Non-inductive network distribution method and system

By having the device to be configured initiate a configuration trigger command, the configured devices automatically interact to achieve seamless configuration, solving the problem of cumbersome traditional configuration operations and improving the network access experience and binding convenience of smart devices.

CN121013208APending Publication Date: 2025-11-25NINGBO XIAOJIANG ELECTRONICS TECH
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Patent Information

Application Number
CN202511103760.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-07
Publication Date
2025-11-25

AI Technical Summary

Technical Problem

The current smart device network configuration process requires users to perform multiple steps, making the operation cumbersome and inconvenient.

Method used

The device to be configured initiates a configuration trigger command upon power-up. The configured device responds automatically, establishes a temporary wireless communication connection, and sends an access credential. After the device to be configured disconnects, it connects to the target wireless network. The cloud platform confirms the device binding, and the user only needs to click to confirm.

Benefits of technology

It enables seamless network configuration without manual user intervention, improving the network access experience for smart devices, and making operation convenient and binding accurate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a non-inductive network distribution method and system, and the method comprises the steps: enabling equipment to be subjected to network distribution to be powered on, and actively initiating a network distribution triggering instruction; at least one set of network distribution equipment responds to the network distribution triggering instruction and establishes temporary wireless communication connection with the equipment to be subjected to network distribution; the equipment with the network distribution sends an access certificate of a target wireless network to the equipment to be subjected to network distribution through the temporary wireless communication connection; the equipment to be subjected to network configuration disconnects the temporary wireless communication connection, and is connected to the target wireless network based on the access credential; and the network distribution equipment of which the temporary wireless communication connection is disconnected is recovered to the original state. According to the scheme, automatic interaction logic between the devices is provided, non-inductive network distribution of the device to be subjected to network distribution is achieved through the device subjected to network distribution, and compared with a traditional mode that a password needs to be input or a code needs to be scanned or a client side needs to be operated to trigger network distribution, the more efficient and convenient network distribution effect is achieved.
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Description

Technical Field

[0001] This invention belongs to the field of network configuration technology, and in particular relates to a seamless network configuration method and system. Background Technology

[0002] With the rapid development of IoT technology, the number of smart devices has surged. They are ubiquitous in various scenarios, including homes, offices, retail, and transportation. Among these applications, network configuration (or "network setup") is the first step in connecting smart devices to the corresponding system. The ease of this step directly determines the user's first impression of the product. Currently, there are two main methods for network configuration: (1) Perform operations on the device to be configured to join the corresponding network. This method requires the device to be configured to have buttons and a display screen. (2) Operations are performed on the device to be configured, and network configuration is achieved in conjunction with the application installed on the mobile terminal. This method is mainly achieved through QR code connection, Bluetooth connection, etc., and most of them currently belong to this method.

[0003] Regardless of the method used, multiple user interventions are required, such as operating the network device to be configured and operating the client, which is cumbersome and inconvenient. Summary of the Invention

[0004] The purpose of this invention is to provide a seamless network distribution method and system to address the above-mentioned problems, propose automatic interaction logic between devices, and realize seamless network distribution of devices to be distributed using already distributed network devices.

[0005] A seamless network distribution method includes: When the equipment to be distributed is powered on, it actively initiates a distribution network trigger command. At least one network-connected device responds to the network distribution trigger command and establishes a temporary wireless communication connection with the network-to-be-connected device; The already configured network device sends the access credential of the target wireless network to the device to be configured network through the temporary wireless communication connection; The device to be configured to connect to the network disconnects the temporary wireless communication connection and connects to the target wireless network based on the access credential; The network equipment whose temporary wireless communication connection was disconnected was restored to its original state.

[0006] In the aforementioned seamless network configuration method, after establishing a temporary wireless communication connection, the device to be configured establishes an exclusive connection with the already configured device, and notifies other already configured devices that have not established a temporary communication connection with the device to be configured to restore their original state via a connection termination command.

[0007] In the above-mentioned seamless network distribution method, the network distribution triggering instruction is a network distribution request broadcast by the device to be distributed; The establishment of the temporary wireless communication connection includes: After receiving the network configuration request, the network-configured device activates its first wireless communication interface, such as a Bluetooth communication interface or a wireless hotspot interface.

[0008] The device to be configured on the network connects to the first wireless communication interface based on the pre-stored first wireless information to establish a temporary wireless communication connection between the configured device and the device to be configured on the network.

[0009] In the above-mentioned seamless network configuration method, after the configured device receives the network configuration request, it starts timing, waits randomly for a period of time T, and then checks the network configuration request again. If the request still exists, it activates its own first wireless communication interface. The connection termination command is a connection completion signal; After the device to be configured on the network is connected to the first wireless communication interface, it stops broadcasting the network configuration request signal and broadcasts the connection completion signal. After receiving the connection completion signal, other network-connected devices that have not established a temporary communication connection with the device to be connected will close the activated first wireless communication interface and restore their original state.

[0010] In the aforementioned seamless network configuration method, after the device to be configured is powered on, it activates its second wireless communication interface. The network configuration trigger command is generated based on the activation status of the second wireless communication interface. Similarly, the second wireless communication interface can be a Bluetooth communication interface, a wireless hotspot interface, etc.

[0011] The network-connected device has pre-stored the second wireless information of the second wireless communication interface and is preset with the highest connection priority; The establishment of the temporary wireless communication connection includes: The network-connected device detects the second wireless communication interface and connects to the access point with the highest preset priority based on the pre-stored second wireless information.

[0012] In the above-mentioned seamless network distribution method, the connection termination command is a connection completion signal; After the already configured device connects to the second wireless communication interface, the device to be configured broadcasts the connection completion signal and rejects the connection of other already configured devices; Other network-connected devices will restore their original network connections after receiving the connection completion signal.

[0013] In the aforementioned seamless network distribution method, this method also includes, After the device to be configured connects to the target wireless network, it sends a registration request to the cloud platform. The cloud platform sends a device binding confirmation request to clients accessing the same network based on the network identifier of the target wireless network. Within the confirmation time window, In response to the client's confirmation, the device to be configured on the network is bound and associated with the client. In response to the client's lack of confirmation, the cloud platform sends a reconfiguration command to the device to be configured.

[0014] In the above-mentioned seamless network configuration method, after receiving the reconfiguration command, the device to be configured re-initiates the network configuration trigger command and blocks the previously configured device with which it established a temporary wireless communication connection, or lowers the connection priority of the configured device. This method also includes, within the confirmation time window, the cloud platform responds to the device identification command from the client, locates the device to be configured on the network corresponding to the device identification command, and controls the device to be configured on the network to output interactive prompts; Furthermore, when the cloud platform fails to successfully send the device binding confirmation request, it controls the corresponding device to be configured to enter a locked state that cannot respond to the cloud platform's control commands until the device binding confirmation request is successfully sent.

[0015] This method also includes, If the cloud platform detects that the device to be configured on the network has been bound to another client, it will at least send a conflict binding notification to the original client. In response to the unbinding command from the original client, the cloud platform removes the binding relationship between the device to be configured and the original client; In response to the original client's command to disable the current client, the cloud platform notifies the device to be configured to block the previously configured device with which it established a temporary wireless communication connection.

[0016] In the above-mentioned seamless network configuration method, in response to the client's lack of confirmation, the cloud platform extracts the identity identifiers of all configured network devices in the same network based on the network identifier of the target wireless network. The cloud platform sends a reconfiguration command containing the extracted identity identifier to the device to be configured on the network; After receiving the reconfiguration command, the device to be configured re-initiates the configuration trigger command and blocks or lowers the connection priority of the configured device with the identity identifier. In response to the original client's disable command for the current client, the cloud platform extracts the identity identifiers of all configured network devices in the same network based on the network identifier of the wireless network where the current client is located, and notifies the device to be configured to block the configured network devices with that identity identifier.

[0017] A seamless power distribution system includes: The device to be configured is set to initiate a network distribution trigger command upon power-up, receive the access credential of the target wireless network through a temporary wireless communication connection, and connect to the target wireless network. The network-connected device is configured to respond to the network-connection trigger command, establish the temporary wireless communication connection, and send the access credential. The cloud platform is configured to receive the registration request of the device to be configured, send a binding confirmation request to the corresponding client based on the target wireless network identifier, and perform conflict binding management.

[0018] The advantages of this invention are as follows: Compared to traditional methods that require entering a password, scanning a code, or operating a client to trigger network configuration, this solution initiates a network configuration trigger command proactively after the device to be configured is powered on, and the configured devices automatically respond. No manual operation by the user or client involvement is required, achieving truly seamless network configuration. It also provides a one-click binding method, whereby the device to be configured actively registers, and the cloud platform proactively distributes the device information to the client. The user simply waits for the device list and then clicks "confirm" to complete the binding, making the operation extremely convenient. Attached Figure Description

[0019] Figure 1 This is a flowchart of the non-contact power distribution method of the present invention; Figure 2 This is a flowchart of the method for achieving seamless network distribution by opening hotspots on already distributed network devices in the seamless network distribution method of the present invention; Figure 3 This is a flowchart of the method for achieving seamless network distribution by having the device to be distributed open a hotspot in the seamless network distribution method of the present invention; Figure 4 This is a flowchart of the binding method in the seamless power distribution method of the present invention; Figure 5 This is a flowchart of the conflict binding management process in the seamless power distribution method of the present invention; Figure 6 This is a system structure block diagram of the sensorless power distribution system of the present invention. Detailed Implementation

[0020] To make the objectives, technical solutions, and effects of this invention clearer and more explicit, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.

[0021] This embodiment provides a seamless network configuration method applicable to network scenarios where smart devices to be deployed already have network-configured devices that have obtained access credentials for the target wireless network. When a user purchases several new smart devices, the existing network-configured devices can be used to achieve seamless network configuration for the new devices. Figure 1 As shown, the specific process is as follows: When the equipment to be distributed is powered on, it actively initiates a distribution network trigger command. At least one network-connected device responds to the network distribution trigger command and establishes a temporary wireless communication connection with the device to be network-connected; The network-connected device sends the access certificate of the target wireless network to the device to be connected via a temporary wireless communication connection; The device to be configured disconnects the temporary wireless communication connection and connects to the target wireless network based on the access credentials; The network equipment whose temporary wireless communication connection was disconnected was restored to its original state.

[0022] The temporary wireless communication connection between the network-connected device and the device to be network-connected can be a wireless hotspot, Bluetooth, or other wireless connection methods. This embodiment uses a wireless hotspot as an example. The Bluetooth method is similar and will not be described in detail here.

[0023] Preferably, after establishing a temporary wireless communication connection, the device to be configured establishes an exclusive connection with the device already configured and broadcasts a connection termination command. Other devices already configured that receive the connection termination command and have not established a temporary communication connection with the device to be configured restore their original state, such as restoring the wireless network connection or restoring the hotspot shutdown.

[0024] Specifically, this solution provides two implementation methods. In one implementation method, the already configured device activates a hotspot (i.e., the first wireless communication interface) based on a configuration trigger command, allowing the device to be configured to connect to the hotspot and establish a wireless communication connection between them. In this method, only one already configured device with hotspot functionality is needed in a network to achieve seamless configuration. The device to be configured may not have hotspot functionality; when new devices are added later, the already configured device with hotspot functionality can still be used. This method can be implemented for intelligent devices without hotspot functionality, such as smart switches and low-power temperature and humidity sensors, to configure the network. Figure 2 As shown, the specific implementation method is as follows: In this implementation, the network distribution trigger command is a network distribution request broadcast by the device to be distributed. That is, after the device to be distributed is powered on, it broadcasts the network distribution trigger command to inform the already distributed devices that it needs to distribute the network.

[0025] After receiving a network configuration request, an already configured device begins a timer and waits for a random period T. It then checks the network configuration request again. If the request still exists, it activates its first wireless communication interface. For each configured device, the time T is randomly determined within a set time range, such as 0 to 1 second. This method avoids all configured devices from turning on their wireless access points upon receiving a request from a device to be configured, which could cause these configured devices to go offline for a short period.

[0026] At this point, the device to be configured on the network can detect the first wireless communication interface and connect to it based on pre-stored first wireless information to establish a temporary wireless communication connection between the configured device and the device to be configured on the network. The first wireless information includes the hotspot password of the first wireless communication interface, which is pre-stored in the device to be configured on the network.

[0027] In this implementation, the connection termination command is a connection completion signal. After the device to be configured connects to the first wireless communication interface, it broadcasts the connection completion signal. Typically, the device to be configured will first search for and connect to the first wireless communication interface of the nearest configured device. At this time, other configured devices will receive the connection completion signal, close the activated first wireless communication interface, and return to their original state. For example, if the connection with the original network was closed due to activating the first wireless communication interface, the connection with the original network will be restored. The configured devices that have connected to the device to be configured keep their first wireless communication interfaces open for the transmission of access credentials for the target wireless network.

[0028] The network-connected device sends the access certificate of the target wireless network to the device to be connected via a temporary wireless communication connection.

[0029] The device to be configured connects to the target wireless network based on the received access credentials and disconnects the temporary wireless communication connection. At this time, the device already configured detects the disconnection of the temporary wireless communication connection, shuts down the first wireless access hotspot, and restores the original network connection. For example, in a smart home scenario, the connection with the original home router is restored.

[0030] Preferably, the activation time of the first wireless access hotspot is limited. If no device to be configured connects within the time limit and no "connection complete signal" is received, the configured device automatically shuts down the first wireless access hotspot.

[0031] In another implementation, the device to be configured on the network creates a hotspot, which is the second wireless communication interface, allowing the already configured devices to connect to the hotspot and establish a wireless communication connection. This method requires the device to be configured to have wireless hotspot functionality. Figure 3 As shown, the specific implementation method is as follows: In this implementation, the distribution network trigger command is generated based on the enabled state of the second wireless communication interface. After the distribution network equipment is powered on, it enables its own second wireless communication interface, which is then in the enabled state.

[0032] Two implementation methods are provided here: (1) After the device to be distributed starts the second wireless communication interface, it waits for the device already distributed to detect it. The device already distributed periodically scans and detects the second wireless communication interface. When the device already distributed detects the second wireless communication interface, it considers that it has received the distribution network trigger command.

[0033] (2) After the device to be configured to enable the second wireless communication interface, it broadcasts a message that the second wireless communication interface has been enabled. The configured device listens to the broadcast message. After receiving the broadcast message that the second wireless communication interface has been enabled, it considers that it has received the configuration network trigger command and detects the second wireless communication interface.

[0034] The already configured device connects to the detected second wireless communication interface with the highest priority based on pre-stored second wireless information. This means that regardless of the number of available wireless networks or signal strength, as long as the second wireless communication interface exists, other wireless networks are disconnected and connection is made to it. The second wireless information includes the hotspot password of the second wireless communication interface, which is pre-stored in the already configured device. Once the already configured device connects to the second wireless communication interface, a temporary wireless communication connection is established between the already configured device and the device to be configured.

[0035] In this implementation, the connection termination command is also a connection completion signal. After the device being configured detects that its hotspot has been accessed by another device, it broadcasts a connection completion signal and rejects connections from other configured devices. At this time, other configured devices will receive the connection completion signal, stop attempting to access the second Wi-Fi hotspot, and restore their original network connections. Configured devices can also stop attempting to access the second Wi-Fi hotspot and restore their original network connections immediately after being rejected.

[0036] Similarly, the network-connected device sends the access credentials of the target wireless network to the network-to-be-connected device through a temporary wireless communication connection.

[0037] The device to be configured connects to the target wireless network based on its access credentials and disconnects the temporary wireless communication connection. At this time, the device already configured detects that the second wireless access hotspot no longer exists, so it restores its original network connection. For example, in a smart home scenario, it restores its connection with the original home router.

[0038] In practical applications, for devices requiring network configuration that have hotspot functionality, it is preferable to have the device directly enable the hotspot. This ensures automatic network configuration even if none of the configured devices have hotspot functionality. For devices without hotspot functionality, it is preferable to have an already configured device enable the hotspot, ensuring that at least one configured device has hotspot functionality. When adding new smart devices, users can choose between devices with or without hotspot functionality based on their needs, balancing cost and automatic network configuration.

[0039] In the above implementation, after the device to be configured is powered on, it proactively initiates a network configuration trigger command via broadcast or by activating a hotspot. The network configuration is then completed seamlessly through autonomous interaction between devices, requiring no user intervention. This transforms the traditional user-driven, step-by-step network configuration process (such as pressing buttons on the device to be configured or performing an add step on the client) into an automated process of autonomous interaction between devices. This changes the traditional network configuration interaction logic, making the network access experience of smart devices closer to "plug and play," thereby improving the user experience and acceptance of smart devices.

[0040] Furthermore, this embodiment proposes a cloud-based registration and one-click confirmation method for binding the device, specifically implemented as follows: Figure 4 As shown: After the device to be configured connects to the target wireless network, it sends a registration request to the cloud platform. Based on the network identifier of the target wireless network, the cloud platform sends a device binding confirmation request to clients connected to the same network; Within the confirmation time window, In response to the client's confirmation, the device to be configured on the network is bound and associated with the client. In response to the client's lack of confirmation, the cloud platform sends a reconfiguration command to the device to be configured.

[0041] This solution uses user confirmation for device binding, and the device to be bound to the network (i.e., the newly connected device) actively registers with the cloud platform. After the cloud platform locks the client through the network identifier, it sends a device binding confirmation request to the client. The user only needs to click to confirm to complete the binding. The operation is very convenient and the accuracy of the binding can be guaranteed.

[0042] The confirmation time window preferably includes two forms: The preset confirmation time window is set based on experience, and is generally 3 to 10 minutes, such as 5 minutes or 6 minutes.

[0043] The power-on period of the device to be configured on the network serves as a confirmation window. This window ends when the user manually shuts down the device. If no confirmation message is received within this period, it is considered that the client has not confirmed. In other words, the user can manually set the confirmation window by restarting the device.

[0044] Furthermore, within the confirmation time window, the cloud platform responds to the client's device identification command, locates the device to be configured on the network corresponding to the command, and provides interactive prompts through that device, such as flashing indicator lights. In other words, users can locate the corresponding device in the network space by operating on a specific device through the client.

[0045] Setting a confirmation time window can prevent situations where other users in the vicinity are using the same hotspot password and the same logic for their products, leading to the device being bound to another user's client by a network connection that does not belong to the current user's network. By leveraging the interaction barriers that non-target users face in specific scenarios (absenteeism, no internet connection, no client open, etc.), the possibility of them accidentally confirming the device is reduced, thereby ensuring the accuracy of device binding and effectively preventing mixed binding between different users in close proximity.

[0046] Preferably, when the corresponding client is offline and the cloud platform fails to successfully send a device binding confirmation request to it, the corresponding device to be configured enters a locked state where it cannot respond to cloud platform control commands until the confirmation request is successfully sent. That is, the locked state is released after the cloud platform successfully sends the binding confirmation request to the corresponding client and the user performs a confirmation operation on the corresponding client; or the cloud platform successfully sends the binding confirmation request to the corresponding client, but the corresponding client does not perform a confirmation operation within the confirmation time window, the locked state is released and a reconfiguration command is sent to the device to be configured.

[0047] After receiving the reconfiguration command, the device in the distribution network re-initiates the distribution network trigger command to enter the distribution network state and processes the previously connected devices, such as lowering the connection priority of the devices with which it previously established a temporary wireless communication connection.

[0048] Furthermore, such as Figure 5 As shown, this method also includes, During the network configuration process, if it is detected that the device to be configured has been bound to another client, the cloud platform will send a conflict binding notification to the original client at least once, and may also send a conflict binding notification to the current client at the same time.

[0049] In response to the unbinding command from the original client, the cloud platform unbinds the device to be configured from the original client. This function can be used when the user of the device to be configured changes; the new client can only bind after the original client is unbound.

[0050] In response to the original client's disable command for the current client, the cloud platform notifies the device to be configured to block the previously configured device with which it established a temporary wireless communication connection, i.e., the configured device on the same network as the current client. In this embodiment, after the device powers on, it first checks its own network connection status. If it is connected to the network, it will not enter the configuration state; if it is not connected, it will enter the configuration state. This function is for situations where the target wireless network is disconnected, and there are products with the same hotspot password and the same logic within the device's receiving range. When the device powers on again, it may establish a temporary wireless communication connection with the product and automatically perform configuration. Similarly, non-target users are unlikely to perform a confirmation operation due to interaction barriers, while the original client, i.e., the target user, can disable the non-target user's client in its client. Subsequently, when the target wireless network is disconnected again, the disconnected device will not attempt to establish a temporary wireless communication connection with the blocked device again.

[0051] It should be noted that when multiple clients need to bind to the same device, the first client to bind can share the binding. This function is not covered in this solution and will not be elaborated upon here. Furthermore, the backend can have the highest privileges to unbind the original client; this function is also not covered in this solution and will not be elaborated upon here.

[0052] Furthermore, when a hotspot is provided by an existing network device, the SSID of the first wireless communication interface carries the identification identifier of the corresponding existing network device. When a hotspot is provided by a device to be networked, the access request signal from the existing network device requesting access to the second wireless communication interface carries the identification identifier of the corresponding existing network device. The device to be networked identifies the existing network device based on the identification identifier, which can be used to determine whether the other party is the existing network device it previously connected to.

[0053] In another embodiment, when the client has not confirmed the binding, the cloud platform extracts the identity identifiers of all network-configured devices on the same network based on the network identifier of the target wireless network. The cloud platform sends a reconfiguration command containing the extracted identity identifiers to the device to be configured. After receiving the reconfiguration command, the device to be configured re-initiates the network configuration trigger command and lowers the connection priority of the network-configured device corresponding to the identity identifier in the reconfiguration command.

[0054] Similarly, when the original client issues a disable command for the current client, the cloud platform extracts the identity identifiers of all configured network devices in the same network based on the network identifier of the wireless network where the current client is located, and notifies the device to be configured to block the configured network devices with that identity identifier.

[0055] In this implementation, when a user manually or the system automatically identifies and blocks / adjusts the priority of a network-configured device, the system further identifies the wireless network to which the network-configured device belongs and extracts the identity information of all network-configured devices under that network, and performs batch blocking / adjustment of the priority of these devices, thereby achieving automatic or one-click batch blocking / adjustment of priority.

[0056] like Figure 6 As shown, this solution also provides a seamless power distribution system for implementing the above-mentioned seamless power distribution method, including: Device 2, which is to be configured to initiate a network distribution trigger command upon power-up, receive the access credential of the target wireless network through a temporary wireless communication connection, and connect to the target wireless network; The network-configured device 1 is configured to respond to the network configuration trigger command, establish a temporary wireless communication connection and send access credentials; Cloud Platform 3 is configured to receive registration requests from devices to be configured on the network, send binding confirmation requests to the corresponding clients based on the target wireless network identifier, and perform conflict binding management. If it is detected that the device to be configured on the network has been bound by other clients, a conflict binding notification is sent to the original client at least once, and then the corresponding operation is performed based on the client's feedback.

[0057] The signals broadcast in this article are all preferably encrypted and equipped with anti-replay technology. Encryption and anti-replay technology are not the focus of this article and will not be elaborated here.

[0058] The devices to be configured and the devices already configured refer to intelligent devices that are compatible with each other, share the password of the first wireless communication interface / second wireless communication interface, and possess the logic proposed in this solution.

[0059] The "wireless network" to which the above-mentioned network-configured devices belong refers to the wireless network that the network-configured devices normally connect to, which is also the target wireless network for the devices to be configured. For example, in a smart home scenario, it refers to the wireless network provided by the home router, and in a retail scenario, it refers to the wireless network provided by the store router, etc.

[0060] Finally, it should be noted that although this document frequently uses terms such as "configured network device 1," "device to be configured network 2," and "cloud platform 3," the possibility of using other terms is not excluded. These terms are used merely for the convenience of describing and explaining the essence of this invention; interpreting them as any additional limitation would contradict the spirit of this invention.

Claims

1. A seamless power distribution method, characterized in that, include: When the equipment to be distributed is powered on, it actively initiates a distribution network trigger command. At least one network-connected device responds to the network distribution trigger command and establishes a temporary wireless communication connection with the network-to-be-connected device; The already configured network device sends the access credential of the target wireless network to the device to be configured network through the temporary wireless communication connection; The device to be configured to connect to the network disconnects the temporary wireless communication connection and connects to the target wireless network based on the access credential; The network equipment whose temporary wireless communication connection was disconnected was restored to its original state.

2. The seamless power distribution method according to claim 1, characterized in that, After establishing a temporary wireless communication connection, the device to be configured with the network establishes an exclusive connection with the device already configured with the network, and notifies other devices already configured with the network that have not established a temporary communication connection with the device to be configured with the network to restore their original state through a connection termination command.

3. The seamless power distribution method according to claim 2, characterized in that, The network distribution triggering command is a network distribution request broadcast by the device to be distributed; The establishment of the temporary wireless communication connection includes: After receiving the network configuration request, the network-configured device activates its own first wireless communication interface; The device to be configured on the network connects to the first wireless communication interface based on the pre-stored first wireless information to establish a temporary wireless communication connection between the configured device and the device to be configured on the network.

4. The seamless power distribution method according to claim 3, characterized in that, After receiving the network configuration request, the network-configured device starts a timer and waits for a random period of time T before checking the network configuration request again. If the request still exists, it activates its own first wireless communication interface. The connection termination command is a connection completion signal; After the device to be configured on the network is connected to the first wireless communication interface, it stops broadcasting the network configuration request signal and broadcasts the connection completion signal. After receiving the connection completion signal, other network-connected devices that have not established a temporary communication connection with the device to be connected will close the activated first wireless communication interface and restore their original state.

5. The seamless power distribution method according to claim 2, characterized in that, After the device to be distributed to the network is powered on, it enables its own second wireless communication interface, and the network distribution trigger command is generated based on the enabled state of the second wireless communication interface; The network-connected device has pre-stored the second wireless information of the second wireless communication interface and is preset with the highest connection priority; The establishment of the temporary wireless communication connection includes: The network-connected device detects the second wireless communication interface and connects to the access point with the highest preset priority based on the pre-stored second wireless information.

6. The seamless power distribution method according to claim 5, characterized in that, The connection termination command is a connection completion signal; After the already configured network device connects to the second wireless communication interface, the device to be configured broadcasts the connection completion signal and rejects the connection of the other already configured network devices; Other network-connected devices will restore their original network connections after receiving the connection completion signal.

7. The seamless power distribution method according to claim 1, characterized in that, This method also includes, After the device to be configured connects to the target wireless network, it sends a registration request to the cloud platform. The cloud platform sends a device binding confirmation request to clients accessing the same network based on the network identifier of the target wireless network. Within the confirmation time window, In response to the client's confirmation, the device to be configured on the network is bound and associated with the client. In response to the client's lack of confirmation, the cloud platform sends a reconfiguration command to the device to be configured.

8. The seamless power distribution method according to claim 7, characterized in that, After receiving the reconfiguration command, the device to be configured in the network re-initiates the network configuration trigger command and blocks the previously configured device with which it established a temporary wireless communication connection, or lowers the connection priority of the configured device. This method also includes, within the confirmation time window, the cloud platform responds to the device identification command from the client, locates the device to be configured corresponding to the device identification command, and controls the device to be configured to output interactive prompts. Furthermore, when the cloud platform fails to successfully send the device binding confirmation request, the corresponding device to be configured will be controlled to enter a locked state that cannot respond to the cloud platform's control commands until the device binding confirmation request is successfully sent. This method also includes, If the cloud platform detects that the device to be configured on the network has been bound to another client, it will at least send a conflict binding notification to the original client. In response to the unbinding command from the original client, the cloud platform removes the binding relationship between the device to be configured and the original client; In response to the original client's command to disable the current client, the cloud platform notifies the device to be configured to block the previously configured device with which it established a temporary wireless communication connection.

9. The seamless power distribution method according to claim 8, characterized in that, In response to the client's lack of confirmation, the cloud platform extracts the identity identifiers of all network-configured devices in the same network based on the network identifier of the target wireless network; The cloud platform sends a reconfiguration command containing the extracted identity identifier to the device to be configured on the network; After receiving the reconfiguration command, the device to be configured re-initiates the configuration trigger command and blocks or lowers the connection priority of the configured device with the identity identifier. In response to the original client's disable command for the current client, the cloud platform extracts the identity identifiers of all configured network devices in the same network based on the network identifier of the wireless network where the current client is located, and notifies the device to be configured to block the configured network devices with that identity identifier.

10. A seamless power distribution system, characterized in that, include: The device to be configured is set to initiate a network distribution trigger command upon power-up, receive the access credential of the target wireless network through a temporary wireless communication connection, and connect to the target wireless network. The network-connected device is configured to respond to the network-connection trigger command, establish the temporary wireless communication connection, and send the access credential. The cloud platform is configured to receive the registration request of the device to be configured, send a binding confirmation request to the corresponding client based on the target wireless network identifier, and perform conflict binding management.