WO2020168569A1 - 智能设备配网方法、装置、电子设备及存储介质 - Google Patents

智能设备配网方法、装置、电子设备及存储介质 Download PDF

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Publication number
WO2020168569A1
WO2020168569A1 PCT/CN2019/075945 CN2019075945W WO2020168569A1 WO 2020168569 A1 WO2020168569 A1 WO 2020168569A1 CN 2019075945 W CN2019075945 W CN 2019075945W WO 2020168569 A1 WO2020168569 A1 WO 2020168569A1
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Prior art keywords
smart device
network
information
quick application
identification information
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PCT/CN2019/075945
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English (en)
French (fr)
Inventor
成云峰
Original Assignee
深圳市欢太科技有限公司
Oppo广东移动通信有限公司
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.)
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Application filed by 深圳市欢太科技有限公司, Oppo广东移动通信有限公司 filed Critical 深圳市欢太科技有限公司
Priority to CN201980077355.1A priority Critical patent/CN113169991A/zh
Priority to PCT/CN2019/075945 priority patent/WO2020168569A1/zh
Publication of WO2020168569A1 publication Critical patent/WO2020168569A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications

Definitions

  • This application relates to the field of smart home technology, and specifically to a smart device network distribution method, device, electronic device and storage medium.
  • Smart devices (such as smart lighting equipment, smart air conditioners, refrigerators, etc.) need to be connected to the network when in use, so that smart terminals such as mobile phones can control them.
  • smart terminals such as mobile phones.
  • smart devices With the rapid popularization of smart devices, there are more and more types of smart devices, and the ways for smart devices to connect to the network are different. As a result, users need to download multiple APPs for individual control, which is extremely inconvenient.
  • the purpose of this application is to provide a network distribution method, device, electronic device, and storage medium for mobile smart devices to improve network distribution efficiency and improve user experience.
  • an embodiment of the present application provides a method for network configuration of a smart device, including: obtaining identification information of the smart device; confirming the quick application corresponding to the smart device according to the identification information; activating the device configuration interface of the quick application.
  • the configuration interface includes configuration guidance information; in response to the user's operation according to the configuration guidance information, the smart device is networked.
  • an embodiment of the present application provides a smart device network distribution device, including an acquisition module, a quick application confirmation module, a calling module, and an execution module.
  • the obtaining module is used to obtain identification information of the smart device.
  • the quick application confirmation module is used to confirm the quick application corresponding to the smart device according to the identification information.
  • the calling module is used to call up the device configuration interface of the quick application, and the configuration interface includes configuration guidance information.
  • the execution module is used to configure the network of the smart device in response to the operation performed by the user according to the configuration guide information.
  • an embodiment of the present application provides an electronic device, including a memory and a processor, the memory is coupled to the processor; the memory stores instructions, and when the instructions are executed by the processor, the processor performs the following operations: Identification information; confirm the quick application corresponding to the smart device according to the identification information; tune up the device configuration interface of the quick application, and the configuration interface includes configuration guidance information; in response to the operation of the user according to the configuration guidance information, the smart device is networked.
  • an embodiment of the present application provides a computer readable storage medium.
  • a computer readable storage medium stores program codes, and the program codes can be invoked by a processor to execute the above methods.
  • the smart device network distribution method, device, electronic device, and storage medium provided in this application are used to obtain the identification information of the smart device to confirm the corresponding quick application, and obtain the corresponding device configuration through the quick application. It also instructs the user to perform network configuration operations. Users do not need to download a separate APP to configure the smart device, which can reduce the space occupied by the APP corresponding to various devices and shorten the network configuration time.
  • FIG. 1 shows a schematic diagram of the architecture of the Internet of Things proposed in an embodiment of the present application
  • FIG. 2 shows a schematic diagram of another architecture of the Internet of Things proposed in an embodiment of the present application
  • FIG. 3 shows a schematic diagram of yet another architecture of the Internet of Things proposed by an embodiment of the present application
  • FIG. 4 shows a schematic diagram of a fast application engine architecture proposed by an embodiment of the present application
  • FIG. 5 shows a schematic diagram of a communication mode between a client and a server proposed by an embodiment of the present application
  • FIG. 6 shows a schematic diagram of the operating environment of the data processing method proposed in an embodiment of the present application
  • FIG. 7 is a flowchart of a smart device network distribution method provided by the first embodiment of the present application.
  • FIG. 8 is a schematic diagram of a device configuration interface in the smart device network distribution method provided by the first embodiment of the present application.
  • FIG. 9 is a schematic diagram of a configuration guide information in the smart device network distribution method provided by the first embodiment of the present application.
  • FIG. 10 is a schematic diagram of another configuration guide information in the smart device network distribution method provided by the first embodiment of the present application.
  • FIG. 11 is a schematic diagram of yet another configuration guide information in the smart device network distribution method provided by the first embodiment of the present application.
  • Fig. 12 is a flowchart of a smart device network distribution method provided by the second embodiment of the present application.
  • FIG. 13 is a schematic diagram of a kind of prompt information in the smart device network distribution method provided by the second embodiment of the present application.
  • FIG. 14 is a schematic diagram of another prompt information in the smart device network distribution method provided by the second embodiment of the present application.
  • 16 is a schematic diagram of a kind of prompt information in the smart device network distribution method provided by the third embodiment of the present application.
  • step S360 is a flowchart of step S360 in the smart device network distribution method provided by the third embodiment of the present application.
  • 19 is a structural block diagram of the acquisition module in the intelligent network distribution device provided by the fourth embodiment of the present application.
  • 20 is a structural block diagram of an execution module in the intelligent network distribution device provided by the fourth embodiment of the present application.
  • 21 is a structural block diagram of a network connection establishment module in the intelligent network distribution device provided by the fourth embodiment of the present application.
  • 22 is another structural block diagram of the intelligent network distribution device provided by the fourth embodiment of the present application.
  • FIG. 23 is a structural block diagram of an electronic device provided by a fifth embodiment of the present application.
  • FIG. 24 is a structural block diagram of a storage medium provided by a sixth embodiment of the present application.
  • the Internet of Things is a network concept that extends and expands its user end to any item and item for information exchange and communication based on the "Internet concept".
  • IoT technology With the development of IoT technology, some scenarios can be configured in the IoT system. For the configuration scenario, multiple controlled devices may be involved, and multiple controlled devices have a certain linkage relationship and can work together.
  • the controlled devices can be projectors, projection screens, smart lights, smart sockets, human sensors, door and window sensors, wireless switches, air conditioners, smoke alarms, smart curtain motors, and mobile terminals such as air purifiers and smart speakers.
  • the mobile terminal 100 that plays a control role can implement data interaction with the controlled device 99 by directly establishing a wireless connection with the router 90.
  • the mobile terminal 100 can also realize data interaction with the controlled device 99 through the data link between the cloud 91 and the router 90 after establishing a connection with the cloud 91.
  • the mobile terminal 100 directly establishes data interaction with the first cloud 91a, and then implements the mobile terminal 100 based on the data interaction between the first cloud 91a and the second cloud 91b.
  • Data interaction with the second cloud 91b, and then the second cloud 91b can perform data interaction with the controlled device 99, the mobile terminal 100 further realizes the data interaction with the controlled device 99.
  • the controlled device 99 may establish a wireless connection with the router 90 through the gateway 98.
  • the data interaction may include the mobile terminal sending a control instruction to the controlled device, and may also include the controlled device returning status information to the mobile terminal or returning the instruction execution result.
  • the data interaction between the mobile terminal and the controlled device can be triggered by a client installed in the mobile terminal.
  • the fast application is a new application form based on the hardware platform of the terminal device. It does not need to be installed, it is click-to-use, and it has the original application experience (performance, system integration, interaction, etc.).
  • the structure diagram of the fast application engine, the front-end design of fast application draws on and integrates the design ideas of mainstream front-end frameworks (Vue, React, etc.): build applications in a componentized way, with data binding as the core
  • the MVVM design mode uses V-DOM to improve performance, while choosing a concise and clear Vue-like template.
  • each manufacturer will develop its own SDK plug-in for the client in the mobile terminal to call.
  • the client loads the manufacturer's SDK plug-in, it can call the loaded SDK plug-in, and then interact with the manufacturer's server through the SDK plug-in.
  • the client 110 shown in FIG. 5 is loaded with the SDK plug-in 111 of manufacturer A and the SDK plug-in 112 of manufacturer B.
  • the client 110 can communicate with manufacturer A by calling the SDK plug-in of manufacturer A.
  • the server 210 of manufacturer B performs data interaction, and the client 110 can interact with the server 220 of manufacturer B by calling the SDK plug-in of manufacturer B.
  • the smart device When the smart device is installed and used for the first time, the smart device needs to be configured with the network to enable the smart device to enter the controlled state.
  • the inventor found that when the smart device produced by each manufacturer performs the network configuration operation, the user still needs to download the smart device The corresponding APP of the manufacturer is operated. Because there are many smart device manufacturers, when the smart devices used in the home are from different manufacturers, multiple APPs need to be downloaded, which will take up a lot of storage space. Therefore, the inventor proposes the smart device network distribution method, device, electronic device, and storage medium in the embodiments of the present application. The following first introduces the application environment of the embodiments of the present application in conjunction with the drawings.
  • a fast application and a client 110 are running.
  • the fast application runs on the fast application engine, and an extended interface 97 provided by the client is set in the fast application engine.
  • the client 110 is provided with an extension interface 96 that communicates with the extension interface 97.
  • the client 110 can call SDK plug-ins of various manufacturers through an extended interface.
  • the SDK plug-in 111 of manufacturer A, the SDK plug-in 112 of manufacturer B, and the SDK plug-in 113 of manufacturer C in the figure can be called.
  • the data processing instructions triggered in the fast application can be transferred to the extended interface 96 in the client through the extension interface 97 set in the fast application engine, and then the data processing instructions are transmitted to the SDK plug-ins of various manufacturers .
  • the first embodiment of the present invention provides a smart device network distribution method, which is applied to electronic devices to perform network distribution operations of smart devices.
  • Smart devices may include smart lights, smart speakers, air conditioners, refrigerators, various types of robots, TV, windows, door locks, security equipment, etc.
  • the smart device network distribution method is applied to the smart device network distribution device as shown in FIG. 18 and the electronic equipment equipped with the smart device network distribution device.
  • the following will take an electronic device as an example to illustrate the specific process of this embodiment.
  • the foregoing smart device network distribution method may specifically include the following steps:
  • Step S110 Obtain identification information of the smart device.
  • the identification information of a smart device refers to information used to identify a smart device, for example, it may include manufacturer information, model information, or category information of the smart device, so that the smart device can be clearly informed of the manufacturer, category, model and other information.
  • the identification information may be set on the smart device, for example, set on the smart device in the form of a two-dimensional code, barcode, text, graphics, etc.
  • the electronic device obtains the identification information of the smart device by scanning an identification image carrying identification information such as a two-dimensional code.
  • the identification information may also be stored in the smart device in the form of voice or the like.
  • the electronic device recognizes the identification information carried in the voice through the voice assistant.
  • the identification information of the smart device can also be obtained by receiving input information.
  • the user can directly input the corresponding manufacturer or model into the electronic device.
  • the smart device can actively send its identification information. For example, the smart device sends its identification information to the outside through a wireless signal, and the identification information is obtained when it is captured.
  • the identification information can also be actively obtained by the electronic device, such as scanning a two-dimensional code.
  • Step S120 Confirm the quick application corresponding to the smart device according to the identification information.
  • fast application refers to a mobile APP that can be used without downloading and installing, which is developed based on a specific programming language.
  • the package name of the quick app can be matched according to the manufacturer information, model information, or category information in the identification information, and the corresponding quick app can be determined according to the matching result.
  • the quick apps corresponding to smart devices of various manufacturers or models can be pre-stored locally, and after the identification information of the smart device is obtained, the package name is matched with the pre-stored quick apps, and the determination is made according to the matching result The corresponding fast application.
  • Step S130 Call up the device configuration interface of the quick application.
  • the device configuration interface includes configuration guidance information.
  • the device configuration interface is an operation interface that refers to the network configuration operation of various smart devices. As shown in Figure 8, the interface contains configuration guidance information for the smart device to perform network configuration operations for users to follow the guidelines. Information for network distribution operations. After the device configuration interface is called up, it can be directly displayed to the user.
  • the configuration guide information may include an operation guide interface as shown in FIG. 9, an information input interface as shown in FIG. 10, a configuration progress interface as shown in FIG. 11, and so on.
  • the configuration guide information is used to guide the user to complete the network configuration process.
  • Step S140 In response to the operation performed by the user according to the configuration guidance information, the smart device is networked.
  • the electronic device allocates the network to the smart device according to the operation performed by the user in accordance with the configuration guide information.
  • the smart device can be configured in the following manner: the electronic device responds to the user's operation, and connects with the smart device through Bluetooth, infrared, ZigBee, hotspot, etc., and directly sends the network distribution to the smart device Order to complete the network distribution.
  • the electronic device can send a network distribution instruction to the smart device via a wireless network or a wired network within the current range, so that the smart device completes the network configuration process.
  • the quick application information corresponding to the identification information is determined through the identification information, and then the quick application is mobilized to perform network configuration. It can be applied to various smart devices of different manufacturers or categories or different models. There is no need to download the control APP separately for each smart device. This not only saves the storage space of electronic devices, but also saves users' time during network distribution and improves Distribution network efficiency. And for people who don't use smart devices often, it is more maneuverable and will not be disgusting.
  • FIG. 12 shows a schematic flowchart of a smart device network distribution method provided by the second embodiment of the present application. The following will elaborate on the process shown in FIG. 12, and the method may specifically include the following steps:
  • the network distribution method of the smart device is specifically performed as follows:
  • Step S210 Obtain an identification image of the smart device, and the identification image carries identification information.
  • identification images such as QR codes and barcodes are usually set on the body of the smart device. These identification images are accompanied by manufacturer information, model information, or category information of the smart device.
  • the method for obtaining the identification image may be to activate the camera module of the electronic device to take a photo and scan the identification image.
  • the identification image can be stored locally or uploaded to a server (including but not limited to a manufacturer's server), so that the manufacturer can be notified that the smart device is about to be used, so that the manufacturer can grasp the smart device.
  • a server including but not limited to a manufacturer's server
  • Step S220 Identify the identification information from the identification image.
  • the user can obtain the identification image by scanning, and then identify the corresponding identification information from the identification image.
  • the camera after entering the smart device network configuration interface, the camera can be directly adjusted to scan or photograph the logo image.
  • a prompt message may be displayed when the user performs network configuration, and the prompt message is used to prompt the user to scan the identification image of the smart device body. For example, the prompt message shown in Figure 13 is displayed.
  • Step S230 According to the identification information, query the mapping relationship table between the identification information and the fast application. Among them, the mapping relationship table records the corresponding relationship between the identification information and the fast application.
  • mapping relationship table shown in Table 1 all smart devices corresponding to a single manufacturer have the same fast applications.
  • the mapping relationship table may also be associated with information such as the network distribution type of the smart device, the operation mode of the smart device, the opening mode of the smart device's network distribution mode, operation instructions, and other related information. So that when querying the mapping relationship table, related information can be queried together, which is convenient for users to perform operations, especially to perform network distribution operations. For example, the inquired mode of opening the network distribution mode of the smart device can be presented to the user, so that the user can quickly perform network configuration operations. It is understandable that other smart device related information can also be associated in the mapping relationship table.
  • the mapping relationship table may be pre-stored locally. This saves query time when querying the mapping table.
  • the mapping relationship table may also be pre-stored on the server to save local storage space.
  • the mapping relationship table can be updated regularly, for example: periodically sending an update request to the server, and the server sends the current mapping relationship table to the electronic device after receiving the update request.
  • the server instead of sending an update request to the server, the server periodically sends the mapping relationship table to the electronic device. For example, when the mapping relationship table stored by the server is updated, the updated mapping relationship table is sent to the electronic device. .
  • the electronic device can obtain the update status of the mapping relationship table in real time.
  • step S240 is performed: confirm the quick application corresponding to the identification information according to the quick application information.
  • step S241 if there is no quick application information corresponding to the identification information in the mapping relationship table, no operation may be performed. In this embodiment, if the fast application information corresponding to the identification information does not exist in the mapping relationship table, step S241 is executed.
  • Step S241 Display prompt information.
  • the prompt information may be to prompt the user that the current smart device is not supported. So that the user can download the control APP of the corresponding manufacturer separately for control. In some embodiments, the user can be reminded that the device does not have a corresponding quick application, and the manufacturer's control APP needs to be downloaded separately.
  • the prompt message can be sent out in text, graphics, sound, etc.
  • the prompt information can be in the form shown in Figure 14.
  • the quick application is not stored locally in advance to save local storage space. After confirming the quick application corresponding to the identification information according to the quick application information, step S250 is executed, and the corresponding application is downloaded from the server. The quick application is loaded to call up the device configuration interface corresponding to the quick application.
  • Step S250 Send a download request to the server corresponding to the fast application.
  • the download request is used to request download of the fast application determined in step S240.
  • the server corresponding to the fast application refers to a server storing the fast application, for example, a vendor server.
  • the quick application can also be downloaded from the corresponding vendor server of the electronic device.
  • Step S260 Receive the quick application returned by the server.
  • step S270 is executed after the download is completed.
  • the fast application can be stored locally after being loaded locally. It can also detect the update situation when the user is using the smart device. If the quick app has an update, the updated quick app is loaded and the old quick app is deleted.
  • fast apps can be pre-stored locally, that is, all fast apps are pre-stored locally. During use, fast apps that respond can be directly called up, which can greatly improve fast apps. The transfer rate of the application.
  • search and match can be performed from the pre-stored quick application registrations, and the corresponding quick application can be called up.
  • the pre-stored fast application can be updated regularly. It can be understood that updating the pre-stored quick application includes loading the newly added quick application and updating the loaded quick application to the latest version. For example, the update can be performed in the following way: periodically send a quick application update request to the server, and obtain the update list from the server. If the update list is empty, no update operation will be performed; if the update list is not empty, the update list will be loaded. application.
  • the update list refers to a list containing update information generated by the server.
  • Step S270 Load the quick application, and call up the configuration interface of the quick application.
  • Step S280 In response to the operation performed by the user according to the configuration guidance information, the smart device is networked.
  • the smart device identification information is obtained by acquiring the identification image of the smart device, and then the preset mapping relationship table is used to quickly determine the corresponding fast application according to the identification information.
  • the quick application setting interface guides users to complete the network configuration, improves the efficiency of the network distribution process, and enhances the user experience.
  • FIG. 15 shows a schematic flowchart of a smart device network distribution method provided by the third embodiment of the present application.
  • the process shown in FIG. 3 will be described in detail below, and the method may specifically include the following steps:
  • Step S310 Obtain identification information of the smart device.
  • Step S320 According to the identification information, query the mapping relationship table between the identification information and the fast application.
  • step S330 is performed: confirm the quick application corresponding to the identification information according to the quick application information.
  • step S331 is executed.
  • Step S331 Display prompt information.
  • the prompt information may be to prompt the user that the current smart device is not supported. So that the user can download the control APP of the corresponding manufacturer separately for control.
  • Step S340 Confirm whether the quick application corresponding to the smart device is loaded. That is, confirm whether the quick application corresponding to the smart device has been pre-existed locally.
  • the user may have used the smart device 1 produced by the manufacturer 1.
  • the electronic device has pre-stored the quick application for the smart device 1.
  • Smart device 2 (the quick app corresponding to the smart device 2 is the same as the quick app corresponding to the smart device).
  • the user does not need to load a new quick app. Therefore, it is judged whether there is a quick app corresponding to the smart device locally. Whether the fast application has been pre-existed locally.
  • step S341 is executed.
  • Step S341 Bring up the device configuration interface of the quick application, where the device configuration interface includes configuration guidance information.
  • This setting can greatly shorten the startup time of fast applications, increase the response speed, and improve the efficiency of the distribution network.
  • step S342 is executed.
  • Step S342 Load the quick application, and call up the device configuration interface of the quick application.
  • the way of loading the fast application may be to directly send a download request to the server of the manufacturer corresponding to the smart device, or to send the download request to the server of the manufacturer corresponding to the electronic device.
  • This fast application loading method can avoid pre-storing a large number of fast applications locally, and at the same time prevent the same fast application from being repeatedly loaded in the case of pre-stored fast applications.
  • the network status of the current network where the electronic device is located can be detected.
  • the wireless network signal is not good, it can be switched to 3G, 4G, 5G, etc. for loading. To improve response speed.
  • Step S350 prompt the user to confirm whether the network distribution mode of the smart device is turned on.
  • the network distribution mode of the smart mode means that the smart device enters the network distribution mode state. In this state, the user can control the smart device through electronic devices and other devices to complete the corresponding network distribution operation.
  • a smart device is provided with a physical button or a virtual button, and when the physical button or virtual button is triggered, the smart device will enter the network distribution mode.
  • the prompt can be prompted by displaying prompt information such as text and graphics on the display screen, or by sending out voice information.
  • the prompt information may include a method for starting the network distribution mode of the smart device.
  • the electronic device can send a query request to the manufacturer's server corresponding to the smart device to learn the method for starting the network distribution mode of the smart device.
  • the prompt message can be in the form shown in Figure 16.
  • step S360 is executed.
  • Step S360 Establish a network connection with the smart device.
  • the electronic device can be connected to the network through devices such as routers or gateways in the physical space where the smart device is located. This allows the user to perform corresponding operations on the electronic device to control the smart device to perform corresponding network distribution operations.
  • connection network here refers to the router or gateway within the physical space where the smart device is located.
  • Network information refers to: WiFi name and WiFi password, etc.
  • step S360 specifically includes the following steps:
  • Step S361 Determine whether the smart device is connected to the network.
  • the judging method may be to obtain a list of devices in the router within the current range. If the smart device to be networked is not included in the device list, it is determined that the smart device is not connected to the network. If the smart device already exists in the device list, it is determined that the smart device has been connected to the network.
  • step S362 is executed.
  • Step S362 Obtain the network distribution type of the smart device.
  • the distribution network type refers to the way in which smart devices perform network distribution. Due to the large number of manufacturers of smart devices, the distribution methods are also diverse. For example, some smart devices use wireless communication for network distribution, some devices use AP hotspots for network distribution, and some smart devices use radio broadcasts for network distribution. Wait. Therefore, when sending network information to the only-sayable device, the network distribution type of the smart device is obtained in advance.
  • the distribution network type of the smart device can be associated with the mapping relationship table, that is, the mapping relationship between the identification information and the distribution network type is established in the mapping relationship table.
  • the query The mapping relationship table can be obtained. This method can shorten the query time, especially when the mapping relationship table is pre-stored locally, the query time can be greatly shortened. It is understandable that, in this embodiment, the step of querying the mapping relationship table can be performed synchronously with step S, so that in the process of querying the mapping relationship table once, the quick application corresponding to the identification information and the matching with the smart device are obtained at the same time.
  • the distribution network model is described in the distribution network model.
  • a query request is sent to the corresponding manufacturer server, and the query request is used to obtain the
  • the network distribution mode of the smart device receives the query result returned by the server, the query result includes the network distribution mode of the smart device, and the network distribution mode of the smart device is acquired. This way can avoid the situation that the mapping relationship table is not updated in time and the distribution network mode is wrong.
  • Step S363 The smart device sends network information in a manner corresponding to the network distribution type.
  • the network information is broadcast to the outside, and the network information includes the designated WiFi name and the corresponding WiFi password.
  • the smart device receives the broadcast information and connects to the corresponding WiFi network through the WiFi name and WiFi password contained in the broadcast information. After the smart device receives the network information, it can connect to the network corresponding to the network information, and then establish a network connection with the electronic device.
  • the broadcast information may be played at a specific frequency, so that the smart device can quickly receive the broadcast information.
  • the specific frequency can be set according to the receiving frequency of the broadcast receiving device of the smart device.
  • the receiving frequency of the broadcast receiving device can be obtained from the server of the manufacturer, and the electronic device can send a query request to the server of the manufacturer to obtain the receiving frequency. Or, inquire about the receiving frequency when inquiring about the distribution mode of the smart device. Then adjust the broadcasting frequency of the electronic equipment to match the receiving frequency.
  • the broadcast information when the broadcast information is played, it is played at a varying frequency. For example, play at a continuously changing frequency of 50-140 Hz, so that regardless of the receiving frequency of the smart device, the play information can be received.
  • connection feedback After receiving the connection feedback of the smart device accessing WiFi, stop broadcasting network information. It is understandable that the connection feedback may be that the smart device actively sends to the electronic device, or the electronic device can learn whether the smart device has joined the network by querying the list of devices connected to the WiFi network.
  • the smart device When the smart device’s network configuration type is wireless communication, a wireless connection with the smart device is established, and the network information is sent to the smart device through wireless signals.
  • the network information includes the designated WiFi name and corresponding WiFi password.
  • the wireless communication method can be AP connection, Bluetooth connection, ZigBee, etc. Similarly, after receiving connection feedback, you can stop sending network information.
  • Bluetooth connection Before sending network information through wireless communication, establish a wireless connection with the smart device, and according to the wireless connection type of the smart device, correspondingly start the corresponding connected device and connect with the smart device.
  • the electronic device starts the Bluetooth module, scans the Bluetooth devices in the current range, and selects the Bluetooth device corresponding to the smart device for pairing connection.
  • the Bluetooth device of the smart device is not scanned, or when a weak signal is detected, the user can be reminded to approach the smart device.
  • the Bluetooth pairing After the Bluetooth pairing is successful, the network information is sent, and when the connection feedback is received, the network information is stopped. In some embodiments, after receiving the connection feedback, the Bluetooth device is turned off to save power.
  • connections such as AP connection or ZigBee communication can refer to the above methods.
  • the wireless connection network list of the electronic device may contain multiple routers or gateways.
  • the user can be prompted to select a wireless network, and then the network information of the selected wireless network is sent to the smart device. At this time, the user can select the wireless network with the best signal in the current room to send to the smart device, or select the wireless network with higher security to send the network information to the smart device.
  • the electronic device can directly send the network information of the currently connected wireless network to the smart device, so that the sending time is shorter, and the user does not need to perform a selected operation, thereby further reducing the operation process.
  • the network rate of the wireless network to which the electronic device is currently connected can also be detected. If the network condition of the currently connected wireless network is not good, a reminder can be issued to the user to remind the user whether to switch the wireless network, or When the network is good, the network will be distributed.
  • the electronic device can send the network information of all wireless networks that have a signal response at the current location in the wireless network list to the smart device.
  • the smart device can automatically switch to other wireless networks and then realize network connection with the electronic device.
  • the wireless network with signal response refers to the wireless network that can perform network transmission in the wireless network list in the current area of the electronic device.
  • the wireless network has been connected by an electronic device, and network information of the wireless network is stored. This implementation is suitable for use environments with multiple routers or gateways in the same household.
  • the electronic device when the electronic device sends the network information of multiple wireless networks to the smart device, the multiple wireless networks can be prioritized, and the wireless network currently connected to the electronic device can be set as the highest priority, making the smart device The device connects to the highest priority wireless network.
  • the remaining wireless networks can be sorted according to the strength of the network signal, so that when the smart device is disconnected, it can automatically switch the wireless network to connect according to the sort in the wireless network list.
  • Step S370 Display the configuration guidance information.
  • the user performs corresponding operations according to the configuration guidance information.
  • the displayed configuration guidance information is to enter a user name, enter a password, and enter a fingerprint.
  • Step S380 In response to the user's operation according to the configuration guide information, send a corresponding network configuration instruction to the smart device.
  • the smart device In response to the user's operation, the smart device first sends the corresponding network configuration instruction, which can be sent via the connected WiFi network. In some embodiments, after the network configuration instruction is received, the smart device can send out reception feedback.
  • the smart device network distribution method obtained in this embodiment obtains the identification information of the smart device, and then obtains the corresponding quick application from the mapping relationship table, and sends the network information to the smart device by obtaining the network distribution type of the smart device, and then communicates with it.
  • the smart device establishes a network connection. Then display the configuration guidance information, and respond to the user's operation, send the corresponding network distribution instructions to the smart device to complete the network distribution process.
  • This network distribution process is applicable to various manufacturers or various types and models of smart devices, avoiding the need for users to download a large number of APPs, saving local storage space, and improving network distribution efficiency.
  • a fourth embodiment of the present application provides a smart device network distribution apparatus 400, which includes an acquisition module 410, a quick application confirmation module 420, a calling module 430, and an execution module 440. It can be used to implement the smart device network distribution method in the first embodiment.
  • the obtaining module 410 is used to obtain identification information of the smart device.
  • the identification information may include manufacturer information, category information, or model information of the smart device.
  • the acquisition module 410 in the smart device network distribution apparatus 400 may include an identification image acquisition module 411 and an identification module 412.
  • the identification image acquisition module 411 is used to acquire the identification image of the smart device.
  • the identification image carries identification information.
  • the identification module 412 is configured to identify the identification information from the identification image.
  • the quick application confirmation module 420 is configured to confirm the quick application corresponding to the smart device according to the identification information.
  • the calling module 430 is used to call up the device configuration interface of the quick application, and the configuration interface includes configuration guidance information.
  • the execution module 440 is configured to configure a network for the smart device in response to an operation performed by the user according to the configuration guide information.
  • the execution module 440 may include a network connection establishment module 441, a display module 442, and an instruction sending module 443.
  • the network connection establishment module 441 is used to establish a network connection with the smart device.
  • the display module 442 is used to display configuration guidance information.
  • the instruction sending module 443 is configured to send a network distribution instruction to the smart device in response to the operation of the user according to the configuration guide information.
  • the network connection establishment module 441 may include a network judgment module 4411 and a network information sending module 4412.
  • the network judgment module 4411 is used to judge whether the smart device is connected to the network, and the network information sending module 4412 uses When the smart device is not connected to the network, sending network information to the smart device. In this way, the smart device can establish a network connection with the electronic device through the network corresponding to the network information.
  • the information sending module can send information in a broadcast mode, and can also send information in a wireless communication mode.
  • the smart device network distribution apparatus 400 may further include a quick application judgment module 450 and a loading module 460.
  • the quick application judgment module 450 is used to confirm whether the quick application corresponding to the smart device is loaded.
  • the calling module 430 invokes the device configuration interface of the quick application.
  • the loading module 460 loads the quick application, and then activates the module to activate the device configuration interface of the quick application.
  • the smart device network distribution device 400 may also include a query module 470, a request sending module 480, and a loading module 460.
  • the query module 470 is configured to query the identification information and the fast In the mapping relationship table of the application, when the quick application information corresponding to the identification information exists in the mapping relationship table, the quick application confirmation module 420 can confirm the quick application information corresponding to the identification information.
  • the request sending module 480 is used for the server corresponding to the fast application to send a download request.
  • the loading module 460 is configured to receive the quick application returned by the server, load the quick application, and call up the device configuration interface of the quick application.
  • the smart device network distribution device 400 may further include a network distribution mode prompt module 490.
  • the network distribution mode prompt module 490 is used to prompt the user to confirm whether the network distribution mode of the smart device is turned on.
  • the coupling or direct coupling or communication connection between the displayed or discussed modules may be through some interfaces.
  • the indirect coupling or communication connection of the devices or modules may be electrical, Mechanical or other forms.
  • each functional module in each embodiment of the present application may be integrated into one processing module, or each module may exist alone physically, or two or more modules may be integrated into one module.
  • the above-mentioned integrated modules can be implemented in the form of hardware or software functional modules.
  • the fifth embodiment of the present application also provides another electronic device 100 that can execute the foregoing smart device network distribution method.
  • the electronic device 100 includes one or more (only one shown in the figure) processor 302, memory 304, network module 306, camera module 310, and screen 312 coupled to each other.
  • the memory 304 stores a program that can execute the content in the foregoing embodiments, and the processor 302 can execute the program stored in the memory 304.
  • the processor 302 may include one or more processing cores.
  • the processor 302 uses various interfaces and lines to connect various parts of the entire electronic device 100, and executes by running or executing instructions, programs, code sets, or instruction sets stored in the memory 304, and calling data stored in the memory 304.
  • Various functions and processing data of the electronic device 100 may use at least one of digital signal processing (Digital Signal Processing, DSP), Field-Programmable Gate Array (Field-Programmable Gate Array, FPGA), and Programmable Logic Array (Programmable Logic Array, PLA).
  • DSP Digital Signal Processing
  • FPGA Field-Programmable Gate Array
  • PLA Programmable Logic Array
  • the processor 302 may integrate one or a combination of a central processing unit (CPU), a graphics processing unit (GPU), a modem, and the like.
  • the CPU mainly processes the operating system, user interface, and application programs; the GPU is used for rendering and drawing of display content; the modem is used for processing wireless communication. It can be understood that the above-mentioned modem may not be integrated into the processor 302, but may be implemented by a communication chip alone.
  • the memory 304 may include random access memory (RAM) or read-only memory (Read-Only Memory).
  • the memory 304 may be used to store instructions, programs, codes, code sets or instruction sets.
  • the memory 304 may include a storage program area and a storage data area, where the storage program area may store instructions for implementing the operating system and instructions for implementing at least one function (such as touch function, sound playback function, image playback function, etc.) , Instructions for implementing the following method embodiments, etc.
  • the data storage area can also store data (such as phone book, audio and video data, chat record data) created by the terminal 100 during use.
  • the network module 306 is used to receive and send electromagnetic waves, realize the mutual conversion between electromagnetic waves and electrical signals, so as to communicate with a communication network or other devices, such as communication with a wireless access point.
  • the network module 306 may include various existing circuit elements for performing these functions, for example, an antenna, a radio frequency transceiver, a digital signal processor, an encryption/decryption chip, a subscriber identity module (SIM) card, a memory, etc. .
  • SIM subscriber identity module
  • the network module 306 can communicate with various networks such as the Internet, an intranet, and a wireless network, or communicate with other devices through a wireless network.
  • the aforementioned wireless network may include a cellular telephone network, a wireless local area network, or a metropolitan area network.
  • the camera module 310 may be used to collect the identification image of the smart device, so that the processor 302 can recognize the identification information from the identification image.
  • FIG. 24 shows a structural block diagram of a computer-readable storage medium according to a sixth embodiment of the present application.
  • the computer-readable medium 800 stores program code, and the program code can be invoked by a processor to execute the method described in the foregoing method embodiment.
  • the computer-readable storage medium 800 may be an electronic memory such as flash memory, EEPROM (Electrically Erasable Programmable Read Only Memory), EPROM, hard disk, or ROM.
  • the computer-readable storage medium 800 includes a non-transitory computer-readable storage medium.
  • the computer-readable storage medium 800 has a storage space for the program code 810 for executing any method steps in the above-mentioned methods. These program codes can be read out from or written into one or more computer program products.
  • the program code 810 may be compressed in a suitable form, for example.

Abstract

本申请实施例提供了一种智能设备配网的方法、装置、电子设备及存储介质,该方法包括获取智能设备的标识信息;根据所述标识信息确认与所述智能设备对应的快应用;调起所述快应用的设备配置界面,所述设备配置界面中包括配置引导信息;响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网。本申请提供的智能设备配网的方法、装置、电子设备及存储介质简化了配网操作,提高了配网效率。

Description

智能设备配网方法、装置、电子设备及存储介质 技术领域
本申请涉及智能家居技术领域,具体涉及一种智能设备配网方法、装置、电子设备及存储介质。
背景技术
智能设备(如智能照明设备、智能空调、冰箱等)在使用时需要接入网络,以使手机等智能终端能够对其进行控制。随着智能设备的快速普及,各种智能设备种类越来越多,智能设备接入网络的方式各不相同,导致用户需要下载多个APP进行单独控制,极不方便。
发明内容
本申请的目的在于提供一种移智能设备配网方法、装置、电子设备及存储介质,以提高配网效率,提升用户体验。
第一方面,本申请实施例提供了一种智能设备配网的方法,包括:获取智能设备的标识信息;根据标识信息确认与智能设备对应的快应用;调起快应用的设备配置界面,设备配置界面中包括配置引导信息;响应于用户根据配置引导信息进行的操作,对智能设备配网。
第二方面,本申请实施例提供了一种智能设备配网装置,包括获取模块、快应用确认模块、调用模块以及执行模块。获取模块用于获取智能设备的标识信息。快应用确认模块用于根据标识信息确认与智能设备对应的快应用。调用模块用于调起快应用的设备配置界面,配置界面中包括配置引导信息。执行模块用于响应于用户根据配置引导信息进行的操作,对智能设备配网。
第三方面,本申请实施例提供了一种电子设备,包括存储器和处理器,存储器与处理器耦合;存储器存储指令,当指令由处理器执行时以使处理器执行以下操作:获取智能设备的标识信息;根据标识信息确认与智能设备对应的快应用;调起快应用的设备配置界面,配置界面中包括配置引导信息;响应于用户根据配置引导信息进行的操作,对智能设备配网。
第四方面,本申请实施例提供了一种计算机可读取存储介质。计算机可读取存储介质中存储有程序代码,程序代码可被处理器调用执行上述的方法。
本申请提供的智能设备配网方法、装置、电子设备及存储介质,在进行配网时,通过获取智能设备的标识信息,确认与之对应的快应用,通过调起快应用获取相应的设备配置界面,并指示用户进行配网操作,用户无需下载单独的APP对智能设备进行配网,可以减少各种设备对应的APP占用的空间同时缩短配网时间。
本申请的这些方面或其他方面在以下实施例的描述中会更加简明易懂。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1示出了本申请实施例提出的一种物联网的架构示意图;
图2示出了本申请实施例提出的另一种物联网的架构示意图;
图3示出了本申请实施例提出的再一种物联网的架构示意图;
图4示出了本申请实施例提出的一种快应用引擎架构的示意图;
图5示出了本申请实施例提出的一种客户端与服务器通信方式的示意图;
图6示出了本申请实施例提出的数据处理方法运行环境示意图;
图7是本申请第一实施例提供的智能设备配网方法的流程图;
图8是本申请第一实施例提供的智能设备配网方法中的一种设备配置界面的示意图;
图9是本申请第一实施例提供的智能设备配网方法中的一种配置引导信息的示意图;
图10是本申请第一实施例提供的智能设备配网方法中的另一种配置引导信息的示意图;
图11是本申请第一实施例提供的智能设备配网方法中的再一种配置引导信息的示意图;
图12是本申请第二实施例提供的智能设备配网方法的流程图;
图13是本申请第二实施例提供的智能设备配网方法中的一种提示信息的示意图;
图14是本申请第二实施例提供的智能设备配网方法中的另一种提示信息的示意图;
图15是本申请第三实施例提供的智能设备配网方法的流程图;
图16是本申请第三实施例提供的智能设备配网方法中的一种提示信息的示意图;
图17是本申请第三实施例提供的智能设备配网方法中步骤S360的流程图;
图18是本申请第四实施例提供的智能配网装置的一种结构框图;
图19是本申请第四实施例提供的智能配网装置中获取模块的一种结构框图;
图20是本申请第四实施例提供的智能配网装置中执行模块的一种结构框图;
图21是本申请第四实施例提供的智能配网装置中网络连接建立模块的一种结构框图;
图22是本申请第四实施例提供的智能配网装置的另一种结构框图;
图23是本申请第五实施例提供的电子设备的结构框图;
图24是本申请第六实施例提供的存储介质的结构框图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
物联网是在“互联网概念”的基础上,将其用户端延伸和扩展到任何物品与物品之间,进行信息交换和通信的一种网络概念。随着物联网技术的发展,在物联网系统中可以配置一些场景。对于配置的场景,可以涉及到多个受控设备,而且多个受控设备之间具有一定的联动关系,能够协同工作。
其中,受控设备可以为投影仪、投屏幕、智能灯、智能插座、人体传感器、门窗传感器、无线开关、空调伴侣、烟雾报警器、智能窗帘电机、以及空气净化器、智能音箱等移动终端。在一种方式中,如图1所示,起控制作用的移动终端100可以通过直接与路由器90建立无线连接的方式实现与受控设备99之间进行数据交互。再者,移动终端100也可以通过与云端91建立连接后,通过云端91与路由器90之间的数据链路实现与受控设备99之间的数据交互。
作为另外一种方式,如图2所示,移动终端100直接建立与第一云91a之间的数据交互,而再基于第一云91a与第二云91b之间的数据交互,实现移动终端100与第二云91b之间的数据交互,然后再第二云91b可以与受控设备99进行数据交互的情况下,移动终端100进而实现与受控设备99之间的数据交互。
作为再一种方式,如图3所示,受控设备99可以通过网关98与路由器90建立无线连接。其中,数据交互可以包括移动终端向受控设备发送控制指令,还可以包括受控设备向移动终端返回状态信息或者返回指令执行结果等。其中,移动终端与受控设备之间的数据交互可以由移动终端中安装的客户端来触发。
而随着快应用的普及,移动终端开发者更期望通过快应用来实现与前述客户端相同的功能,以便提升智能家居功能的开发效率,并同时节约移动终端的存储空间。
其中,快应用是一种基于终端设备硬件平台的新型应用形态,无需安装,即点即用,又兼具原生应用体验(性能、系统整合、交互等)。如图4所示的快应用引擎的结构示意图,快应用的前端设计借鉴并整合了主流前端框架(Vue,React等)的设计思路:以组件化的方式构建应用,以数据绑定为核心的MVVM设计模式,以V-DOM的方式提升性能,同时选择了简洁清晰的类Vue的模板。
为了便于进行数据的交互,各个厂商都会各自开发自己的SDK插件以便移动终端中的客户端调用。当客户端加载厂商的SDK插件以后,便可以调用所加载的SDK插件,进而通过该SDK插件与厂商的服务器之间进行数据交互。例如,如图5所示,在图5所示的客户端110中加载有厂商A的SDK插件111以及厂商B的SDK插件112,其中客户端110可以通过调用厂商A的SDK插件来与厂商A的服务器210进行数据交互,而客户端110可以通过调用厂商B的SDK插件来与厂商B的服务器220进行数据交互。
而智能设备首次安装使用时需要对智能设备进行配网操作,以使智能设备能进入受控状态,然而发明人发现各个厂商的生产的智能设备在进行配网操作时,用户仍需要下载智能设备厂家对应的APP进行操作,由于智能设备厂家众多,当家庭使用的智能设备来自不同厂家时,需要下载多个APP,这会大量占用存储空间。因此,发明人提出了本申请实施例中的智能设备配网方法、装置、电子设备及存储介质。下面先结合附图对本申请实施例的应用环境进行介绍。
如图6所示,在图6所示的移动终端100中,运行有快应用以及客户端110。其中快应用是运行于快应用引擎上,并且在快应用引擎中设置有客户端提供的扩展接口97。而在客户端110中设有与扩展接口97通信的扩展接口96。而客户端110可以通过扩展接口调用各个厂商的SDK插件。例如,可以调用图中的厂商A的SDK插件111、厂商B的SDK插件112以及厂商C的SDK插件113。在这种情况下,在快应用中触发的数据处理指令可以通过设置在快应用引擎中的扩展接口97传递到客户端中的扩展接口96,进而再将数据处理指令传输给各个厂商的SDK插件。
下面将结合附图具体描述本申请的各实施例。
参阅图7,本发明第一实施例提供一种智能设备配网方法,应用于电子设备进行智能设备的配网操作,智能设备例如可以包括智能灯、智能音响、空调、冰箱、各类型机器人、电视、窗户、门锁、安防设备等。
在具体的实施例中,所述智能设备配网方法应用于如图18所示的智能设备配网装置以及配置有智能设备配网装置的电子设备。下面将以电子设备为例,说明本实施例的具体流程。上述的智能设备配网方法具体地可以包括以下步骤:
步骤S110:获取智能设备的标识信息。
智能设备的标识信息是指用于识别智能设备的信息,例如可以包括智能设备的厂商信息、型号信息或者品类信息等,以使得该智能设备能被清楚的获知生产厂家、品类、型号等信息。
在一些实施方式中,标识信息可以设置于智能设备上,例如以二维码、条形码、文字、图形等方式设置于智能设备上。电子设备通过扫描二维码等携带有标识信息的标识图像来获取智能设备的标识信息。
在一些实施方式中,标识信息也可以通过语音等形式存储于智能设备。电子设备通过语音助手来识别语音中所携带的标识信息。
在另一些实施方式中,还可以通过接收输入信息获取智能设备的标识信息,例如,用户可以直接在电子设备输入对应的厂商或者型号。
可以由智能设备主动发送其标识信息,例如智能设备通过无线信号的方式对外发送其标识信息,当这些标识信息被捕捉后即被获取。也可以由电子设备主动获取标识信息,例如扫描二维码等。
步骤S120:根据标识信息确认与智能设备对应的快应用。
其中,快应用是指一种基于特定编程语言开发完成,无需下载和安装,就可以使用的移动端APP。
在一些实施方式中,例如可以根据标识信息中的厂商信息、型号信息或者品类信息,与快应用的包名进行匹配,根据匹配结果确定其对应的快应用。在另一些实施方式中,可以将各个厂商或者各种型号的智能设备对应的快应用预存于本地,当获取到智能设备的标识信息后,与预存的快应用进行包名匹配,根据匹配结果确定对应的快应用。
步骤S130:调起所述快应用的设备配置界面。所述设备配置界面中包括配置引导信息。
设备配置界面是指针对各种不同的智能设备进行配网操作的操作界面,如图8所示,该界面中包含有针对智能设备进行配网操作的配置引导信息,用于供用户按照该指引信息进行配网操作。调起设备配置界面后,可以直接向用户显示。
在一些实施方式中,配置引导信息可以包括如图9所示的操作指引界面、如图10所示的信息输入界面、如图11所示的配置进度界面等等。配置引导信息用于引导用户完成配网过程。
步骤S140:响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网。
电子设备根据用户依照配置引导信息进行的操作,对智能设备进行配网。
在一些实施方式中,对智能设备进行配网可以按以下方式进行:电子设备响应用户的操作,并与智能设备之间通过蓝牙、红外、ZigBee、热点等方式连接,直接向智能设备发送配网指令,进而完成配网。
在一些实施方式中,电子设备可以经有当前范围内的无线网络或有线网络向智能设备发送配网 指令,进而使得智能设备完成配网过程。
本实施例提供的智能配网方法,在配网过程中,通过标识信息确定与标识信息对应的快应用信息,然后调起快应用进行配网。可以适用于各种不同生产厂家或品类或不同型号的智能设备,无需针对每个智能设备单独下载控制APP,不仅节省了电子设备的存储空间,也节约了用户在配网时的时间,提高了配网效率。而且对于不常使用智能设备的人群,可操作性更强,不会产生反感。
请参阅图12,图12示出了本申请第二实施例提供的智能设备配网方法的流程示意图。下面将针对图12所示的流程进行详细的阐述,所述方法具体可以包括以下步骤:
本实施例中,智能设备的配网方法具体按以下方式进行:
步骤S210:获取所述智能设备的标识图像,所述标识图像中携带有标识信息。智能设备在出厂时,通常会在智能设备的机身上设置二维码、条形码等标识图像,这些标识图像内附带有智能设备的厂商信息、型号信息或者品类信息等。获取标识图像的方法可以是调起电子设备的摄像模组对标识图像进行拍照扫描。在一些实施方式中,获取智能设备的标识图像后可以将标识图像存储于本地或者上传至服务器(包括但不限于是厂商服务器),这样可以提示厂商该智能设备即将开始使用,便于厂家掌握该智能设备的使用情况,进行相应的维保数据分析。
步骤S220:从所述标识图像中识别出所述标识信息。
用户可以通过扫描获取该标识图像,然后从该标识图像中识别出对应的标识信息。
在一些实施方式中,进入智能设备配网界面后,可以直接调起摄像头并对标识图像进行扫描或者拍摄。在一些实施方式中,可以在用户进行配网时,显示提示信息,提示信息用于提示用户对智能设备机身的标识图像进行扫描。例如显示如图13所示的提示信息。
根据所述标识信息确认与所述智能设备对应的快应用。本实施例中,具体按以下方式进行:
步骤S230:根据所述标识信息,查询标识信息与快应用的映射关系表。其中,映射关系表中记载标识信息与快应用的对应关系。
在一些实施方式中,参阅表1,表1示出了映射关系表的一种形式。
表1
Figure PCTCN2019075945-appb-000001
表1示出的映射关系表中,单个厂商对应的所有智能设备对应的快应用均相同。
在一些实施方式中,参阅表2,表2示出了映射关系表的另一种形式。
表2
Figure PCTCN2019075945-appb-000002
表2中,部分厂商生产的不同品类的智能设备对应的快应用不同,即:同一厂家生产的不同品类的智能设备1与智能设备2对应的快应用不相同。部分厂商生产的部分品类的智能设备对应的快应用相同。例如:厂商1生产的空调对应的快应用是快应用1,而冰箱和洗衣机对应的快应用为快应用2。可以理解的是,在其他的一些实施方式中,同一厂家生产的同一品类的智能设备对应的不同型号的智能设备对应的快应用也可以均不相同,此时可以相应的调整映射关系表。
在一些实施方式中,映射关系表还可以关联智能设备的配网类型等信息、智能设备的操作方式、 智能设备的配网模式开启方式、操作说明以及其他的相关信息。以使得在查询映射关系表时,能一并查询相关信息,方便用户进行操作,尤其是执行配网操作。例如可以将查询到的智能设备的配网模式的开启方式呈现给用户,便于用户快速的进行配网操作。可以理解的是,映射关系表中还可以关联其他的智能设备相关信息。
在一些实施方式中,映射关系表可以预存在本地。这样使得在查询映射关系表时,可以节约查询时间。在一些实施方式中,映射关系表也可以预存在服务器上,以节省本地的存储空间。此时,可以定期更新映射关系表,例如:定期向服务器发送更新请求,服务器在接收到更新请求后,将当前的映射关系表发送给电子设备。在一些实施方式中,也可以不向服务器发送更新请求,而是服务器定期向电子设备发送映射关系表,例如:当服务器存储的映射关系表被更新后,向电子设备发送更新后的映射关系表。使得电子设备可以实时获得映射关系表的更新情况。
若所述映射关系表中存在与所述标识信息对应的快应用信息,执行步骤S240:根据所述快应用信息确认与所述标识信息对应的快应用。
在一些实施方式中,若映射关系表中不存在与所述标识信息对应的快应用信息时,可以不做任何操作。本实施例中,若映射关系表中不存在与所述标识信息对应的快应用信息,执行步骤S241。
步骤S241:显示提示信息。
所述提示信息可以是提示用户当前智能设备不受支持等。以便于用户单独下载对应厂商的控制APP进行控制。在一些实施方式中,可以提醒用户该设备没有对应的快应用,需要单独下载厂商的控制APP。提示信息可以以文字、图形、声音等方式发出。例如:提示信息可以是如图14所示的形式。
本实施例中,快应用不预先存储于本地,以节省占用本地的存储空间,当根据所述快应用信息确认与所述标识信息对应的快应用后,执行步骤S250,并从服务器下载相应的快应用进行加载,以调起所述快应用对应的设备配置界面。
步骤S250:向所述快应用对应的服务器发送下载请求。
下载请求用于请求下载步骤S240中已确定的快应用。快应用对应的服务器是指存储有该快应用的服务器,例如为厂商服务器。在一些实施方式中,快应用也可由电子设备的对应的厂商服务器中下载获得。
步骤S260:接收服务器返回的的快应用。
将已确定的快应用加载到本地,下载完成后执行步骤S270。
在一些实施方式中,快应用加载到本地后可以存储于本地。并可以在用户使用智能设备时检测更新情况,若快应用有更新,则加载更新后的快应用,并删除旧的快应用。
可以理解的是,在其他的一些实施方式中,快应用可以预存在本地,即将所有的快应用一并预存于本地,在使用过程中,可以直接调起响应的快应用,这样可以大幅提高快应用的调起速率。在一些实施方式中,可以根据快应用信息,从已经预存的快应用的报名进行检索匹配,并调起相应的快应用。在一些实施方式中,可以定期更新预存的快应用。可以理解的是更新预存的快应用包括加载新添加的快应用以及将已加载的快应用更新至最新的版本。例如可以按以下方式进行更新:定期向服务器发送快应用更新请求,并从服务器获取更新列表,若更新列表为空,则不进行更新操作,若更新列表不为空,则加载更新列表中的快应用。其中更新列表是指服务器生成的包含更新信息的列表。
步骤S270:加载所述快应用,调起快应用的配置界面。
步骤S280:响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网。
本实施例中提供的智能设备配网方法,通过获取所述智能设备的标识图像来获取智能设备标识信息,然后通过预先设置的映射关系表供快速的根据标识信息确定对应的快应用,调起快应用的设置界面,引导用户完成配网,提高配网过程的效率,提升了用户体验。
参阅图15,图15示出了本申请第三实施例提供的智能设备配网方法的流程示意图。下面将针对图3所示的流程进行详细的阐述,所述方法具体可以包括以下步骤:
步骤S310:获取智能设备的标识信息。
步骤S320:根据所述标识信息,查询标识信息与快应用的映射关系表。
若所述映射关系表中存在与所述标识信息对应的快应用信息,执行步骤S330:根据所述快应用 信息确认与所述标识信息对应的快应用。
本实施例中,若映射关系表中不存在与所述标识信息对应的快应用信息,执行步骤S331。
步骤S331:显示提示信息。
所述提示信息可以是提示用户当前智能设备不受支持等。以便于用户单独下载对应厂商的控制APP进行控制。
步骤S340:确认是否加载有所述智能设备对应的快应用。即确认智能设备对应的快应用是否已预存在本地。在一些应用情景下,用户可能已经使用过厂商1生产的智能设备1,此时电子设备已经预存有针对智能设备1的快应用,当用户更换新的智能设备1或者用户新安装厂商1生成的智能设备2(智能设备2对应的快应用与智能设备对应的快应用相同),此时用户无需再加载新的快应用,因此对本地是否预存有与智能设备对应的快应用进行判断,以确定该快应用是否已经预存在本地。
若已加载有所述智能设备对应的快应用,则执行步骤S341。
步骤S341:调起所述快应用的设备配置界面,所述设备配置界面中包括配置引导信息。
这样设置,可以大幅缩短快应用的调起时间,提高响应速度,同时提高配网效率。
若未加载有所述智能设备对应的快应用,则执行步骤S342。
步骤S342:加载所述快应用,调起所述快应用的设备配置界面。
加载快应用的方式可以是直接向智能设备对应的厂商的服务器发送下载请求,或者向电子设备对应的厂商的服务器发送下载请求。这种快应用加载方式可以避免将大量的快应用预存在本地,同时也防止在已预存有快应用的情况下,重复加载相同的快应用。
在一些实施方式中,加载快应用时,可以检测当前电子设备所在网络的网络状况,当无线网络信号不佳时,可以切换到3G、4G、5G等形式进行加载。以提高响应速度。
步骤S350:提示用户确认所述智能设备的配网模式是否已开启。
智能模式的配网模式是指智能设备进入配网模式状态,在该状态下,用户可以通过电子设备等设备控制智能设备完成相应的配网操作。通常情况下,智能设备设置有物理按钮或虚拟按钮,当该物理按钮或虚拟按钮被触发时,智能设备将进入配网模式。在一些实施方式中,可以通过在显示屏上显示文字、图形等提示信息进行提示,也可以通过发出语音信息进行提示。在一些实施方式中,在提示用户时,还可以同时提示如何开启智能设备的配网模式,例如:提示信息可以包括该智能设备的配网模式开启方法。以使用户能快速的找到开启智能设备的配网模式的按钮。电子设备可以通过向智能设备对应的厂商服务器发送查询请求,进而获知该智能设备的配网模式开启方法。例如:提示信息可以是如图16所示的形式。
若接收到确认信息,执行步骤S360。
步骤S360:建立与所述智能设备间的网络连接。在进行配网的过程中,电子设备可以通过与智能设备所处的物理空间内的路由器或网关等设备进行网络连接。以使得用户在电子设备上进行的相应操作能够控制智能设备进行相应的配网操作。
现有市面上的智能设备多种多样,部分智能设备可以通过手动输入网络信息的方式连接网络。此处连接网络是指连接智能设备所处物理空间范围内的路由器或网关。网络信息是指:WiFi名称以及WiFi密码等。而部分智能设备不具有输入功能,因此不能通过手动输入网络信息连接路由器或网关的功能。
本实施例中,参阅图17,步骤S360具体包括以下步骤:
步骤S361:判断所述智能设备是否已连接网络。判断方式可以是获取当前范围内的路由器中的设备列表,若设备列表中不包括待配网的智能设备,则判断智能设备未连接网络。若设备列表中已存在该智能设备,则判断该智能设备已经连接网络。
若判断结果为智能设备尚未连接网络,则执行步骤S362。
步骤S362:获取所述智能设备的配网类型。其中配网类型是指智能设备进行配网的方式。由于智能设备的生产厂家众多,配网方式也多种多样,例如:部分智能设备采用无线通信方式进行配网,部分设备采用AP热点方式进行配网,部分智能设备通过广播播报的方式进行配网等。因此在向只能说设备发送网络信息时,预先获取该智能设备的配网类型。
在一些实施方式中,智能设备的配网类型可以关联至映射关系表内,即在映射关系表中建立标 识信息与配网类型的映射关系,当需要获取智能设备的配网类型时,通过查询映射关系表即可获取。这种方式可以缩短查询时间,尤其是当映射关系表预存于本地时,可以大幅缩短查询时间。可以理解的是,在这种实施方式中,查询映射关系表的步骤可以同步骤S同步进行,这样在一次查询映射关系表的过程中,同时获取与标识信息对应的快应用以及与智能设备匹配的配网模式。
在本实施例中,根据所述智能设备的厂商信息和设备型号信息,其中厂商信息和设备型号信息由标识信息中获取,向对应的厂商服务器发送查询请求,所述查询请求用于获取所述智能设备的配网模式,接收服务器返回的查询结果,查询结果包括智能设备的配网模式,获取所述智能设备的配网模式。这种方式可以避免映射关系表由于没有及时更新造成的配网模式错误的情形。
步骤S363:以与所述配网类型对应的方式所述智能设备发送网络信息。
当智能设备的配网类型为广播播报时,对外广播网络信息,所述网络信息包括指定的WiFi名称和对应的WiFi密码。对外广播网络信息的过程中,智能设备接收到该广播信息,并通过该广播信息内包含的WiFi名称以及WiFi密码连接至对应的WiFi网络。当智能设备接收到网络信息后,其可以连接到该网络信息对应的网络中,进而与电子设备之间建立网络连接。
在一些实施方式中,广播信息可以以特定频率进行播放,以使智能设备能快速的接收该广播信息。特定频率可以根据智能设备的广播接收设备的接收频率进行设定。其中,广播接收设备的接收频率可以从厂商的服务器中获取,电子设备可以向厂商的服务器发送查询请求进而获取接收频率。或者,在查询智能设备的配网模式时一并查询接收频率。然后调整电子设备的广播设备的播放频率与接收频率匹配。
在一些实施方式中,在播放广播信息时,以变化频率进行播放。例如以50-140Hz连续变化的频率进行播放,这样无论智能设备的接收频率时多少,均可以接收到该播放信息。
当接收到智能设备接入WiFi的连接反馈后,停止广播网络信息。可以理解的是,连接反馈可以是智能设备主动向电子设备发送,也可以是电子设备通过查询接入该WiFi网络的设备列表,获知该智能设备是否已加入网络。
当智能设备的配网类型时无线通信方式时,建立与所述智能设备之间的无线连接,通过无线信号向所述智能设备发送所述网络信息,所述网络信息包括指定的WiFi名称和对应的WiFi密码。其中,无线通信方式可以是AP连接,蓝牙连接、ZigBee等方式。同样的,在收到连接反馈后,可以停止发送网络信息。
在通过无线通信方式发送网络信息前,与智能设备建立无线连接,根据智能设备的无线连接类型,对应的启动相应的连接设备,并与智能设备进行连接。以蓝牙连接为例:电子设备启动蓝牙模块,并扫描当前范围内的蓝牙装置,选择与智能设备相对应的蓝牙装置进行配对连接。当未扫描到智能设备的蓝牙装置时,或者检测到信号较弱时,可以提醒用户靠近智能设备。蓝牙配对成功后发送网络信息,当接收到连接反馈后,停止发送网络信息。在一些实施方式中,在接收到连接反馈后,关闭蓝牙装置,以节省电量。通过网络信息对应的无线网络与智能设备之间建立网络连接。同样的,AP连接或ZigBee通信等连接均可以参照上述方式进行。
在一些实施方式中,电子设备的无线连接网络列表中,可能含有多个路由器或者网关。可以提示用户对无线网络进行选择,然后将被选择的无线网络的网络信息发送给智能设备。此时,用户可以选择当前房间信号最好的无线网络发送给智能设备,或者选择安全性更高的无线网络的网络信息发送给智能设备。
在一些实施方式中,电子设备可以直接将当前已连接的无线网络的网络信息发送给智能设备,这样发送的时间更短,也不用用户执行选择的操作,进一步减少操作流程。在一些实施方式中,还可以对电子设备当前已经连接的无线网络的网络速率进行检测,如果当前已连接的无线网络的网络状况不佳,可以向用户发出提醒,提醒用户是否切换无线网络,或者待网络良好时再进行配网。
在一些实施方式中,电子设备可以将无线网络列表中的所有在当前位置有信号响应的无线网络的网络信息均一并发送给智能设备,这样在使用过程中,当一个无线网络出现网络故障时,智能设备可以自动切换至其他的无线网络并进而与电子设备实现网络连接。其中有信号响应的无线网络是指:在电子设备的当前区域,无线网络列表中能够进行网络传输的无线网络。同时该无线网络曾经被电子设备连接过,并存储有该无线网络的网络信息。这种实施方式适用于同一家庭内具有多个路 由器或者网关的使用环境。
同时,当电子设备将多个无线网络的网络信息一并发送给智能设备时,可以对多个无线网络进行优先级排序,可以将电子设备当前已连接的无线网络设置为最优先级,使得智能设备与最优先级的无线网络进行连接。剩余的无线网络可以根据网络信号的强弱进行排序,以使智能设备在出现断网情形时,能自动的按照无线网络的列表中的排序,自动切换无线网络进行连接。
步骤S370:显示所述配置引导信息。用户根据配置引导信息,执行对应的操作,例如:显示的配置引导信息是输入用户名、输入密码、录入指纹等。
步骤S380:响应于用户根据所述配置引导信息的操作,向所述智能设备发送对应的配网指令。响应用户的操作,先智能设备发送对应的配网指令,配网指令可以经已连接的WiFi网络进行发送。在一些实施方式中,当配网指令被接收以后,智能设备可以发出接收反馈。
本实施例提供的智能设备配网方法,通过获取智能设备的标识信息,进而从映射关系表中获取对应的快应用,通过获取智能设备的配网类型,将网络信息发送给智能设备,进而与智能设备建立网络连接。然后显示配置引导信息,并响应用户的操作,发送对应的配网指令给智能设备,完成配网过程。这个配网过程对于各种不同的厂商或者各种不同品类、型号的智能设备都适用,避免了用户需要下载大量的APP,节约本地存储空间,同时提高配网效率。
参阅图18,本申请第四实施例提供一种智能设备配网装置400,包括获取模块410、快应用确认模块420、调用模块430以及执行模块440。其可以用于执行第一实施例中的智能设备的配网方法。
其中,获取模块410用于获取智能设备的标识信息。其中,标识信息可以包括智能设备的厂商信息、品类信息或者型号信息等。在一些实施方式中,参阅图19,智能设备配网装置400中的获取模块410可以包括标识图像获取模块411和识别模块412,其中标识图像获取模块411用于获取智能设备的标识图像,所述标识图像中携带有标识信息。识别模块412用于从所述标识图像中识别出所述标识信息。
快应用确认模块420用于根据所述标识信息确认与所述智能设备对应的快应用。
调用模块430用于调起所述快应用的设备配置界面,所述配置界面中包括配置引导信息。
执行模块440用于响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网。在一些实施方式中,参阅图20,执行模块440可以包括网络连接建立模块441、显示模块442以及指令发送模块443,其中,网络连接建立模块441用于建立与所述智能设备间的网络连接。显示模块442用于显示配置引导信息。指令发送模块443用于响应于用户根据配置引导信息的操作,向智能设备发送配网指令。
在一些实施方式中,参阅图21,网络连接建立模块441可以包括网络判断模块4411以及网络信息发送模块4412,网络判断模块4411用于判断所述智能设备是否已连接网络,网络信息发送模块4412用于在智能设备未连接网络时,向所述智能设备发送网络信息。以使智能设备可以通过所述网络信息对应的网络与电子设备建立网络连接。可以理解的是,信息发送模块可以采用广播播报的方式发送信息,也可以采用无线通信方式发送信息。
在一些实施方式中,参阅图22,智能设备配网装置400还可以包括快应用判断模块450以及加载模块460,快应用判断模块450用于确认是否加载有所述智能设备对应的快应用,当快应用判断模块450确认加载有智能设备对应的快应用时,调用模块430调起所述快应用的设备配置界面。当快应用判断模块450确认未加载有智能设备对应的快应用时,加载模块460加载所述快应用,然后调起模块调起快应用的设备配置界面。
可选的,请继续参阅图22,智能设备配网装置400还可以包括查询模块470、请求发送模块480以及加载模块460,其中,查询模块470用于根据所述标识信息,查询标识信息与快应用的映射关系表,当所述映射关系表中存在与所述标识信息对应的快应用信息时,快应用确认模块420即可确认与标识信息对应的快应用信息。请求发送模块480用于所述快应用对应的服务器发送下载请求。加载模块460用于接收服务器返回的快应用,并加载快应用,调起所述快应用的设备配置界面。
在一些实施方式中,智能设备配网装置400还可以包括配网模式提示模块490。其中,配网模式提示模块490用于提示用户确认所述智能设备的配网模式是否已开启。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述装置和模块的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,所显示或讨论的模块相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或模块的间接耦合或通信连接,可以是电性,机械或其它的形式。
另外,在本申请各个实施例中的各功能模块可以集成在一个处理模块中,也可以是各个模块单独物理存在,也可以两个或两个以上模块集成在一个模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。
请参阅图23,基于上述的智能设备配网方法、装置,本申请第五实施例还提供另一种可以执行前述智能设备配网方法的电子设备100。电子设备100包括相互耦合的一个或多个(图中仅示出一个)处理器302、存储器304、网络模块306、摄像模组310以及屏幕312。其中,该存储器304中存储有可以执行前述实施例中内容的程序,而处理器302可以执行该存储器304中存储的程序。
其中,处理器302可以包括一个或者多个处理核。处理器302利用各种接口和线路连接整个电子设备100内的各个部分,通过运行或执行存储在存储器304内的指令、程序、代码集或指令集,以及调用存储在存储器304内的数据,执行电子设备100的各种功能和处理数据。可选地,处理器302可以采用数字信号处理(Digital Signal Processing,DSP)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)、可编程逻辑阵列(Programmable Logic Array,PLA)中的至少一种硬件形式来实现。处理器302可集成中央处理器(Central Processing Unit,CPU)、图像处理器(Graphics Processing Unit,GPU)和调制解调器等中的一种或几种的组合。其中,CPU主要处理操作系统、用户界面和应用程序等;GPU用于负责显示内容的渲染和绘制;调制解调器用于处理无线通信。可以理解的是,上述调制解调器也可以不集成到处理器302中,单独通过一块通信芯片进行实现。
存储器304可以包括随机存储器(Random Access Memory,RAM),也可以包括只读存储器(Read-Only Memory)。存储器304可用于存储指令、程序、代码、代码集或指令集。存储器304可包括存储程序区和存储数据区,其中,存储程序区可存储用于实现操作系统的指令、用于实现至少一个功能的指令(比如触控功能、声音播放功能、图像播放功能等)、用于实现下述各个方法实施例的指令等。存储数据区还可以存储终端100在使用中所创建的数据(比如电话本、音视频数据、聊天记录数据)等。
所述网络模块306用于接收以及发送电磁波,实现电磁波与电信号的相互转换,从而与通讯网络或者其他设备进行通讯,例如和无线接入点进行通讯。所述网络模块306可包括各种现有的用于执行这些功能的电路元件,例如,天线、射频收发器、数字信号处理器、加密/解密芯片、用户身份模块(SIM)卡、存储器等等。所述网络模块306可与各种网络如互联网、企业内部网、无线网络进行通讯或者通过无线网络与其他设备进行通讯。上述的无线网络可包括蜂窝式电话网、无线局域网或者城域网。
摄像模组310可以用于采集智能设备的标识图像,以使处理器302从标识图像中识别出标识信息。
请参考图24,其示出了本申请第六实施例提供的一种计算机可读存储介质的结构框图。该计算机可读介质800中存储有程序代码,所述程序代码可被处理器调用执行上述方法实施例中所描述的方法。
计算机可读存储介质800可以是诸如闪存、EEPROM(电可擦除可编程只读存储器)、EPROM、硬盘或者ROM之类的电子存储器。可选地,计算机可读存储介质800包括非瞬时性计算机可读介质(non-transitory computer-readable storage medium)。计算机可读存储介质800具有执行上述方法中的任何方法步骤的程序代码810的存储空间。这些程序代码可以从一个或者多个计算机程序产品中读出或者写入到这一个或者多个计算机程序产品中。程序代码810可以例如以适当形式进行压缩。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (20)

  1. 一种智能设备配网的方法,其特征在于,包括:
    获取智能设备的标识信息;
    根据所述标识信息确认与所述智能设备对应的快应用;
    调起所述快应用的设备配置界面,所述设备配置界面中包括配置引导信息;
    响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网。
  2. 根据权利要求1所述的方法,其特征在于,所述根据所述标识信息确认与所述智能设备对应的快应用,包括:
    根据所述标识信息,查询标识信息与快应用的映射关系表;
    若所述映射关系表中存在与所述标识信息对应的快应用信息,则根据所述映射关系表确认与所述标识信息对应的快应用。
  3. 根据权利要求2所述的方法,其特征在于,所述映射关系表存储于本地。
  4. 根据权利要求3所述的方法,其特征在于,所述方法还包括:定期向服务器发送映射关系表更新请求,并更新所述映射关系表。
  5. 根据权利要求1所述的方法,其特征在于,所述调起所述快应用的设备配置界面,包括:
    确认是否加载有所述智能设备对应的快应用;
    若是,则调起所述快应用的设备配置界面;
    若否,则加载所述快应用,调起所述快应用的设备配置界面。
  6. 根据权利要求5所述的方法,其特征在于,所述若否,则加载所述快应用,调起所述快应用的设备配置界面,包括:
    向所述快应用对应的服务器发送下载请求;
    接收服务器返回的所述快应用;
    加载所述快应用,调起所述快应用的设备配置界面。
  7. 根据权利要求1-6任一项所述的方法,其特征在于,所述标识信息包括所述智能设备的厂商信息和/或型号信息。
  8. 根据权利要求7所述的方法,其特征在于,所述识别信息还包括品类信息。
  9. 根据权利要求1-8任一项所述的方法,其特征在于,所述响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网,包括:
    建立与所述智能设备间的网络连接;
    显示所述配置引导信息;
    响应于用户根据所述配置引导信息的操作,向所述智能设备发送对应的配网指令。
  10. 根据权利要求9所述的方法,其特征在于,所述建立与所述智能设备间的网络连接,包括:
    判断所述智能设备是否已连接网络;
    若未连接网络,向所述智能设备发送网络信息,并通过所述网络信息对应的网络与所述智能设备建立网络连接。
  11. 根据权利要求9所述的方法,其特征在于,所述建立与所述智能设备间的网络连接,包括:
    提示用户确认所述智能设备的配网模式是否已开启;
    若接收到确认信息时,建立与所述智能设备间的网络连接。
  12. 根据权利要求10所述的方法,其特征在于,所述向所述智能设备发送网络信息,包括:
    获取所述智能设备的配网类型,以与所述配网类型对应的方式向所述智能设备发送网络信息。
  13. 根据权利要求12所述的方法,其特征在于,以与所述配网类型对应的方式向所述智能设备发送网络信息,包括:
    对外广播网络信息,所述网络信息包括指定的WiFi名称和对应的WiFi密码;
    当接收到智能设备接入WiFi的连接反馈后,停止广播网络信息。
  14. 根据权利要求12所述的方法,其特征在于,以与所述配网类型对应的方式向所述智能设备发送网络信息,包括:
    建立与所述智能设备之间的无线连接,通过无线信号向所述智能设备发送所述网络信息,所述网络信息包括指定的WiFi名称和对应的WiFi密码。
  15. 根据权利要求12所述的方法,其特征在于,获取所述智能设备的配网类型,包括:
    根据所述智能设备的厂商信息和设备型号信息,向对应的厂商服务器发送查询请求,所述查询请求用于获取所述智能设备的配网模式,接收服务器返回的所述智能设备的配网模式。
  16. 根据权利要求1-15任一项所述的方法,其特征在于,所述获取智能设备的标识信息,包括:
    获取所述智能设备的标识图像,所述标识图像中携带有标识信息;
    从所述标识图像中识别出所述标识信息。
  17. 一种智能设备配网装置,其特征在于,包括:
    获取模块,用于获取智能设备的标识信息;
    快应用确认模块,用于根据所述标识信息确认与所述智能设备对应的快应用;
    调用模块,用于调起所述快应用的设备配置界面,所述配置界面中包括配置引导信息;
    执行模块,用于响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网。
  18. 根据权利要求17所述的智能设备配网装置,其特征在于,所述执行模块包括:
    网络连接建立模块,用于建立与所述智能设备间的网络连接;
    显示模块,用于显示配置引导信息;
    指令发送模块,用于响应于用户根据配置引导信息的操作,向智能设备发送配网指令。
  19. 一种电子设备,其特征在于,包括存储器和处理器,所述存储器与所述处理器耦合;所述存储器存储指令,当所述指令由所述处理器执行时以使所述处理器执行以下操作:
    获取智能设备的标识信息;
    根据所述标识信息确认与所述智能设备对应的快应用;
    调起所述快应用的设备配置界面,所述配置界面中包括配置引导信息;
    响应于用户根据所述配置引导信息进行的操作,对所述智能设备配网。
  20. 一种计算机可读取存储介质,其特征在于,所述计算机可读取存储介质中存储有程序代码,所述程序代码可被处理器调用执行如权利要求1-16任一项所述的方法。
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