
可选地,所述第一设备和所述中继设备以有线或无线方式实现通讯连接;
所述中继设备和所述第二设备以蓝牙方式实现通讯连接。
可选地,所述第一设备为衣物处理设备,第二设备为地面清洁设备;
或者,所述第一设备为地面清洁设备,第二设备为衣物处理设备。
(三)有益效果
本公开实施例提供的上述技术方案与现有技术相比具有如下优点:
本公开提供的组合设备的联网方法,应用于组合设备系统中的第一设备,组合设备系统还包括与第一设备通讯连接的第二设备;该组合设备联网方法包括:确定第二设备处于断网状态时,向第二设备发送联网信息;联网信息用于控制第二设备执行联网操作。由此,当第二设备处于断网状态时,与第二设备通讯连接的第一设备向第二设备发送联网信息,第二设备根据联网信息执行联网操作,无需用户对处于断网状态的第二设备进行手动配网。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本公开。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符 合本公开的实施例,并与说明书一起用于解释本公开的原理。
为了更清楚地说明本公开实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,对于本领域普通技术人员而言,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本公开实施例提供的一种组合设备系统的结构示意图;
图2为本公开实施例提供的一种组合设备的联网方法的流程示意图;
图3为本公开实施例提供的另一种组合设备的联网方法的流程示意图;
图4为本公开实施例提供的又一种组合设备的联网方法的流程示意图;
图5为本公开实施例提供的又一种组合设备的联网方法的流程示意图。
具体实施方式
为使本公开实施例的目的、技术方案和优点更加清楚,下面将对本公开实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本公开的一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动的前提下所获得的所有其他实施例,都属于本公开保护的范围。
智能家居是融合了自动化控制系统、计算机网络系统和网络通讯技术于一体的网络化智能化的家居控制系统。智能家居将让用户有更方便的手段来管理家庭设备,比如,通过触摸屏、无线遥控器、电话、互联网或者语音识别控制家用设备,更可以执行场景操作,使多个设备形成联动;另一方面,智能家居内的各种设备相互间可以通讯,不需要用户指挥也能根据不同的状态互动运行,从而给用户带来最大程度的高效、便利、舒适与安全。用户能够远程控制智能家居内智能设备的前提是该智能家电设备必须处于联网状态,若智能设备发生断网, 其就无法使用网络,不能接收用户端发送的控制指令,此时用户必须对其进行手动配网。
为了解决上述技术问题,本公开实施例提供了一种组合设备的联网方法,当第二设备处于断网状态时,与第二设备通讯连接的第一设备向第二设备发送联网信息,第二设备根据联网信息执行联网操作,与对应的联网设备连接,无需用户对处于断网状态的第二设备进行手动配网。
下面结合图1-图5,对本公开实施例提供的组合设备的联网方法及组合设备系统进行示例性说明。
图1为本公开实施例提供的一种组合设备系统的结构示意图。参照图1,该组合设备系统100包括:第一设备101和第二设备102,第一设备101和第二设备102通讯连接。
其中,第一设备101和第二设备102可通过有线方式实现通讯连接,还可以通过近距离通讯技术实现通讯连接,例如无线、蓝牙和紫蜂(ZigBee)等,在此不限定。
在一些实施例中,如图1所示,组合设备系统还包括终端设备103,第一设备101和第二设备102均与终端设备103通讯连接。
本实施例中,终端设备103包括但不限于手机、平板、电脑、触控面板、遥控器或者语音识别设备,还包括本领域技术人员可知的具备通讯和控制功能的终端设备,在此不限定。
本实施例中,组合设备系统100包括至少两个设备,将至少两个设备组合使用,以获得更好的用户体验;例如,洗衣机和扫地机组合使用,将洗衣机放置在扫地机基站的上方,提高了空间利用率,而且扫地机还可以与洗衣机共用进水管路和排水管路,简化了设备结构,有利于实现设备小型化。本公开实施例对设备的类型不作限定,设备还可以是本领域技术人员可知的所有具备功能的智能设备。
需要说明的是,本公开实施例对组合设备系统中的设备数量和设备类型不作限定,设备数量还可以是三个或者更多个,多个设备的类 型可以相同,也可以不同,例如,在洗衣房场景中,组合设备系统包括多台洗衣机,还包括多台烘干机,这些设备与同一个终端设备通讯连接,用户可在终端设备上进行操作实现对各设备的监管和控制。
本实施例中,第一设备101和第二设备102均需要与联网设备(例如路由器)连接后才具有联网功能,第一设备101和第二设备102经配置绑定后与终端设备103建立无线通讯连接;当其中一个设备处于断网状态时,该设备就不能与终端设备103进行通讯。
示例性地,正常情况下,第一设备101和第二设备102分别与联网设备(例如路由器)连接,后续经配置绑定操作后,第一设备101和第二设备102与终端设备103建立通讯连接,从而能够以无线方式与终端设备103进行数据交互或信号传输。例如,将智能家电设备与手机进行配置绑定后,用户可在手机上监管或控制与其绑定的智能家电设备,为用户提供更好的便利性服务和科技体验感。
示例性地,如图2所示,为本公开实施例提供的一种组合设备的联网方法的流程示意图。参照图2,假设第二设备处于断网状态,可采用如下两种方法实现第二设备的重新联网:一是由第一设备(处于联网状态)确定第二设备处于断网状态,向第二设备发送联网信息;第二设备接收联网信息,并根据联网信息执行联网操作,与对应的联网设备进行联网;执行联网操作后,第二设备向第一设备反馈联网结果;第一设备接收联网结果,若联网成功,则该联网方法结束,若联网失败,则返回执行向第二设备发送联网信息的步骤。二是由终端设备确定第二设备处于断网状态,向第一设备(处于联网状态)发送重新联网指令;第一设备接收终端设备发送的重新联网指令,向第二设备(处于断网状态)发送联网信息,后续步骤与前一种方法相同,在此不再赘述。如此,不需要用户对处于断网状态的设备进行手动配网,提升了用户体验。
需要说明的是,还可以通过用户在终端设备上进行操作来触发第二设备重新联网,响应于用户操作,终端设备向第一设备发送重新联 网指令。
在一些实施例中,组合设备系统还包括中继设备,第一设备和第二设备通过中继设备实现通讯连接。
其中,第一设备和第二设备均与中继设备通讯连接,中继设备的作用是接收第一设备和第二设备发送的信息,并将接收信息转发给另一方,如此,第一设备和第二设备通过中继设备实现双向通讯;通讯路径包括:第一设备——中继设备——第二设备,以及第二设备——中继设备——第一设备。
在一些实施例中,第一设备和中继设备以有线或无线方式实现通讯连接;中继设备和第二设备以蓝牙方式实现通讯连接。
示例性地,以组合使用的洗衣机和扫地机为例,洗衣机对应于第一设备,扫地机本体对应于第二设备,扫地机基站对应于中继设备,洗衣机与扫地机基站以有线或无线方式实现通讯连接,扫地机基站与扫地机本体以蓝牙方式实现通讯连接,扫地机的基站和扫地机本体能够自动配对,即使用户对扫地机本体进行恢复出厂设置,扫地机本体仍能与扫地机基站通过蓝牙连接,从而处于断网状态的扫地机本体仍能够与洗衣机进行通讯。
在其他实施方式中,第一设备和第二设备还可通过蓝牙、紫蜂或近场通信(Near Field Communication,NFC)方式进行通讯,第二设备和中继设备还可通过近场通信方式进行通讯,在此不限定。
在一些实施例中,第一设备为衣物处理设备,第二设备为地面清洁设备;或者,第一设备为地面清洁设备,第二设备为衣物处理设备。
其中,衣物处理设备包括洗衣机、干衣机、洗干一体机、衣物护理机以及本领域技术人员可知的所有衣物护理设备,地面清洁设备包括扫地机、洗地机、吸尘器以及本领域技术人员可知的所有地面清洁设备,在此不限定。
在上述实施方式的基础上,本公开实施例还提供了一种组合设备的联网方法,该联网方法应用于组合设备系统中处于联网状态的第一 设备,组合设备系统还包括与第一设备通讯连接的第二设备。如图3所示,该联网方法可包括如下步骤:
S300、确定第二设备处于断网状态,向第二设备发送联网信息;联网信息用于控制第二设备执行联网操作。
由于第一设备与第二设备是通过有线或蓝牙方式实现通讯,即使第二设备处于断网状态,二者仍能进行通讯,但第二设备不能与终端设备进行无线通讯。确定第二设备处于断网状态,控制处于联网状态的第一设备向第二设备发送联网信息,然后控制第二设备根据联网信息执行联网操作;执行联网操作是指第二设备根据联网信息与对应的联网设备建立连接,不需要用户进行手动配网。
示例性,当用户对组合设备系统中的一个设备进行恢复出厂设置,该设备上存储的联网信息被删除,导致该设备处于断网状态,该设备即为第二设备,组合设备系统中的其他设备仍处于联网状态,即为第一设备。针对这种情况,恢复出厂设置的第二设备仍能与第一设备以有线或蓝牙方式进行通讯,可控制第一设备向第二设备发送联网信息,第二设备根据联网信息与对应的联网设备建立通讯连接,不需要用户进行手动配网,提升了用户体验。
示例性地,当联网设备的联网名称和联网密码发生变更时,组合设备系统中所有设备均无法连接联网设备,即所有设备均处于断网状态。针对这种情况,用户仅需要对其中一个设备进行手动配网,待该设备联网后,控制该设备向处于断网状态的其他设备发送更新后的联网信息,其他设备根据更新后的联网信息与对应的联网设备建立通讯连接,不需要用户对所有设备进行手动配网,大大节省了人力,提升了用户体验。
示例性地,当组合设备系统中增加新的设备时,将新增设备通过蓝牙或有线方式与组合设备系统中原有设备连接,从而新增设备能够与原有设备进行通讯;此时新增设备还没有与联网设备连接,处于断网状态,可控制处于联网状态的原有设备向新增设备发送联网信息, 新增设备根据联网信息与对应的无线联网设备建立通讯连接,不需要用户进行手动配网,提升了用户体验。
本公开实施例提供的组合设备的联网方法,该联网方法应用于组合设备系统中处于联网状态的第一设备,当第二设备处于断网状态时,与第二设备通讯连接的第一设备向第二设备发送联网信息,第二设备根据联网信息执行联网操作,无需用户对处于断网状态的第二设备进行手动配网,提升了用户体验。
在一些实施例中,该联网方法还包括如下步骤:
接收第二设备反馈的联网结果;
确定联网结果为第二设备联网失败,再次向第二设备发送联网信息,直至联网结果为第二设备联网成功。
本实施例中,若联网结果为第二设备联网失败,则继续向第二设备发送联网信息,直至联网结果为二设备联网成功。如此确保第二设备重新联网,使其能与终端设备进行数据交互或信号传输。
在其他实施方式中,还可以在执行向第二设备发送联网信息的步骤达到预设次数后,控制第一设备向终端设备发送提示消息,提醒用户第二设备处于断网状态。
在一些实施例中,联网信息至少包括联网名称和联网密码;联网信息用于控制第二设备通过联网密码连接到联网名称对应的联网设备,以实现所述第二设备联网。
示例性地,联网设备为路由器,第一设备将其与路由器的联网信息发送给第二设备;第二设备接收到联网信息后,向与联网名称对应的路由器发送联网请求和联网密码;路由器接收联网请求和联网密码,并将联网密码与预设密码进行验证,确定联网密码与预设密码相同,通过联网请求,允许第二设备与路由器建立连接,从而实现第二设备的联网。
在一些实施例中,如图4所示,为本公开实施例提供的又一种组合设备的联网方法的流程示意图。参考图4,在向第二设备发送联网信 息之前,该联网方法还包括如下步骤:
S410、接收终端设备发送的重新联网指令;重新联网指令用于控制第一设备执行向第二设备发送联网信息。
本实施例中,确定第二设备处于状态是由终端设备执行的,根据各设备与终端设备的通讯状态判定是否存在处于断网状态的第二设备,若存在,则控制终端设备向第一设备发送重新联网指令;第一设备接收到重新联网指令后,执行S420,即向第二设备发送联网信息,最终实现第二设备重新联网,不需要用户手动配网。
在其他实施方式,用户对第二设备进行恢复出厂设置后,还可以通过在终端设备上操作触发第二设备重新联网,响应于上述操作,终端设备向第一设备发送重新联网指令。
在一些实施例中,组合设备系统还包括终端设备,第一设备与终端设备通讯连接;该联网方法还包括如下步骤:
向第二设备发送配置绑定信息;配置绑定信息为第一设备与终端设备的连接信息,配置绑定信息用于控制第二设备执行配置绑定操作,以实现第二设备与终端设备通讯连接。
本实施例中,若用户对第二设备进行恢复出厂设置,第二设备上存储的联网信息和配置绑定信息均被删除,控制第一设备向第二设备发送联网信息,同时还发送第一设备的配置绑定信息;控制第二设备根据联网信息执行联网操作,与对应的联网设备建立通讯连接,再控制联网后的第二设备根据第一设备的配置绑定信息,与对应的终端设备建立通讯连接,从而实现第二设备与终端设备通讯连接,第二设备与终端设备之间可进行数据交互或信号传输。
在一些实施例中,组合设备系统还包括中继设备,第一设备和第二设备通过中继设备实现通讯连接;该联网方法还包括:
确定第二设备处于断网状态,向中继设备发送联网信息和/或配置绑定信息,以由中继设备将联网信息和/或配置绑定信息转发给第二设备;
以及,接收由中继设备转发的联网结果。
其中,中继设备所起的作用是将第一设备发送的联网信息和/或配置绑定信息转发给第二设备,以及将第二设备发送的联网结果转发给第一设备,实现第一设备和第二设备的双向通讯。
在上述实施方式的基础上,本公开实施例还提供了一种组合设备的联网方法,该联网方法应用于组合设备系统中处于断网状态的第二设备,组合设备系统还包括与第二设备通讯连接的第一设备。如图5所示,该联网方法可包括如下步骤:
S510、接收第一设备发送的联网信息,并根据联网信息执行联网操作。
本实施例中,即使第二设备处于断网状态,第一设备和第二设备之间的通讯链路不会受到影响,二者仍能进行正常通讯,但处于断网状态的第二设备不能与终端设备进行无线通讯。第二设备接收到第一设备发送的联网信息后,根据联网信息与对应的联网设备进行联网,不需要用户对处于断网状态的第二设备手动配网,提升了用户体验。
在一些实施例中,如图5所示,该联网方法还包括如下步骤:
S520、向第一设备反馈联网结果;联网结果包括第二设备联网失败和/或第二设备联网成功。
其中,第二设备执行联网操作后,向第一设备发送联网结果,若联网结果为第二设备联网失败,表明第二设备仍处于断网状态,则控制第一设备继续向第二设备发送联网信息;若联网结果为第二设备联网成功,表明第二设备处于联网状态,流程结束。
在一些实施例中,联网信息至少包括联网名称和联网密码;“根据联网信息执行联网操作”包括:
向与联网名称对应的联网设备发送联网请求以及联网密码,以由联网设备对联网密码进行验证。
具体地,第二设备接收到第一设备发送的联网信息后,向与联网名称对应的联网设备发送联网请求以及联网密码,以由该联网设备对 联网密码进行验证;验证过程为:将联网密码与预设密码进行比较,确定联网密码与预设密码相同,则通过联网请求,允许第二设备连接该联网设备,从而实现第二设备的联网。
在一些实施例中,组合设备系统还包括终端设备,第一设备与终端设备通讯连接;该联网方法还包括如下步骤:
接收第一设备发送的配置绑定信息,并根据配置绑定信息执行配置联网操作,以实现第二设备与终端设备通讯连接;
其中,配置绑定信息为第一设备与终端设备的连接信息。
本实施例中,若用户对第二设备进行恢复出厂设置,第二设备上存储的联网信息和配置绑定信息均被删除,第一设备同时向第二设备发送联网信息和配置绑定信息,第二设备根据联网信息执行联网操作,与对应的联网设备建立通讯连接,再根据第一设备的配置绑定信息,与对应的终端设备建立通讯连接,从而实现第二设备与终端设备之间进行数据交互或信号传输。
在一些实施例中,组合设备系统还包括中继设备,第一设备和第二设备通过中继设备实现通讯连接;该联网方法还包括:
接收由中继设备转发的联网信息和/或配置绑定信息;
以及,向中继设备反馈联网结果,以由中继设备将联网结果转发给第一设备。
其中,中继设备所起的作用是将第一设备发送的联网信息和/或配置绑定信息转发给第二设备,以及将第二设备发送的联网结果转发给第一设备,实现第一设备和第二设备的双向通讯。
在上述实施方式的基础上,本公开实施例还提供了一种组合设备的联网方法,该联网方法应用于组合设备系统中的终端设备,组合设备系统还包括第一设备和第二设备,第一设备和第二设备通讯连接,第一设备和第二设备分别与终端设备通讯连接;该联网方法可包括如下步骤:
确定第二设备处于断网状态,向第一设备发送重新联网指令;重 新联网指令用于控制第一设备执行向第二设备发送联网信息。
本实施例中,确定第二设备处于断网状态的方法:一是用户对第二设备进行恢复出厂设置后,在终端设备上进行操作触发第二设备重新联网,响应于用户操作,终端设备向第一设备发送重新联网指令;二是由终端设备自动识别,根据各设备与终端设备的通讯状态判定是否存在处于断网状态的第二设备,若存在,则向第一设备发送重新联网指令;最终实现第二设备重新联网,不需要用户手动配网。
具体地,确定第二设备处于断网状态,控制终端设备向处于联网状态的第一设备发送重新联网指令,以控制第一设备接收到重新联网指令后,向处于断网状态的第二设备发送联网信息。
示例性地,当用户对组合设备系统中的一个设备进行恢复出厂设置,该设备上存储的联网信息被删除,导致该设备无法联网,该设备即为第二设备。针对这种情况,用户可在终端设备上操作而触发向处于联网状态的第一设备发送重新联网指令,第一设备接收到重新联网指令后,向第二设备发送联网信息,第二设备接收到联网信息后执行联网操作,不与需要用户对第二设备进行手动配网;用户还可以不进行任何操作,终端设备根据其与各设备的通讯状态,判定系统中是否存在处于断网状态的第二设备,若存在,则控制终端设备向处于联网状态的第一设备发送重新联网指令,后续步骤相同,在此不再赘述。
在其他实施方式中,组合设备不仅限于衣物处理设备和地面清洁设备,还可以选用其他类型的智能家电设备,例如,家庭影院系统,其包括电视、话筒、音响以及灯光等智能设备。组合设备还可以应用于办公室场景,例如,将电脑、打印机和投影仪等设备组合使用。
需要说明的是,在本文中,诸如“第一”和“第二”等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅 包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
以上所述仅是本公开的具体实施方式,使本领域技术人员能够理解或实现本公开。对这些实施例的多种修改对本领域的技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本公开的精神或范围的情况下,在其它实施例中实现。因此,本公开将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。
工业实用性
本公开提供的组合设备的联网方法及组合设备系统,该联网方法应用于组合设备系统中的第一设备,组合设备系统还包括与第一设备通讯连接的第二设备;该组合设备的联网方法包括:确定第二设备处于断网状态时,向第二设备发送联网信息;联网信息用于控制第二设备执行联网操作。由此,当第二设备处于断网状态时,与第二设备通讯连接的第一设备向第二设备发送联网信息,第二设备根据联网信息执行联网操作,无需用户对处于断网状态的第一二设备进行手动配网,提高了组合设备系统的智能化程度,有利于提升用户体验,具有很强的工业实用性。

Claims (16)

  1. 一种组合设备的联网方法,其中,所述联网方法应用于组合设备系统中处于联网状态的第一设备,所述组合设备系统还包括与所述第一设备通讯连接的第二设备;所述联网方法包括:
    确定所述第二设备处于断网状态,向所述第二设备发送联网信息;所述联网信息用于控制所述第二设备执行联网操作。
  2. 根据权利要求1所述的联网方法,其中,还包括:
    接收所述第二设备反馈的联网结果;
    确定所述联网结果为第二设备联网失败,再次向所述第二设备发送联网信息,直至所述联网结果为第二设备联网成功。
  3. 根据权利要求1或2所述的联网方法,其中,所述联网信息至少包括联网名称和联网密码,所述联网信息用于控制所述第二设备通过所述联网密码连接到与所述联网名称对应的联网设备,以实现所述第二设备联网。
  4. 根据权利要求3所述的联网方法,其中,在所述向所述第二设备发送联网信息之前,所述联网方法还包括:
    接收重新联网指令;所述重新联网指令用于控制所述第一设备执行向所述第二设备发送联网信息。
  5. 根据权利要求4所述的联网方法,其中,所述组合设备系统还包括终端设备,所述第一设备与所述终端设备通讯连接;所述联网方法还包括:
    向所述第二设备发送配置绑定信息;所述配置绑定信息为所述第一设备与所述终端设备的连接信息,所述配置绑定信息用于控制所述第二设备执行配置绑定操作,以实现所述第二设备与所述终端设备通讯连接。
  6. 根据权利要求5所述的联网方法,其中,所述组合设备系统还包括中继设备,所述第一设备和所述第二设备通过中继设备实现通讯 连接;所述联网方法还包括:
    确定所述第二设备处于断网状态,向所述中继设备发送联网信息和/或配置绑定信息,以由所述中继设备将所述联网信息和/或所述配置绑定信息转发给所述第二设备;
    以及,接收由所述中继设备转发的联网结果。
  7. 一种组合设备的联网方法,其中,所述联网方法应用于组合设备系统中处于断网状态的第二设备,所述组合设备系统还包括与所述第二设备通讯连接的第一设备;所述联网方法包括:
    接收所述第一设备发送的联网信息,并根据所述联网信息执行联网操作。
  8. 根据权利要求7所述的联网方法,其中,还包括:
    向所述第一设备反馈联网结果;所述联网结果包括所述第二设备联网失败和/或所述第二设备联网成功。
  9. 根据权利要求7或8所述的联网方法,其中,所述联网信息至少包括联网名称和联网密码;所述根据所述联网信息执行联网操作包括:
    向与所述联网名称对应的联网设备发送联网请求以及联网密码,以由所述联网设备对所述联网密码进行验证。
  10. 根据权利要求9所述的联网方法,其中,所述组合设备系统还包括终端设备,所述第一设备与所述终端设备通讯连接;所述联网方法还包括:
    接收所述第一设备发送的配置绑定信息,并根据所述配置绑定信息执行配置联网操作,以实现所述第二设备与所述终端设备通讯连接;所述配置绑定信息为所述第一设备与所述终端设备的连接信息。
  11. 根据权利要求10所述的联网方法,其中,所述组合设备系统还包括中继设备,所述第一设备和所述第二设备通过中继设备实现通讯连接;所述联网方法还包括:
    接收由所述中继设备转发的所述联网信息和/或所述配置绑定信息;
    以及,向所述中继设备反馈联网结果,以由所述中继设备将所述联网结果转发给所述第一设备。
  12. 一种组合设备的联网方法,其中,所述联网方法应用于组合设备系统中的终端设备,所述组合设备系统还包括第一设备和第二设备,所述第一设备和所述第二设备通讯连接,所述第一设备和所述第二设备均与所述终端设备通讯连接;所述联网方法包括:
    确定第二设备处于断网状态,向第一设备发送重新联网指令;所述重新联网指令用于控制所述第一设备执行向所述第二设备发送联网信息。
  13. 一种组合设备系统,其中,包括:第一设备和第二设备,所述第一设备和所述第二设备通讯连接;
    所述第一设备用于执行如权利要求1-6任一项所述的联网方法的步骤;
    或者,所述第二设备用于执行如权利要求7-11任一项所述的联网方法的步骤。
  14. 根据权利要求13所述的组合设备系统,其中,还包括:终端设备和中继设备;
    所述第一设备和所述第二设备均与所述终端设备通讯连接;所述终端设备用于执行如权利要求12所述的联网方法的步骤;
    所述第一设备和所述第二设备通过所述中继设备实现通讯连接。
  15. 根据权利要求14所述的组合设备系统,其中,
    所述第一设备和所述中继设备以有线或无线方式实现通讯连接;
    所述中继设备和所述第二设备以蓝牙方式实现通讯连接。
  16. 根据权利要求15所述的组合设备系统,其中,所述第一设备为衣物处理设备,第二设备为地面清洁设备;
    或者,所述第一设备为地面清洁设备,第二设备为衣物处理设备。
PCT/CN2024/094990 2023-03-30 2024-05-23 组合设备的联网方法及组合设备系统 Ceased WO2024199549A1 (zh)

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