Network distribution method, wireless network distribution system and electronic equipment
By using device characteristic information to classify device blocks and configure parameters in batches when the wireless distribution network system is powered on, the problem of high deployment difficulty and cost of IoT device distribution network is solved, and efficient batch parameter setting is achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- ZHEJIANG DAHUA TECH CO LTD
- Filing Date
- 2026-02-11
- Publication Date
- 2026-05-19
AI Technical Summary
Existing IoT device configuration methods suffer from difficulties in deployment, low efficiency, and high maintenance costs, especially when configuring networks in batches.
When the wireless network distribution system is powered on, the service cards of the wireless devices to be distributed are used to dial up to the Internet, the device characteristic information is determined, and the device characteristic information is sent to the operation and maintenance platform for classification, the device block is determined, and the Internet access parameters of the device block are configured in batches. The wireless devices in the device block use the same Internet access parameters to dial up to the Internet and access the service platform.
It simplifies the deployment process, improves deployment efficiency, reduces operation and maintenance costs, and solves the difficulties and costs of configuring a large number of IoT devices for networking.
Smart Images

Figure CN122069504A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of wireless communication technology, and in particular to a distribution network method, a wireless distribution network system, and an electronic device. Background Technology
[0002] With the development of intelligent infrastructure, IoT devices such as wireless video surveillance are being widely used. To ensure information security, these IoT devices need to be connected to dedicated operator networks (referred to as "private networks") that are isolated from the public internet.
[0003] The current method of configuring IoT devices involves using dedicated network cards provided by operators and configuring specific network parameters to access the dedicated network. This method requires maintenance personnel to configure parameters independently for each device. When configuring a large number of IoT devices, it suffers from high deployment difficulty, low efficiency, and high maintenance costs.
[0004] For existing network configuration methods, when configuring networks for a large number of IoT devices, there are problems such as high deployment difficulty, low efficiency, and high operation and maintenance costs, and no effective solution has yet been proposed. Summary of the Invention
[0005] Therefore, it is necessary to provide a network distribution method, a wireless network distribution system, and an electronic device to address the aforementioned technical problems.
[0006] Firstly, this application provides a network distribution method. Applied to a wireless network distribution system, the wireless network distribution system includes a network end and a device end; the network end includes an operation and maintenance platform and a service platform; the operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network; the device end includes multiple wireless devices, each wireless device being equipped with a public network interface card (NIC) and a service card; the public NIC is used to connect the wireless device to the operation and maintenance platform; the service card is used to connect the wireless device to the service platform, and the method includes:
[0007] When the wireless network configuration system is powered on, the service cards of each wireless device to be configured dial up to the Internet, determine the device characteristic information of the wireless devices to be configured, and send the device characteristic information of the wireless devices to the operation and maintenance platform using the public network cards of each wireless device to be configured. The device characteristic information includes service card information and wireless device identity information. The device characteristic information is used to instruct the operation and maintenance platform to classify the wireless devices to be configured, determine the device block corresponding to each wireless device to be configured, determine the Internet access parameters corresponding to the device block as the Internet access parameters corresponding to each wireless device to be configured in the device block, and return the Internet access parameters corresponding to each wireless device to be configured. The device block is a set of wireless devices with consistent service card information.
[0008] Based on the internet access parameters corresponding to the wireless devices to be configured on the network sent by the operation and maintenance platform, the service cards of each wireless device to be configured on the network are used to dial up and access the internet, thereby connecting each wireless device to the service platform.
[0009] In one embodiment, when the wireless network distribution system is powered on, the service cards of each wireless device to be distributed to the network are used to dial up and access the internet, and the device characteristic information of the wireless devices to be distributed to the network is determined, including:
[0010] When the wireless network configuration system is powered on, the service cards of each wireless device to be configured are used to dial up to the Internet, and the wireless devices that failed to dial up are identified.
[0011] Determine the device characteristic information of each of the wireless devices that failed to dial.
[0012] In one embodiment, it further includes:
[0013] When the network access parameters corresponding to the wireless devices to be configured are sent by the operation and maintenance platform and are the parameters with added test flags, the network access parameters with added test flags are used to dial up the network using the service cards of each wireless device to be configured, and the connection result of whether to access the service platform through dial-up network access is obtained, and the connection result is returned to the operation and maintenance platform.
[0014] Secondly, this application also provides a network distribution method applied to a wireless network distribution system, the wireless network distribution system including a network end and a device end; the network end includes an operation and maintenance platform and a service platform; the operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network; the device end includes multiple wireless devices, each of the wireless devices being equipped with a public network card and a service card; the public network card is used to connect the wireless device to the operation and maintenance platform; the service card is used to connect the wireless device to the service platform, the method including:
[0015] Based on the device characteristic information of each wireless device to be configured on the network received from the device terminal, the wireless devices to be configured on the network are classified and the device block corresponding to each wireless device to be configured on the network is determined; the device block is a set of wireless devices with consistent service card information; the device characteristic information is the service card information and wireless device identity information determined when each wireless device to be configured on the network dials up to the Internet using its own service card when the wireless network configuration system is powered on.
[0016] The internet access parameters corresponding to the device block are determined as the internet access parameters corresponding to each wireless device to be configured in the device block.
[0017] The network access parameters corresponding to each wireless device to be configured are sent to the wireless device to be configured, so as to instruct the wireless device to be configured to dial up and access the service platform using its own service card.
[0018] In one embodiment, determining the internet access parameters corresponding to the device block as the internet access parameters corresponding to each of the wireless devices to be configured in the device block includes:
[0019] By adding test flags to the internet access parameters corresponding to the device block, the internet access parameters corresponding to the device block after adding test flags are obtained.
[0020] The network access parameters corresponding to the device block with added test flags are sent to a wireless device in the device block that is to be configured to access the network, so as to instruct the wireless device to access the network using its own service card, and return the connection result of whether or not to access the service platform through dial-up network access to the operation and maintenance platform.
[0021] When the received connection result indicates that the wireless device to be configured to access the service platform, the Internet access parameters corresponding to the device block are determined as the Internet access parameters corresponding to each wireless device to be configured in the device block.
[0022] In one embodiment, sending the internet access parameters, after adding a test flag, corresponding to the device block to a wireless device within the device block that is to be configured with a network includes:
[0023] The wireless devices to be configured in the device block are divided into non-low-power devices and low-power devices;
[0024] When there is a non-low-power device among the wireless devices to be configured in the device block, a wireless device is randomly selected from the non-low-power devices as the target device; or, when there is no non-low-power device among the wireless devices to be configured in the device block, a wireless device with a power consumption that meets the preset requirements is selected from the low-power devices as the target device.
[0025] The internet access parameters corresponding to the device block with the added test flag are sent to the target device to instruct the target device to use its own service card to dial up to the internet, and the connection result of whether or not to access the service platform through dial-up internet access is returned to the operation and maintenance platform.
[0026] Thirdly, this application also provides a network distribution method applied to a wireless network distribution system, wherein the wireless network distribution system includes a device end and a network end; the network end includes an operation and maintenance platform and a service platform; the operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network; the device end includes multiple wireless devices, each of which is equipped with a public network card and a service card; the public network card is used to connect the wireless device to the operation and maintenance platform; the service card is used to connect the wireless device to the service platform, and the method includes:
[0027] The device is configured to, upon powering up the wireless network distribution system, use the service cards of each wireless device to be configured to dial up and access the internet, identify the wireless devices that failed to dial up, and determine the device characteristic information of each of the wireless devices that failed to dial up; the device is also configured to use the public network cards of each of the wireless devices that failed to dial up to send the device characteristic information to the operation and maintenance platform; the device characteristic information includes service card information and wireless device identity information;
[0028] The operation and maintenance platform is used to classify the wireless devices that failed to dial up based on the device feature information of each wireless device that failed to dial up, and to determine the device block corresponding to each wireless device that failed to dial up; the device block is a set of wireless devices with the same service card information; the operation and maintenance platform is also used to add test flags to the Internet access parameters corresponding to the device block on a unit basis, to obtain the Internet access parameters corresponding to the device block after adding test flags, and to send the Internet access parameters corresponding to the device block after adding test flags to a wireless device in the device block that needs to be configured for network.
[0029] The device is further configured to, upon receiving from the operation and maintenance platform that the internet access parameters corresponding to the wireless device to be configured are the internet access parameters with added test flags, dial up the wireless device to be configured using the service card of the wireless device to be configured corresponding to the internet access parameters with added test flags, and return the connection result of whether the wireless device to be configured is connected to the service platform to the operation and maintenance platform at the network end;
[0030] The operation and maintenance platform is also used to determine the Internet access parameters corresponding to the device block as the Internet access parameters corresponding to each wireless device to be configured in the device block when it receives the connection result sent by the device end indicating that the wireless device to be configured accesses the service platform, and return the Internet access parameters corresponding to each wireless device to be configured to the device end.
[0031] The device is also used to dial up to the Internet based on the Internet access parameters corresponding to each of the wireless devices to be configured, which are sent by the operation and maintenance platform, and to connect each of the wireless devices to the service platform.
[0032] Fourthly, this application also provides a wireless network distribution system. The system includes a device end and a network end;
[0033] The device is used to execute the network distribution method described in the first aspect above;
[0034] The network terminal is used to execute the network distribution method described in the second aspect above.
[0035] In one embodiment, the device includes multiple wireless devices, each of which includes a card slot module. The card slot module includes a first card slot, a second card slot, and a card slot control unit.
[0036] The first card slot is for inserting a public network card; the second card slot is for inserting a service card.
[0037] The card slot control unit is connected to the first card slot and the second card slot respectively, and is used to control the wireless device to switch between the first card slot and the second card slot. When the wireless device is connected to the first card slot, the public network card works, and when the wireless device is connected to the second card slot, the service card works.
[0038] Fifthly, this application also provides an electronic device. The electronic device includes a memory and a processor, the memory being connected to the processor for storing programs;
[0039] The processor is used to implement the network distribution method described in the first aspect, the network distribution method described in the second aspect, or the network distribution method described in the third aspect by running the program in the memory.
[0040] The aforementioned network distribution method, wireless network distribution system, and electronic device, upon powering on, utilize the service cards of each wireless device to dial up and access the internet. This determines the device characteristic information of the wireless devices and uses this information to instruct the maintenance platform to categorize them, identifying the corresponding device block. Specifically, wireless devices with identical service card information are grouped into the same device block based on their device characteristic information. Furthermore, the internet access parameters corresponding to the device block are used as the internet access parameters for each wireless device within that block. This enables batch parameter setting for the wireless devices within the block and returns the settings to each device, allowing each device to dial up and access the service platform using its own service card based on the received internet access parameters. By dividing the network into device blocks, all wireless devices within the same device block correspond to the same internet access parameters. By configuring the internet access parameters of the wireless devices to be configured according to the device blocks, batch parameter settings for the wireless devices to be configured can be achieved, simplifying the deployment process, improving deployment efficiency, saving operation and maintenance costs, and solving the problems of high deployment difficulty, low efficiency, and high operation and maintenance costs in the existing network configuration method when it is necessary to configure a batch of IoT devices.
[0041] Details of one or more embodiments of this application are set forth in the following drawings and description to make other features, objects and advantages of this application more readily apparent. Attached Figure Description
[0042] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:
[0043] Figure 1A hardware structure block diagram of a terminal for a network distribution method provided in an embodiment of this application;
[0044] Figure 2 A flowchart illustrating a first power distribution method provided in an embodiment of this application;
[0045] Figure 3 A flowchart illustrating a second power distribution method provided in an embodiment of this application;
[0046] Figure 4 A flowchart of a third power distribution method provided in an embodiment of this application;
[0047] Figure 5 This is a structural block diagram of a wireless distribution network system provided in an embodiment of this application. Detailed Implementation
[0048] To better understand the purpose, technical solution, and advantages of this application, the application is described and illustrated below in conjunction with the accompanying drawings and embodiments.
[0049] Unless otherwise defined, the technical or scientific terms used in this application shall have the general meaning understood by one of ordinary skill in the art to which this application pertains. Words such as “a,” “an,” “an,” “the,” “the,” and “these” used in this application do not indicate quantitative limitation and may be singular or plural. The terms “comprising,” “including,” “having,” and any variations thereof used in this application are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or device that comprises a series of steps or modules (units) is not limited to the listed steps or modules (units) but may include steps or modules (units) not listed, or may include other steps or modules (units) inherent to these processes, methods, products, or devices. Words such as “connected,” “linked,” and “coupled” used in this application are not limited to physical or mechanical connections but may include electrical connections, whether direct or indirect. “Multiple” used in this application refers to two or more. “And / or” describes the relationship between related objects, indicating that three relationships may exist; for example, “A and / or B” can represent: A alone, A and B simultaneously, and B alone. Normally, the character " / " indicates that the objects before and after it are in an "or" relationship. The terms "first," "second," "third," etc., used in this application are merely to distinguish similar objects and do not represent a specific order of objects.
[0050] The method embodiments provided in this example can be executed on a terminal, computer, or similar computing device. For example, it can run on a terminal. Figure 1 This is a hardware structure block diagram of the terminal in the network distribution method of this embodiment. For example... Figure 1As shown, a terminal may include one or more ( Figure 1 Only one is shown in the diagram. A processor 102 and a memory 104 for storing data are also included. The processor 102 may be, but is not limited to, a microprocessor (MCU) or a programmable logic device (FPGA). The terminal may also include a transmission device 106 for communication functions and an input / output device 108. Those skilled in the art will understand that… Figure 1 The structure shown is for illustrative purposes only and does not limit the structure of the terminal described above. For example, the terminal may also include components that are larger than... Figure 1 The more or fewer components shown, or having the same Figure 1 The different configurations shown are illustrated.
[0051] The memory 104 can be used to store computer programs, such as application software programs and modules, like the computer program corresponding to the network distribution method in this embodiment. The processor 102 executes various functional applications and data processing by running the computer program stored in the memory 104, thereby implementing the above-described method. The memory 104 may include high-speed random access memory and may also include non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid-state memory. In some instances, the memory 104 may further include memory remotely located relative to the processor 102, and these remote memories can be connected to the terminal via a network. Examples of such networks include, but are not limited to, the Internet, corporate intranets, local area networks, mobile communication networks, and combinations thereof.
[0052] The transmission device 106 is used to receive or send data via a network. This network includes a wireless network provided by the terminal's communication provider. In one example, the transmission device 106 includes a Network Interface Controller (NIC), which can connect to other network devices via a base station to communicate with the Internet. In another example, the transmission device 106 can be a Radio Frequency (RF) module used for wireless communication with the Internet.
[0053] This embodiment provides a network distribution method applied to a wireless network distribution system. The wireless network distribution system includes a network end and a device end. The network end includes an operation and maintenance platform and a service platform. The operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network. The device end includes multiple wireless devices, each wireless device having a public network card and a service card installed. The public network card is used to connect the wireless device to the operation and maintenance platform; the service card is used to connect the wireless device to the service platform. Figure 2 This is a flowchart of the first distribution network method in this embodiment, as follows: Figure 2 As shown, the process includes the following steps:
[0054] Step S210: When the wireless network configuration system is powered on, the service cards of each wireless device to be configured are used to dial up and access the Internet. The device characteristic information of the wireless devices to be configured is determined, and the device characteristic information of each wireless device to be configured is sent to the operation and maintenance platform using the public network cards of each wireless device to be configured. The device characteristic information includes service card information and wireless device identity information. The device characteristic information is used to instruct the operation and maintenance platform to classify the wireless devices to be configured, determine the device block corresponding to each wireless device to be configured, determine the Internet access parameters corresponding to the device block as the Internet access parameters corresponding to each wireless device to be configured in the device block, and return the Internet access parameters corresponding to each wireless device to be configured. A device block is a set of wireless devices with consistent service card information.
[0055] In this step, the aforementioned public network can be an open internet network. The aforementioned private network can be a communication network built by a specific organization (such as an enterprise or unit) and isolated from the public network. The aforementioned wireless devices can be data acquisition and transmission terminals deployed at the front end of enterprise parks, industrial parks, etc., for example, cellular wireless devices. The aforementioned operation and maintenance platform is a platform for operation and maintenance personnel to maintain and monitor wireless devices, deployed in a public network environment. The aforementioned operation and maintenance platform is used to receive device characteristic information from a large number of dispersed wireless devices, analyze this device characteristic information, intelligently classify wireless devices into different logical groups (device blocks), and perform batch configuration (issuing internet access parameters) operations based on the grouping results, accurately distributing the internet access parameters of the private network to the corresponding wireless devices. The aforementioned operation and maintenance platform can also be used to interact with operation and maintenance personnel through a web or app (application) management interface to set operator private network parameters, monitor device status, view grouping results, and manually intervene in configurations. The aforementioned wireless devices to be configured are the wireless devices that need to be configured.
[0056] The aforementioned business platform is used in the production environment to support business functions such as monitoring, analysis, and alarms. Deployed in a private network environment, this platform ensures the absolute security of critical enterprise data (such as surveillance videos and production data). The private network and public network are physically or logically completely isolated; therefore, the operations and maintenance platform and the business platform are also physically isolated. The business platform connects to various wireless devices, enabling it to acquire data from each device and information about the wireless network coverage of their environment. For example, the platform can acquire information collected by wireless monitoring devices (such as video, images, and audio). Each wireless device has two SIM card slots: a first slot and a second slot. When a service card is inserted into the second slot, the wireless device needs to be configured with specific wireless parameters (internet access parameters) provided by the operator to connect to the private network and thus connect to the business platform. When an operations and maintenance card (public network card) is inserted into the first card slot, and a wireless device connects to it, it can connect to the public network without needing to configure internet access parameters, thus enabling the wireless device to access the operations and maintenance platform. Both the aforementioned service card and public network card are SIM (Subscriber Identity Module) cards. The aforementioned internet access parameters are a set of key data customized by the operator for enterprise customers, used for cellular network access authentication and routing configuration. When the wireless device's cellular module uses these internet access parameters to dial, the operator's network equipment will redirect its data traffic to the designated private network based on these parameters.
[0057] The above-mentioned process involves using the service cards of each wireless device to dial up and access the internet upon power-up of the wireless network distribution system. This process determines the device characteristics of the wireless devices. Alternatively, upon power-up, the device may default to connecting to the second SIM card slot and activating the service card. When the dial-up connection is successful, the wireless device successfully connects to the service platform. If the connection fails, the system identifies the wireless device that failed to connect and determines its device characteristics. However, if the wireless network distribution system is powered on for the first time, the service cards of the wireless devices will not be configured with the corresponding internet access parameters, resulting in all devices failing to connect. In this case, all wireless devices will be classified as "failed to connect" wireless devices. When the wireless network distribution system is not powered on for the first time and requires batch network configuration of wireless devices, upon receiving the network configuration request, the service cards of each wireless device to be configured are used to dial up to the Internet. Some wireless devices to be configured have pre-configured Internet access parameters and can successfully dial up to the Internet and connect to the service platform. Other wireless devices to be configured have not pre-configured Internet access parameters or the pre-configured Internet access parameters cannot successfully dial up to the Internet. These wireless devices to be configured are identified as wireless devices that have failed to dial up, and then the device characteristic information of each wireless device that has failed to dial up is determined.
[0058] The above-mentioned method of using the public network cards of each wireless device to be configured to send the device characteristic information of the wireless device to the operation and maintenance platform can be achieved by connecting the wireless device to the first card slot, enabling the public network card to work, and using the public network cards of each wireless device to be configured to send the device characteristic information of the wireless device to the operation and maintenance platform.
[0059] The aforementioned device characteristic information for determining the wireless device to be configured for network connection can be obtained by switching from normal operation mode to intelligent network configuration diagnostic mode when the wireless device fails to dial up to the internet. In intelligent network configuration diagnostic mode, the wireless device will read the service card information of the currently failing wireless device from the service card, obtain the cell identification information from the communication module, and read the wireless device identity information from the wireless device's own non-volatile memory through AT commands or module application programming interface (API). The aforementioned service card information of the wireless device may include PLMN (Public Land Mobile Network), SPN (Service Provider Name), GID1 (Group Identifier Level 1), GID2 (Group Identifier Level 2), etc. The PLMN is used to indicate the operator to which the SIM card belongs, and the GID1 or GID2 is the group identifier. The group identifier is information customized by the operator for enterprise customers (group customers) and is written into the SIM card to identify the enterprise or project to which the SIM card belongs. The aforementioned group identifier is crucial internal evidence for determining whether multiple SIM cards belong to the "same batch" or "same contract." The aforementioned cell identification information can be a CELLID (cell identifier code). The CELLID can be the ID (identifier) of all cellular base station cells that the device can currently search, used to analyze the network coverage of the device's location and determine whether it's a signal blind spot, signal interference, or a base station configuration problem. In this embodiment, the deployment range of the device can be narrowed down based on the CELLIDs of the serving cell and neighboring cells. Additionally, the aforementioned wireless device identity information can be a device SN (Serial Number). The device SN is a unique identifier for the wireless device hardware, used to accurately map each physical device on the operation and maintenance platform.
[0060] Step S220: Based on the Internet access parameters corresponding to the wireless devices to be configured on the network sent by the operation and maintenance platform, dial-up Internet access is performed using the service cards of each wireless device to be configured on the network, and each wireless device to be configured on the network is connected to the service platform.
[0061] In this step, based on the internet access parameters corresponding to the wireless devices to be configured on the network sent by the operation and maintenance platform, the service cards of each wireless device to be configured on the network dial up to the internet, and connect each wireless device to the service platform. Alternatively, based on the internet access parameters corresponding to the wireless devices to be configured on the network sent by the operation and maintenance platform, the wireless devices are connected to the second card slot, the service cards are activated, and the service cards of each wireless device to be configured on the network dial up to the internet, thus connecting each wireless device to the service platform.
[0062] Steps S210 to S220, upon powering on the wireless network distribution system, involve using the service cards of each wireless device to dial up and access the internet, determining the device characteristic information of the wireless devices, and using this information to instruct the maintenance platform to categorize the wireless devices and determine the device block corresponding to each device. Specifically, wireless devices with identical service card information are grouped into the same device block based on their device characteristic information. Then, the internet access parameters corresponding to the device block are used as the internet access parameters for each wireless device within that block, enabling batch parameter settings for the wireless devices in the block. The settings are then returned to each wireless device, allowing them to dial up and access the service platform using their own service cards based on the received internet access parameters. By dividing the network into device blocks, all wireless devices within the same device block correspond to the same internet access parameters. By configuring the internet access parameters of the wireless devices to be configured according to the device blocks, batch parameter settings for the wireless devices to be configured can be achieved, simplifying the deployment process, improving deployment efficiency, saving operation and maintenance costs, and solving the problems of high deployment difficulty, low efficiency, and high operation and maintenance costs in the existing network configuration method when it is necessary to configure a batch of IoT devices.
[0063] In one embodiment, step S210 involves, upon completion of the wireless network configuration system power-on, using the service cards of each wireless device to be configured to dial up and access the internet, and determining the device characteristic information of the wireless devices to be configured, including:
[0064] Step S212: When the wireless network configuration system is powered on, use the service cards of each wireless device to be configured to dial up to the Internet and identify the wireless devices that failed to dial up.
[0065] The above-mentioned method involves using the service cards of each wireless device to dial up to the internet when the wireless network distribution system is powered on, and identifying the wireless devices that failed to dial up. This can be achieved by defaulting to connecting the wireless devices to the second card slot and enabling the service cards to work when the wireless network distribution system is powered on. The wireless devices that failed to dial up are then identified as those that failed to dial up.
[0066] Step S214: Determine the device characteristic information of each wireless device that failed to dial.
[0067] The aforementioned determination of the device characteristic information of each wireless device that failed to dial up can be achieved by the wireless device switching from normal working mode to intelligent network configuration diagnostic mode when the wireless device fails to dial up to the Internet. In intelligent network configuration diagnostic mode, the wireless device reads the service card information of the wireless device that failed to dial up through AT commands or module API, obtains the cell identification information from the communication module, and reads the wireless device identity information from the wireless device's own non-volatile memory.
[0068] Steps S212 to S214 above involve using the service cards of each wireless device to dial up to the internet when the wireless network distribution system is powered on, identifying wireless devices that failed to dial up, and then determining the device characteristic information of each failed wireless device. This determination facilitates the subsequent classification of the wireless devices to be distributed based on the device characteristic information of the failed wireless devices, determining the device block corresponding to each wireless device, and then distributing internet access parameters on a device block basis.
[0069] Specifically, in one embodiment, it further includes:
[0070] Step S230: When the network access parameters corresponding to the wireless devices to be configured are received from the operation and maintenance platform and are the network access parameters with the added test flag, the service cards of each wireless device to be configured are used to dial up to the Internet based on the network access parameters with the added test flag, and the connection result of whether to access the service platform through dial-up Internet access is obtained, and the connection result is returned to the operation and maintenance platform.
[0071] Specifically, when the network access parameters corresponding to the wireless devices to be configured are received from the operation and maintenance platform with the addition of a test flag, the service cards of each wireless device to be configured are used to dial up to the internet based on the network access parameters with the added test flag. The connection result of whether or not the device accesses the service platform via dial-up internet access is obtained, and the connection result is returned to the operation and maintenance platform. Alternatively, when the network access parameters corresponding to the wireless devices to be configured are received from the operation and maintenance platform with the addition of a test flag, the wireless devices are connected to the second card slot, the service cards are activated, and the network access parameters with the added test flag are used to dial up to the internet based on the service cards of each wireless device to be configured. The connection result of whether or not the device accesses the service platform via dial-up internet access is obtained, the wireless devices are connected to the first card slot, the public network cards are activated, and the connection result is returned to the operation and maintenance platform using the public network cards of each wireless device to be configured.
[0072] The aforementioned internet access parameters with added test flags can carry a test flag and require the connection results to be returned to the operation and maintenance platform. This allows the platform to determine whether to batch-distribute the internet access parameters to the entire device block. Specifically, if the connection results show that the internet access parameters with added test flags, when used with the service cards of each wireless device awaiting network configuration, can connect to the service platform, then the internet access parameters with added test flags can be used as internet access parameters for all wireless devices awaiting network configuration in the current device block. Distributing these parameters to each wireless device in the current device block allows them to connect to the service platform using their own service cards. If the connection results show that the internet access parameters with added test flags, when used with the service cards of each wireless device awaiting network configuration, cannot connect to the service platform, then the internet access parameters with added test flags cannot be used as internet access parameters for all wireless devices awaiting network configuration in the current device block. In this case, the internet access parameters need to be checked for correctness, modified, and then randomly selected to distribute the parameters again.
[0073] In addition, this embodiment also provides a network distribution method applied to a wireless network distribution system. The wireless network distribution system includes a network end and a device end. The network end includes an operation and maintenance platform and a service platform. The operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network. The device end includes multiple wireless devices, each wireless device having a public network card and a service card installed. The public network card is used to connect the wireless device to the operation and maintenance platform; the service card is used to connect the wireless device to the service platform. Figure 3 This is a flowchart of the second distribution network method in this embodiment, as follows: Figure 3 As shown, the process includes the following steps:
[0074] Step S310: Based on the device characteristic information of each wireless device to be configured in the network sent by the device terminal, classify the wireless devices to be configured in the network and determine the device block corresponding to each wireless device to be configured in the network. The device block is a set of wireless devices with consistent service card information. The device characteristic information is the service card information and wireless device identity information determined when each wireless device to be configured in the network dials up and connects to the Internet using its own service card when the wireless network configuration system is powered on.
[0075] When the device is powered on in the wireless network configuration system, it uses the service card of each wireless device to dial up to the Internet, determines the device characteristic information of the wireless devices, and sends the device characteristic information of each wireless device to the operation and maintenance platform using the public network card of each wireless device. The operation and maintenance platform will then classify the wireless devices to be configured based on the device characteristic information sent by the device and determine the device block corresponding to each wireless device.
[0076] The above-mentioned classification of wireless devices to be configured in the network, based on the device characteristic information received from the receiving device terminal, and the determination of the device block corresponding to each wireless device, can be based on the service card information and cell identifier information of the wireless devices in the received device characteristic information. Wireless devices with the same service card information and cell identifier information are grouped into the same device block. Alternatively, wireless devices with identical CELLID, PLMN, SPN, GID1, GID2, etc., can be grouped into one device block.
[0077] Step S320: Determine the Internet access parameters corresponding to the device block as the Internet access parameters corresponding to each wireless device to be configured in the device block.
[0078] The above-mentioned determination of the internet access parameters corresponding to the device block as the internet access parameters corresponding to each wireless device in the device block to be configured with the network can be achieved by determining the internet access parameters corresponding to the device block based on the identity information of each wireless device in the device block. In other words, based on the identity information of each wireless device in the device block, the internet access parameters corresponding to the device block are bound to each wireless device in the device block to be configured with the network, so as to facilitate the accurate distribution of internet access parameters. The above-mentioned determination of the internet access parameters corresponding to the device block can also be based on a mapping table between device blocks and internet access parameters. This mapping table between device blocks and internet access parameters can be a mapping table between internet access parameters and device blocks provided by the operator.
[0079] Step S330: Send the Internet access parameters corresponding to each wireless device to be configured to the wireless device to be configured, so as to instruct the wireless device to be configured to dial up and access the service platform using its own service card.
[0080] Steps S310 to S330 above classify the wireless devices to be configured based on the device characteristic information received from the device terminal, determine the device block corresponding to each wireless device, and then determine the internet access parameters corresponding to the device block as the internet access parameters corresponding to each wireless device in the device block. The internet access parameters corresponding to each wireless device are then sent to the corresponding wireless device to instruct it to use its own service card to dial up and access the service platform. By dividing the network into device blocks, all wireless devices in the same device block correspond to the same internet access parameters. By configuring the internet access parameters of the wireless devices to be configured according to the device blocks, batch parameter settings for the wireless devices to be configured are achieved, simplifying the deployment process, improving deployment efficiency, saving maintenance costs, and solving the problems of high deployment difficulty, low efficiency, and high maintenance costs in existing network configuration methods when configuring a batch of IoT devices.
[0081] In one embodiment, step S320, determining the internet access parameters corresponding to the device block as the internet access parameters corresponding to each wireless device to be configured in the device block, includes:
[0082] Step S322: On a device block basis, add test flags to the Internet access parameters corresponding to the device block to obtain the Internet access parameters corresponding to the device block after adding test flags.
[0083] The aforementioned addition of a test flag does not physically modify the values of parameters such as APN (Access Point Name) and username. Instead, it sets a specific control field or status bit in the metadata or protocol frame of the issued command. The above method, which adds a test flag to the internet access parameters corresponding to a device block to obtain the internet access parameters after adding the test flag, can also be done by adding a specific control field or status bit to the internet access parameters corresponding to a device block to obtain the internet access parameters after adding the test flag.
[0084] Step S324: Send the Internet access parameters with added test flags corresponding to the device block to a wireless device in the device block that is to be configured to access the Internet, so as to instruct the wireless device to access the Internet using its own service card, and return the connection result of whether to access the service platform through dial-up Internet access to the operation and maintenance platform.
[0085] The aforementioned method sends the internet access parameters, marked with a test flag corresponding to the device block, to a wireless device within the device block that is to be configured for network access. This instructs the wireless device to use its own service card to dial up for internet access and returns the connection result (whether it connects to the service platform via dial-up) to the operation and maintenance platform. This can be achieved by dividing the wireless devices in the device block into non-low-power devices and low-power devices. If a non-low-power device exists in the device block, a wireless device is randomly selected from the non-low-power devices as the target device. Alternatively, if no non-low-power device exists in the device block, a wireless device with sufficient power consumption (meeting a preset requirement) is selected from the low-power devices as the target device. The internet access parameters, marked with a test flag corresponding to the device block, are then sent to the target device to instruct it to use its own service card to dial up for internet access and return the connection result (whether it connects to the service platform via dial-up) to the operation and maintenance platform.
[0086] Step S326: When the received connection result indicates that the wireless device to be configured to access the service platform, the Internet access parameters corresponding to the device block are determined to be the Internet access parameters corresponding to each wireless device to be configured in the device block.
[0087] Steps S322 to S326 above involve adding test flags to the internet access parameters corresponding to each device block, obtaining the internet access parameters with added test flags, and sending these parameters to a wireless device within the device block that is to be configured for network access. This instructs the wireless device to use its own service card to dial up for internet access. The connection result, indicating whether the device accesses the service platform via dial-up, is returned to the operation and maintenance platform. Furthermore, when the received connection result indicates that the wireless device is to be configured for network access, the internet access parameters corresponding to the device block are determined as the internet access parameters for each wireless device within the device block that is to be configured for network access. The process then uses the internet access parameters with added test flags to configure a wireless device within the device block. Dial-up internet access is performed to test whether the internet parameters after adding a test flag can connect the wireless devices to the service platform. Once the test confirms that the internet parameters after adding the test flag can connect the wireless devices to the service platform, the internet parameters corresponding to the device block are determined as the internet parameters corresponding to each wireless device to be connected within the device block. By determining the internet parameters corresponding to each wireless device to be connected, it is easier to distribute the verified internet parameters, which can dial up and connect normally, by device block. This enables batch parameter settings for the wireless devices to be connected, simplifying the deployment process, improving deployment efficiency, saving operation and maintenance costs, and solving the problems of high deployment difficulty, low efficiency, and high operation and maintenance costs in existing network configuration methods when configuring a large number of IoT devices.
[0088] In one embodiment, step S324, sending the internet access parameters with the added test flag corresponding to the device block to a wireless device within the device block that needs to be configured with the network, includes:
[0089] Step S3242: Divide the wireless devices to be networked in the device block into non-low-power devices and low-power devices.
[0090] The aforementioned low-power devices can be battery-powered devices, i.e., devices with limited energy budgets, such as remote controls and Bluetooth thermometers and hygrometers. The aforementioned non-low-power devices can be devices whose radio frequency transmission / dialing attempts are never limited due to "power saving," i.e., devices that can operate continuously and make frequent dialing attempts. Specifically, the aforementioned non-low-power devices can be devices that require continuous external power (powered by AC mains or by a combination of a large battery and solar power), such as fixed cameras and industrial gateways.
[0091] Step S3244: When there is a non-low-power device among the wireless devices to be networked in the device block, randomly select a wireless device from the non-low-power devices as the target device; or, when there is no non-low-power device among the wireless devices to be networked in the device block, select a wireless device from the low-power devices whose power consumption meets the preset requirements as the target device.
[0092] The aforementioned selection of a wireless device from low-power devices that meets a preset power requirement as the target device can be either selecting the wireless device with the highest power consumption or selecting a wireless device whose power consumption reaches a preset threshold. Meeting the preset power requirement means that the power is sufficient for the wireless device to attempt to make a call. The preset threshold can be specifically set according to the specific device or application requirements; this embodiment does not impose a specific limitation, as long as it ensures that the wireless device with power reaching the preset threshold can attempt to make a call.
[0093] Step S3246: Randomly select a wireless device from the non-low-power devices as the target device.
[0094] The aforementioned target device can be a device used to attempt dial-up internet access.
[0095] Step S3248: Send the Internet access parameters with added test flags corresponding to the device block to the target device to instruct the target device to use its own service card to dial up to the Internet, and return the connection result of whether or not to access the service platform through dial-up Internet access to the operation and maintenance platform.
[0096] Steps S3242 to S3248 above involve dividing the wireless devices to be networked in the device block into non-low-power devices and low-power devices. When a non-low-power device exists in the device block, a wireless device is randomly selected from the non-low-power devices as the target device. Alternatively, when no non-low-power device exists in the device block, a wireless device with sufficient power consumption (meeting a preset requirement) is selected from the low-power devices as the target device. Then, the internet access parameters corresponding to the device block, with added test flags, are sent to the target device to instruct it to use its own service card to dial up for internet access, and to indicate whether it is accessing the service platform via dial-up. The connection result from the platform is returned to the operation and maintenance platform. The platform selects a non-low-power device or a low-power device with a preset power requirement from the device block to attempt to dial up to the Internet. This tests whether the current Internet parameters can be used to dial up to the Internet for the wireless devices in the device block. Once it is confirmed that the Internet parameters can be used to dial up to the Internet for the wireless devices in the device block, the Internet parameters are distributed on a per-device basis. This enables batch parameter settings for the wireless devices to be configured, simplifies the deployment process, improves deployment efficiency, saves operation and maintenance costs, and solves the problems of high deployment difficulty, low efficiency, and high operation and maintenance costs in the existing network configuration method when configuring a batch of IoT devices.
[0097] In addition, this embodiment provides a network distribution method applied to a wireless network distribution system. The wireless network distribution system includes a device end and a network end. The network end includes an operation and maintenance platform and a service platform. The operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network. The device end includes multiple wireless devices, each wireless device having a public network card and a service card installed. The public network card is used to connect the wireless device to the operation and maintenance platform; the service card is used to connect the wireless device to the service platform. Figure 4 This is a flowchart of the third distribution network method in this embodiment, as follows: Figure 4 As shown, the process includes the following steps:
[0098] Step S410, on the device side, is used to dial up to the Internet using the service cards of each wireless device to be configured when the wireless network configuration system is powered on, identify the wireless devices that failed to dial up, and determine the device characteristic information of each wireless device that failed to dial up; the device side is also used to send the device characteristic information to the operation and maintenance platform using the public network cards of each wireless device that failed to dial up; the device characteristic information includes service card information and wireless device identity information;
[0099] Step S420: The operation and maintenance platform is used to classify the wireless devices that failed to dial up based on the device characteristic information of each wireless device that failed to dial up sent by the device terminal, and determine the device block corresponding to each wireless device that failed to dial up. A device block is a collection of wireless devices with the same service card information. The operation and maintenance platform is also used to add test flags to the Internet access parameters corresponding to the device block on a unit basis, to obtain the Internet access parameters corresponding to the device block after adding test flags, and to send the Internet access parameters corresponding to the device block after adding test flags to a wireless device in the device block that needs to be configured for network.
[0100] Step S430, on the device side, when the Internet access parameters corresponding to the wireless device to be configured are sent by the operation and maintenance platform and are Internet access parameters with added test flag, the device uses the service card of the wireless device to be configured to dial up to the Internet based on the Internet access parameters with added test flag and returns the connection result of whether the wireless device to be configured is connected to the service platform to the network side.
[0101] Step S440, the operation and maintenance platform is also used to determine the Internet access parameters corresponding to the device block as the Internet access parameters corresponding to each wireless device to be configured in the device block when it receives the connection result indication sent by the device end to the wireless device to be configured to access the service platform, and return the Internet access parameters corresponding to each wireless device to be configured to the device end.
[0102] In step S450, the device side is also used to dial up to the Internet based on the Internet access parameters corresponding to each wireless device to be configured, which are sent by the operation and maintenance platform, and to connect each wireless device to the service platform.
[0103] In steps S410 to S450 above, when the device is powered on in the wireless network configuration system, it attempts to dial up to the internet using the service cards of each wireless device to be configured. This identifies the wireless devices that failed to connect and determines their device characteristics. Then, based on the device characteristics received from the device, the maintenance platform categorizes the failed wireless devices, identifies the corresponding device blocks, and adds test flags to the internet access parameters for each device block. This results in the internet access parameters with added test flags corresponding to the device block, which are then sent to one of the wireless devices within that device block. Finally, the device receives the connection information from the maintenance platform. When the internet access parameters corresponding to the wireless devices in the network configuration are those after adding a test flag, based on these parameters, the service card of the wireless device to be configured (corresponding to the parameters after adding the test flag) is used to dial up and connect to the internet. The connection result of whether the wireless device to be configured is connected to the service platform is returned to the network operation and maintenance platform. Then, when the operation and maintenance platform receives the connection result from the device indicating that the wireless device to be configured is connected to the service platform, it determines the internet access parameters corresponding to the device block as the internet access parameters corresponding to each wireless device to be configured in the device block. Finally, based on the internet access parameters corresponding to each wireless device to be configured received from the operation and maintenance platform, the device uses the service card of each wireless device to dial up and connect to the service platform. By dividing the network into device blocks, all wireless devices within the same device block correspond to the same internet access parameters. By configuring the internet access parameters of the wireless devices to be configured according to the device blocks, batch parameter settings for the wireless devices to be configured can be achieved, simplifying the deployment process, improving deployment efficiency, saving operation and maintenance costs, and solving the problems of high deployment difficulty, low efficiency, and high operation and maintenance costs in the existing network configuration method when it is necessary to configure a batch of IoT devices.
[0104] It should be understood that although the steps in the flowcharts of the embodiments described above are shown sequentially according to the arrows, these steps are not necessarily executed in the order indicated by the arrows. Unless explicitly stated herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least some steps in the flowcharts of the embodiments described above may include multiple steps or multiple stages. These steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these steps or stages is not necessarily sequential, but can be performed alternately or in turn with other steps or at least some of the steps or stages of other steps.
[0105] Based on the same inventive concept, this embodiment also provides a wireless distribution network system for implementing the above embodiments and preferred embodiments, which will not be repeated hereafter. The terms "module," "unit," "subunit," etc., used below refer to combinations of software and / or hardware that perform a predetermined function. Although the apparatus described in the following embodiments is preferably implemented in software, hardware implementation, or a combination of software and hardware, is also possible and contemplated.
[0106] In one embodiment, Figure 5 This is a structural block diagram of a wireless distribution network system provided in an embodiment of this application, as shown below. Figure 5 As shown, the wireless distribution network system includes: device terminal 52 and network terminal 54;
[0107] Device 52 is used to execute the first distribution network method of the above embodiments;
[0108] Network terminal 54 is used to execute the second network distribution method of the above embodiments.
[0109] In one embodiment, the device side includes multiple wireless devices, each wireless device including a card slot module, the card slot module including: a first card slot, a second card slot and a card slot control unit;
[0110] The first card slot is for inserting a public network card; the second card slot is for inserting a service card.
[0111] The card slot control unit is connected to the first card slot and the second card slot respectively, and is used to control the wireless device to switch between the first card slot and the second card slot. When the wireless device is connected to the first card slot, the public network card works, and when the wireless device is connected to the second card slot, the service card works.
[0112] It should be noted that the above modules can be functional modules or program modules, and can be implemented through software or hardware. For modules implemented through hardware, the above modules can reside in the same processor; or the above modules can be located in different processors in any combination.
[0113] In one embodiment, an electronic device is provided, including a memory and a processor. The memory is connected to the processor and is used to store a program. The processor is used to implement the first distribution network method, the second distribution network method, and the third distribution network method of the above embodiments by running the program in the memory.
[0114] Those skilled in the art will understand that all or part of the processes in the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium. When executed, the computer program can include the processes of the embodiments described above. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory (ReRAM), magnetic random access memory (MRAM), ferroelectric random access memory (FRAM), phase change memory (PCM), graphene memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can take many forms, such as Static Random Access Memory (SRAM) or Dynamic Random Access Memory (DRAM). The databases involved in the embodiments provided in this application may include at least one type of relational database and non-relational database. Non-relational databases may include, but are not limited to, blockchain-based distributed databases. The processors involved in the embodiments provided in this application may be general-purpose processors, central processing units, graphics processing units, digital signal processors, programmable logic devices, quantum computing-based data processing logic devices, etc., and are not limited to these.
[0115] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0116] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this application should be determined by the appended claims.
Claims
1. A power distribution network method, characterized in that, This invention is applied to a wireless distribution network system, which includes a network end and a device end; the network end includes an operation and maintenance platform and a service platform; the operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network; the device end includes multiple wireless devices, each of which is equipped with a public network card and a service card. The public network interface card is used to connect the wireless device to the operation and maintenance platform; The service card is used to connect the wireless device to the service platform, and the method includes: When the wireless network configuration system is powered on, the service cards of each wireless device to be configured dial up to the Internet, determine the device characteristic information of the wireless devices to be configured, and send the device characteristic information of the wireless devices to the operation and maintenance platform using the public network cards of each wireless device to be configured. The device characteristic information includes service card information and wireless device identity information. The device characteristic information is used to instruct the operation and maintenance platform to classify the wireless devices to be configured, determine the device block corresponding to each wireless device to be configured, determine the Internet access parameters corresponding to the device block as the Internet access parameters corresponding to each wireless device to be configured in the device block, and return the Internet access parameters corresponding to each wireless device to be configured. The device block is a set of wireless devices with consistent service card information. Based on the internet access parameters corresponding to the wireless devices to be configured on the network sent by the operation and maintenance platform, the service cards of each wireless device to be configured on the network are used to dial up and access the internet, thereby connecting each wireless device to the service platform.
2. The distribution network method according to claim 1, characterized in that, When the wireless network distribution system is powered on, the service cards of each wireless device to be distributed to the network are used to dial up and access the internet, and the device characteristic information of the wireless devices to be distributed to the network is determined, including: When the wireless network configuration system is powered on, the service cards of each wireless device to be configured are used to dial up to the Internet, and the wireless devices that failed to dial up are identified. Determine the device characteristic information of each of the wireless devices that failed to dial.
3. The distribution network method according to claim 1, characterized in that, Also includes: When the network access parameters corresponding to the wireless devices to be configured are sent by the operation and maintenance platform and are the parameters with added test flags, the network access parameters with added test flags are used to dial up the network using the service cards of each wireless device to be configured, and the connection result of whether to access the service platform through dial-up network access is obtained, and the connection result is returned to the operation and maintenance platform.
4. A power distribution network method, characterized in that, This invention is applied to a wireless distribution network system, which includes a network end and a device end; the network end includes an operation and maintenance platform and a service platform; the operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network; the device end includes multiple wireless devices, each of which is equipped with a public network card and a service card. The public network interface card is used to connect the wireless device to the operation and maintenance platform; The service card is used to connect the wireless device to the service platform, and the method includes: Based on the device characteristic information of each wireless device to be configured on the network received from the device terminal, the wireless devices to be configured on the network are classified and the device block corresponding to each wireless device to be configured on the network is determined; the device block is a set of wireless devices with consistent service card information; the device characteristic information is the service card information and wireless device identity information determined when each wireless device to be configured on the network dials up to the Internet using its own service card when the wireless network configuration system is powered on. The internet access parameters corresponding to the device block are determined as the internet access parameters corresponding to each wireless device to be configured in the device block. The network access parameters corresponding to each wireless device to be configured are sent to the wireless device to be configured, so as to instruct the wireless device to be configured to dial up and access the service platform using its own service card.
5. The distribution network method according to claim 4, characterized in that, The step of determining the internet access parameters corresponding to the device block as the internet access parameters corresponding to each wireless device to be configured in the device block includes: By adding test flags to the internet access parameters corresponding to the device block, the internet access parameters corresponding to the device block after adding test flags are obtained. The network access parameters corresponding to the device block with added test flags are sent to a wireless device in the device block that is to be configured to access the network, so as to instruct the wireless device to access the network using its own service card, and return the connection result of whether or not to access the service platform through dial-up network access to the operation and maintenance platform. When the received connection result indicates that the wireless device to be configured to access the service platform, the Internet access parameters corresponding to the device block are determined as the Internet access parameters corresponding to each wireless device to be configured in the device block.
6. The distribution network method according to claim 5, characterized in that, The step of sending the internet access parameters, after adding a test flag, corresponding to the device block to a wireless device within the device block that is to be configured with a network includes: The wireless devices to be configured in the device block are divided into non-low-power devices and low-power devices; When there is a non-low-power device among the wireless devices to be configured in the device block, a wireless device is randomly selected from the non-low-power devices as the target device; or, when there is no non-low-power device among the wireless devices to be configured in the device block, a wireless device with a power consumption that meets the preset requirements is selected from the low-power devices as the target device. The internet access parameters corresponding to the device block with the added test flag are sent to the target device to instruct the target device to use its own service card to dial up to the internet, and the connection result of whether or not to access the service platform through dial-up internet access is returned to the operation and maintenance platform.
7. A power distribution network method, characterized in that, This invention is applied to a wireless distribution network system, which includes a device end and a network end; the network end includes an operation and maintenance platform and a service platform; the operation and maintenance platform is deployed on a public network; the service platform is deployed on a private network; the device end includes multiple wireless devices, each of which is equipped with a public network card and a service card. The public network interface card is used to connect the wireless device to the operation and maintenance platform; The service card is used to connect the wireless device to the service platform, and the method includes: The device is configured to, upon powering up the wireless network distribution system, use the service cards of each wireless device to be configured to dial up and access the internet, identify the wireless devices that failed to dial up, and determine the device characteristic information of each of the wireless devices that failed to dial up; the device is also configured to use the public network cards of each of the wireless devices that failed to dial up to send the device characteristic information to the operation and maintenance platform; the device characteristic information includes service card information and wireless device identity information; The operation and maintenance platform is used to classify the wireless devices that failed to dial up based on the device feature information of each wireless device that failed to dial up, and to determine the device block corresponding to each wireless device that failed to dial up; the device block is a set of wireless devices with the same service card information; the operation and maintenance platform is also used to add test flags to the Internet access parameters corresponding to the device block on a unit basis, to obtain the Internet access parameters corresponding to the device block after adding test flags, and to send the Internet access parameters corresponding to the device block after adding test flags to a wireless device in the device block that needs to be configured for network. The device is further configured to, upon receiving from the operation and maintenance platform that the internet access parameters corresponding to the wireless device to be configured are the internet access parameters with added test flags, dial up the wireless device to be configured using the service card of the wireless device to be configured corresponding to the internet access parameters with added test flags, and return the connection result of whether the wireless device to be configured is connected to the service platform to the operation and maintenance platform at the network end; The operation and maintenance platform is also used to determine the Internet access parameters corresponding to the device block as the Internet access parameters corresponding to each wireless device to be configured in the device block when it receives the connection result sent by the device end indicating that the wireless device to be configured accesses the service platform, and return the Internet access parameters corresponding to each wireless device to be configured to the device end. The device is also used to dial up to the Internet based on the Internet access parameters corresponding to each of the wireless devices to be configured, which are sent by the operation and maintenance platform, and to connect each of the wireless devices to the service platform.
8. A wireless distribution network system, characterized in that, The system includes a device side and a network side; The device is used to execute the power distribution method according to any one of claims 1 to 3; The network terminal is used to execute the distribution network method according to any one of claims 4 to 6.
9. The wireless distribution network system according to claim 8, characterized in that, The device includes multiple wireless devices, each of which includes a card slot module. The card slot module includes a first card slot, a second card slot, and a card slot control unit. The first card slot is for inserting a public network card; the second card slot is for inserting a service card. The card slot control unit is connected to the first card slot and the second card slot respectively, and is used to control the wireless device to switch between the first card slot and the second card slot. When the wireless device is connected to the first card slot, the public network card works, and when the wireless device is connected to the second card slot, the service card works.
10. An electronic device, characterized in that, The electronic device includes a memory and a processor; The memory is connected to the processor and is used to store programs; The processor is used to implement the power distribution method as described in any one of claims 1 to 3, the power distribution method as described in any one of claims 4 to 6, or the power distribution method as described in claim 7 by running the program in the memory.