Network configuration method and apparatus, server, storage medium and program product
By identifying the target network, obtaining the frequency list, and configuring mobile communication policies, the problem of international roaming user terminals being unable to use domestic network data services was solved, achieving stable residency and service assurance.
Patent Information
- Application Number
- CN202510104893.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-07-24
Smart Images

Figure CN122458002A_ABST
Abstract
Description
Technical Field
[0001] This application relates to communication technology, and more particularly to a network configuration method, apparatus, server, storage medium, and program product. Background Technology
[0002] With the rapid development of mobile communication networks (such as 4G, 5G, and 6G), mobile communication networks can support more and more data services, and their application areas are becoming increasingly wider. International roaming users can use domestic mobile communication networks for data services when traveling or working abroad.
[0003] International roaming users use a variety of terminal devices, and different types of terminals support different mobile communication network parameters.
[0004] Because the mobile communication network parameters supported by the terminals used by some international roaming users differ from those of domestic mobile communication networks, these users are unable to use data services under the domestic mobile communication network when accessing it. Summary of the Invention
[0005] This application provides a network configuration method, apparatus, server, storage medium, and program product to solve the problem that users cannot use data services under the domestic mobile communication network through a terminal.
[0006] Firstly, this application provides a network configuration method, including:
[0007] In response to a network connection request from a target terminal, a target network corresponding to the network connection request is determined; wherein, the target terminal is used to indicate a terminal device that has accessed the target network, completed the registration process, and started international roaming service;
[0008] Obtain the list of public frequencies of the target network, as well as the network parameters and function types supported by the target terminal;
[0009] The public frequency list is processed according to the network parameters and the function type to obtain a target frequency list, and the target frequency list is sent to the target terminal; wherein, the target frequency list includes at least one frequency point;
[0010] According to the function type, configure a mobile communication policy corresponding to the target terminal so that the target terminal can stay on the frequency points in the target frequency list based on the mobile communication policy.
[0011] Optionally, the function type includes a first network independent networking function; the network parameters include first frequency band parameters; the step of processing the public frequency list according to the network parameters and the function type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes:
[0012] When the function type of the target terminal is the first network independent networking function, the second frequency band parameter is determined according to the first frequency band parameter; the second frequency band parameter is used to indicate other frequency band parameters in each network besides the first frequency band parameter;
[0013] Delete the second frequency band parameter from the public frequency list to obtain the first target frequency list;
[0014] The first target frequency list is sent to the target terminal.
[0015] Optionally, configuring a mobile communication policy corresponding to the target terminal according to the function type, so that the target terminal camps on a frequency point in the target frequency list based on the mobile communication policy, includes:
[0016] When the function type is the first network standalone networking function, and the target terminal does not support the first network non-standalone networking function but supports voice service function, voice service function authorization information is sent to the target terminal so that the target terminal can camp on the frequency point in the first target frequency list through the first network and has the right to use the voice service function.
[0017] Optionally, the function type includes a first network non-standalone networking function; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network; the step of processing the public frequency list according to the network parameters and the function type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes:
[0018] When the target terminal's function type is a first network non-standalone networking function and the target terminal does not support the first network standalone networking function, the first target network frequency band parameters are determined based on the fourth frequency band parameters of the second network; the first target network frequency band parameters are used to indicate other frequency band parameters besides the fourth frequency band parameters of the second network under the second network.
[0019] The third frequency band parameter of the first network and the frequency band parameter of the first target network in the public frequency list are deleted to obtain the second target frequency list; wherein, the public frequency list is the frequency list broadcast by the network base station of the target network;
[0020] The second target frequency list is sent to the target terminal.
[0021] Optionally, configuring a mobile communication policy corresponding to the target terminal according to the function type, so that the target terminal camps on a frequency point in the target frequency list based on the mobile communication policy, includes:
[0022] When the function type of the target terminal is the first network non-standalone networking function, and the target terminal does not support the first network standalone networking function, the first target base station is determined;
[0023] The first target base station is sent to the target terminal so that the target terminal camps on a frequency point in the target frequency list based on the first target base station.
[0024] Optionally, when the target terminal's function type is a first network non-standalone networking function and the target terminal does not support the first network standalone networking function, determining the first target base station includes:
[0025] When the function type of the target terminal is the first network non-standalone networking function, and the target terminal does not support the first network standalone networking function, the network function of the target network is obtained.
[0026] When the network function of the target network is the first network non-standalone networking function and the target network does not enable the anchor point function, the international roaming parameters of each network base station of the target network within a preset period are obtained.
[0027] Based on the international roaming parameters, network base stations that meet the first condition are identified as the first target base station, and the anchor point function of the first target base station is activated.
[0028] The first condition includes at least one of the following:
[0029] During the target time period, the number of network connections of terminals that support the non-standalone networking function of the first network is greater than or equal to the first threshold.
[0030] The amount of data accessed by a terminal that supports the first network non-standalone networking function is greater than or equal to the second threshold.
[0031] Within a preset period, the average number of network connections is greater than or equal to the third threshold.
[0032] During the target time period, the amount of data accessed by the packet data aggregation protocol is greater than or equal to the fourth threshold.
[0033] Downlink wireless resource utilization is greater than or equal to the fifth threshold.
[0034] Optionally, after obtaining the international roaming parameters of each network base station of the target network within a preset period, the process includes:
[0035] Based on the international roaming parameters, the network base station that meets the second condition is identified as the second target base station;
[0036] Enable the first network non-standalone networking function of the second target base station;
[0037] The second condition includes the number of times the network status of a terminal supporting the first network independent networking function changes within the preset period is greater than a sixth threshold.
[0038] Optionally, the method includes:
[0039] In response to a network update request, obtain the service network number corresponding to the network update request;
[0040] When the service network number indicates the target network number, the terminal corresponding to the network update request is determined to be the target terminal, and the function type of the target terminal is obtained;
[0041] When the function type of the target terminal is the first network non-standalone networking function, a network connection is established with the target terminal based on the second target base station to provide network update services to the target terminal.
[0042] Optionally, the function type includes a second network; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network; the step of processing the public frequency list according to the network parameters and the function type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes:
[0043] When the function type of the target terminal is the second network, the second target frequency band parameters are determined based on the fourth frequency band parameters of the second network; the second target frequency band parameters are used to indicate the frequency band parameters other than the fourth frequency band parameters of the second network under the second network.
[0044] Delete the third frequency band parameter of the first network and the second target frequency band parameter of the public frequency list to obtain the third target frequency list;
[0045] The third target frequency list is sent to the target terminal.
[0046] Secondly, this application provides a network configuration apparatus, comprising:
[0047] The determination module is used to determine the target network corresponding to the network connection request in response to the network connection request of the target terminal; wherein, the target terminal is used to indicate a terminal device that has accessed the target network, completed the registration process, and started international roaming service;
[0048] The first acquisition module is used to acquire the public frequency list of the target network, as well as the network parameters and function types supported by the target terminal;
[0049] A sending module is configured to process the public frequency list according to the network parameters and the function type to obtain a target frequency list, and send the target frequency list to the target terminal; wherein the target frequency list includes at least one frequency point;
[0050] The configuration module is used to configure a mobile communication strategy corresponding to the target terminal according to the function type, so that the target terminal can stay on the frequency points in the target frequency list based on the mobile communication strategy.
[0051] Thirdly, this application provides a server, comprising: at least one processor and a memory; the memory storing computer-executable instructions; the at least one processor executing the computer-executable instructions stored in the memory, causing the at least one processor to perform the network configuration method as described in the first aspect above and various possible designs of the first aspect.
[0052] Fourthly, this application provides a computer-readable storage medium storing computer-executable instructions, which, when executed by a processor, implement the network configuration method described in the first aspect and various possible designs of the first aspect.
[0053] Fifthly, this application provides a computer program product, including a computer program that, when executed by a processor, implements the network configuration method described in the first aspect and various possible designs of the first aspect.
[0054] The network configuration method, apparatus, server, storage medium, and program product provided in this application, in response to a network connection request sent by a terminal device that has accessed the target network, completed the registration process, and initiated international roaming service, determines the corresponding target network, obtains the public frequency list of the target network, and the network parameters and function types supported by the target terminal. Based on the network parameters and function types, the public frequency list is processed to obtain a target frequency list, which is then sent to the target terminal. A mobile communication policy corresponding to the function type of the target terminal is also configured. This allows the target terminal to camp on frequencies in the target frequency list based on the mobile communication policy corresponding to its supported function type, thereby enabling data services through the target network. Attached Figure Description
[0055] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.
[0056] Figure 1 A schematic diagram illustrating existing roaming network communication methods.
[0057] Figure 2 A flowchart illustrating a network configuration method provided in an embodiment of this application;
[0058] Figure 3 A flowchart illustrating step S104 of a network configuration method provided in an embodiment of this application;
[0059] Figure 4 This is another flowchart illustrating step S104 of a network configuration method provided in an embodiment of this application.
[0060] Figure 5 A flowchart illustrating step S1042 of a network configuration method provided in an embodiment of this application;
[0061] Figure 6 This is a schematic diagram of the structure of a network configuration device provided in an embodiment of this application;
[0062] Figure 7 This is a schematic diagram of the server structure provided in an embodiment of this application.
[0063] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation
[0064] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.
[0065] First, let me explain the terms used in this application:
[0066] Fourth-generation mobile communication technology (4G) is the fourth generation of mobile communication technology. A 4G network is a fourth-generation mobile communication network.
[0067] 5G is a new generation of broadband mobile communication technology characterized by high speed, low latency, and massive connectivity. 5G network is the fifth generation of mobile communication network.
[0068] VoNR refers to Voice over New Radio, a voice service independently carried by the 5G network, which is the voice call function realized under the 5G network conditions.
[0069] Non-standalone (NSA) networking refers to a network architecture in which 4G and 5G base stations coexist, and the core network adopts either a 4G or 5G core network.
[0070] Standalone (SA) refers to a network architecture that uses 5G base stations and a 5G core network.
[0071] International roaming users can use domestic mobile communication networks for data services while traveling or working abroad. There are various types of terminals used by international roaming users, and different types of terminals support different mobile communication network parameters.
[0072] Because the mobile communication network parameters supported by the terminals used by some international roaming users differ from those of domestic mobile communication networks, these users are unable to use data services under the domestic mobile communication network when accessing it.
[0073] Figure 1 An exemplary schematic diagram of an existing roaming network communication method is shown.
[0074] See Figure 1 When international roaming users travel abroad, they send network requests to the domestic mobile communication network through their user terminals. However, due to the differences between the mobile communication network parameters supported by the international roaming user's user terminal and those of the domestic mobile communication network, the base stations of the domestic mobile communication network cannot provide feedback on the network request results to the user terminal. As a result, the international roaming user's user terminal cannot access data services through the domestic mobile communication network.
[0075] To address the aforementioned issues, this application provides a network configuration method, apparatus, server, storage medium, and program product. In response to a network connection request from a target terminal, the method determines the target network corresponding to the request, obtains a list of common frequencies for the target network, and identifies the network parameters and function types supported by the target terminal. The method processes the common frequency list based on the network parameters and function types to obtain a target frequency list, which is then sent to the target terminal. Finally, based on the function type, a mobile communication policy corresponding to the target terminal is configured. This allows for the configuration of corresponding target frequency lists and mobile communication policies for different international roaming user terminals based on their supported network parameters and function types. This enables international roaming user terminals to reside on frequencies listed in the target frequency list based on the mobile communication policy, thereby enabling data services based on the target network.
[0076] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.
[0077] Figure 2 A flowchart illustrating the network configuration method provided in an embodiment of this application. Figure 2 As shown, the network configuration method includes:
[0078] S101. In response to the network connection request of the target terminal, determine the target network corresponding to the network connection request; wherein, the target terminal is used to indicate a terminal device that has accessed the target network, completed the registration process, and started international roaming service.
[0079] Specifically, in response to a network connection request from a target terminal, the request is parsed to determine the corresponding target network. The target network indicates the domestic mobile communication network that the target terminal requests to access through the network connection request.
[0080] Specifically, the target terminal is used to indicate a terminal device that has accessed the target network, completed the registration process, and started international roaming services.
[0081] The target terminal can be a mobile terminal, such as a mobile phone (or "cellular" phone) and a computer with a mobile terminal, for example, a portable, pocket-sized, handheld, computer-embedded, or vehicle-mounted mobile device that exchanges voice and / or data with the wireless access network. For example, a wireless terminal can also be a Personal Communication Service (PCS) phone, a cordless phone, a Session Initiation Protocol (SIP) phone, a Wireless Local Loop (WLL) station, a Personal Digital Assistant (PDA), etc. A wireless terminal can also be referred to as a system, subscriber unit, subscriber station, mobile station, mobile, remote station, remote terminal, access terminal, user terminal, user agent, user device, or user equipment; no specific terminology is used here. Optionally, the target terminal mentioned above can also be a smartwatch, tablet computer, or other device.
[0082] Optionally, when an international roaming user's terminal device is powered on and initiates an initial registration request to its home network within a domestic mobile communication network (or a domestically contracted unified communication network), the home network confirms the user's roaming status and contract details. When an international roaming user's terminal device is powered on for the first time in a domestic mobile communication network area without a home network signal, the terminal device performs a network search operation in offline mode, accesses the domestic mobile communication network through the user's dedicated roaming service number, completes registration, and is thus identified as the target terminal; the home network is used to indicate the network of the international roaming user's operator. Alternatively, when an international roaming user's terminal device has obtained a list of the same Equivalent Public Land Mobile Network (EPLMN) from its home network (such as a 4G or 5G network), is powered off (or in airplane mode), and then powered on (or resumes airplane mode) within a domestic mobile communication network area, the terminal device accesses the domestic mobile communication network through the user's dedicated roaming service number, completes registration, and is thus identified as the target terminal. This allows international roaming users to accurately access domestic mobile communication network base stations when they first connect to the domestic mobile communication network using their terminal devices, improving the efficiency of the initial network search and reducing the time spent on the search.
[0083] Optionally, the Subscriber Identity Module (SIM) of the international roaming user's terminal device is pre-installed with a frequency priority list corresponding to the dedicated roaming service network number for different roaming locations. After the international roaming user's terminal device completes registration within the domestic mobile communication network, it identifies the roaming location information, performs a network search based on the frequency priority list corresponding to the user's dedicated roaming service network number, and sends a network connection request to the domestic mobile communication network to conduct data services through the target network.
[0084] S102. Obtain the list of public frequencies of the target network, as well as the network parameters and function types supported by the target terminal.
[0085] Specifically, obtain the list of public frequencies of the target network, as well as the network parameters and function types supported by the target terminal corresponding to the network connection request.
[0086] Network parameters may include bandwidth, network frequency band parameters, etc., and function types may include network service capabilities (such as carrier aggregation capability and frequency band combination, IMS voice service support capability such as VoNR / EPS FB / VoLTE, RedCap function support capability, etc.).
[0087] It is understandable that some international roaming users' terminal devices can support VoNR voice services, but they have not subscribed to the service properly under their home network, which makes it impossible for them to use VoNR voice services under their home network (such as 5G network). They need to switch to 4G network to use voice services, which affects the user experience of using the network for data services.
[0088] Optionally, the target terminal can obtain the network parameters and function types supported by the target terminal through the User Equipment (UE) Capability Enquiry.
[0089] S103. Process the public frequency list according to the network parameters and the function type to obtain the target frequency list, and send the target frequency list to the target terminal; wherein, the target frequency list includes at least one frequency point.
[0090] Specifically, the public frequency list is processed according to the network parameters and function types supported by the target terminal to obtain a target frequency list corresponding to the target terminal, and then the target frequency list is sent to the target terminal. The target frequency list includes at least one frequency point supported by the target terminal.
[0091] Optionally, when the target terminal releases its radio resource control (RRC) service connection, a target frequency list is sent to the target terminal via the RRC release service.
[0092] S104. Configure a mobile communication strategy corresponding to the target terminal according to the function type, so that the target terminal can stay on the frequency points in the target frequency list based on the mobile communication strategy.
[0093] Specifically, based on the function type of the target terminal, a mobile communication policy corresponding to the target terminal is configured, so that the target terminal can camp on the frequency points in the target frequency list based on the mobile communication policy, thereby completing the network connection with the target terminal and enabling the target terminal to realize data services through the network.
[0094] This application embodiment can configure differentiated mobile communication strategies for the target terminal based on the network parameters and function type of the target terminal, reduce the differences between the parameters supported by the terminal equipment of international roaming users and the parameters of domestic mobile communication networks, enable the target terminal to achieve reasonable network access and mobility among domestic multi-frequency and multi-standard networks, and ensure differentiated mobility and service awareness guarantee capabilities among terminals supporting different function types and network parameters (such as 5G SA terminals, 5G NSA single-mode terminals and 4G terminals).
[0095] In some embodiments, the function type includes a second network; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network.
[0096] Specifically, the target terminal supports the following functional types, including a second network. Correspondingly, the target terminal supports the following network parameters, including the third frequency band parameters of the first network and the fourth frequency band parameters of the second network.
[0097] In some embodiments, processing the public frequency list according to the network parameters and the function type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes:
[0098] When the function type of the target terminal is the second network, the second target frequency band parameters are determined based on the fourth frequency band parameters of the second network; the second target frequency band parameters are used to indicate the frequency band parameters other than the fourth frequency band parameters of the second network under the second network.
[0099] Delete the third frequency band parameter of the first network and the second target frequency band parameter of the public frequency list to obtain the third target frequency list;
[0100] The third target frequency list is sent to the target terminal.
[0101] Specifically, when the function type supported by the target terminal is the second network, the second target frequency band parameters that the target terminal does not support are determined based on the fourth frequency band parameters of the second network. That is, under the second network, the parameters of each frequency band other than the fourth frequency band parameters of the second network mentioned above.
[0102] Specifically, the third frequency band parameters and the second target frequency band parameters of the first network are deleted from the public frequency list to obtain the frequency band parameters supported by the target terminal under the second network, and the third target frequency list is sent to the target terminal. In this way, the target terminal can camp more stably on the frequencies in the third target frequency list.
[0103] The target terminal can be a mobile terminal, such as a mobile phone (or "cellular" phone) and a computer with a mobile terminal, for example, a portable, pocket-sized, handheld, computer-embedded, or vehicle-mounted mobile device that exchanges voice and / or data with the wireless access network. For example, a wireless terminal can also be a Personal Communication Service (PCS) phone, a cordless phone, a Session Initiation Protocol (SIP) phone, a Wireless Local Loop (WLL) station, a Personal Digital Assistant (PDA), etc. A wireless terminal can also be referred to as a system, subscriber unit, subscriber station, mobile station, mobile, remote station, remote terminal, access terminal, user terminal, user agent, user device, or user equipment; no specific terminology is used here. Optionally, the aforementioned terminal devices can also be smartwatches, tablets, or other similar devices.
[0104] In some embodiments, the function type includes a first network standalone networking function; the network parameters include first frequency band parameters.
[0105] Specifically, the "first network" refers to a network with both non-standalone (NSA) and standalone (SA) networking capabilities, such as a 5G network or a future 6G network. Network parameters include first frequency band parameters. The first frequency band parameters indicate all frequency bands supported by the target terminal.
[0106] In some embodiments, processing the public frequency list according to the network parameters and the function type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes:
[0107] When the function type of the target terminal is the first network independent networking function, the second frequency band parameter is determined according to the first frequency band parameter; the second frequency band parameter is used to indicate other frequency band parameters in each network besides the first frequency band parameter;
[0108] Delete the second frequency band parameter from the public frequency list to obtain the first target frequency list;
[0109] The first target frequency list is sent to the target terminal.
[0110] Specifically, when the target terminal supports the first network standalone networking function (such as 5G SA), based on all the first frequency band parameters supported by the target terminal, other frequency band parameters in each network besides the first frequency band parameters are determined and used as the second frequency band parameters.
[0111] Specifically, the second frequency band parameter is removed from the public frequency list to obtain the first target frequency list, which is then sent to the target terminal. This first target frequency list includes all frequency band parameters supported by the target terminal. The target terminal can select any frequency from the first target frequency list to camp on in order to conduct data services through the target network.
[0112] Specifically, the public frequency list is a list of frequencies broadcast by network base stations to indicate the target network. This public frequency list includes all frequency band parameters supported by the target network under the first network and all frequency band parameters under the second network.
[0113] Figure 3 This is a flowchart of step S104 of the network configuration method provided in an embodiment of this application. Figure 3 As shown, step S104 of the network configuration method includes:
[0114] S1041. When the function type is the first network standalone networking function, and the target terminal does not support the first network non-standalone networking function but supports voice service function, send voice service function authorization information to the target terminal so that the target terminal can camp on the frequency point in the first target frequency list through the first network and has the right to use the voice service function.
[0115] Specifically, when the target terminal supports the first network standalone networking function and voice service functions but does not support the first network non-standalone networking function (5G NSA), voice service function authorization information (such as authentication and re-registration process) can be sent to the target terminal to enable voice service function (such as VoNR voice service) permissions for the international roaming user of the target terminal. In this way, the international roaming user can camp on the frequency points in the first target frequency list through the target terminal via the first network and have the permission to use voice service functions.
[0116] Understandably, if the target network does not support the enabled VoNR voice service, it cannot send voice service authorization information to the target terminal.
[0117] Understandably, given that SA / VoNR voice service functionality has been enabled on domestic mobile communication networks and SA / VoNR roaming service has been signed with the home network, if an international roaming user has not enabled VoNR voice service functionality, the system can incentivize the international roaming user to activate this function through their terminal device in the core network. After roaming in, the user can then use VoNR voice service functionality through the standalone (SA) network.
[0118] This application embodiment can configure a mobile communication strategy for user reverse authentication and re-registration for the target terminal based on the target terminal's network parameter capabilities, functional type capabilities, and registration information, thereby enabling the target terminal to reside in the domestic mobile communication network and use voice services (such as VoNR voice services).
[0119] In some embodiments, the function type includes a first network non-standalone networking function; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network.
[0120] Specifically, when the target terminal supports the non-standalone (NSA) networking function of the first network, the network parameters supported by the target terminal include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network. The second network indicates a mobile communication network whose development time predates the first network. For example, if the first network is a 5G network, then the second network is a 4G network. Or, if the first network is a 6G network, then the second network is a 5G network. The third frequency band parameters of the first network indicate all frequency band parameters supported by the target terminal under the first network. The fourth frequency band parameters of the second network indicate all frequency band parameters supported by the target terminal under the second network.
[0121] In some embodiments, processing the public frequency list according to the network parameters and the function type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes:
[0122] When the target terminal's function type is a first network non-standalone networking function and the target terminal does not support the first network standalone networking function, the first target network frequency band parameters are determined based on the fourth frequency band parameters of the second network; the first target network frequency band parameters are used to indicate other frequency band parameters besides the fourth frequency band parameters of the second network under the second network.
[0123] The third frequency band parameter of the first network and the frequency band parameter of the first target network in the public frequency list are deleted to obtain the second target frequency list; wherein, the public frequency list is the frequency list broadcast by the network base station of the target network;
[0124] The second target frequency list is sent to the target terminal.
[0125] Specifically, when the target terminal supports the first network non-standalone networking function and does not support the first network standalone networking function, based on the fourth frequency band parameters of the second network supported by the target terminal, the other frequency band parameters of the target terminal under the second network, excluding the fourth frequency band parameters, are determined, that is, the frequency band parameters that the target terminal does not support under the second network.
[0126] Specifically, from the public frequency list, the third frequency band parameters of the first network and the frequency band parameters of the first target network are deleted to obtain the second target frequency list. This second target frequency list excludes frequency band parameters that the target terminal does not support under the second network, as well as all frequency band parameters under the first network. The second target frequency list is then sent to the target terminal. In this way, when the target terminal camps on any frequency point in the second target frequency list, it can preferentially camp on the frequency point with the best network communication conditions.
[0127] Optionally, the aforementioned network base station can be a base station (BTS) and / or base station controller in GSM or CDMA, a base station (NodeB, NB) and / or radio network controller (RNC) in WCDMA, an evolved Node B (eNB or eNodeB) in LTE, or a relay station or access point, a base station in a 4G network, a base station (gNB) in a 5G network, or a base station in a future 6G network, etc., which are not limited herein.
[0128] Figure 4 This is a flowchart of step S104 of the network configuration method provided in an embodiment of this application. Figure 4 As shown, step S104 of the network configuration method includes:
[0129] S1042. When the function type of the target terminal is the first network non-standalone networking function and the target terminal does not support the first network standalone networking function, determine the first target base station.
[0130] S1043. Send the first target base station to the target terminal so that the target terminal camps on the frequency points in the target frequency list based on the first target base station.
[0131] Specifically, when the target terminal's function type is the first network non-standalone networking function and the target terminal does not support the first network standalone networking function, the first target base station that enables the first network non-standalone networking anchor point function is determined.
[0132] Specifically, a first target base station is sent to the target terminal so that the target terminal supporting the first network non-standalone networking function (such as 5G NSA) can camp on the base station that has enabled the first network non-standalone networking anchor point function, thereby using the network supporting the first network non-standalone networking function to perform data services.
[0133] Optionally, network base stations (such as 4G network base stations) within the domestic mobile communication network query and confirm the status of surrounding network base stations with non-standalone (NSA) anchor points through network interfaces (such as X2 and S1 interfaces). This allows them to identify the first target base station with the first NSA anchor point function enabled. In other words, a mobile communication strategy prioritizing anchor base stations is configured for target terminals supporting the first NSA function (such as 5G NSA). Target terminals can achieve this priority strategy by triggering in-frequency / out-of-frequency measurements or configuring frequencies based on surrounding 4G anchor base stations. This increases the probability of the target terminal residing at the anchor base station, enabling it to use the network supporting the first NSA function for data services while residing at the anchor base station.
[0134] Figure 5 A flowchart of step S1042 of the network configuration method provided in this application embodiment. (See attached flowchart.) Figure 5 As shown, step S1042 of the network configuration method includes:
[0135] S10421. When the function type of the target terminal is the first network non-standalone networking function and the target terminal does not support the first network standalone networking function, obtain the network function of the target network.
[0136] S10422. When the network function of the target network is the first network non-standalone networking function and the target network has not enabled the anchor point function, obtain the international roaming parameters of each network base station of the target network within a preset period.
[0137] S10423. Based on the international roaming parameters, determine the network base station that meets the first condition as the first target base station, and activate the anchor point function of the first target base station.
[0138] The first condition includes at least one of the following:
[0139] During the target time period, the number of network connections of terminals that support the non-standalone networking function of the first network is greater than or equal to the first threshold.
[0140] The amount of data accessed by a terminal that supports the first network non-standalone networking function is greater than or equal to the second threshold.
[0141] Within a preset period, the average number of network connections is greater than or equal to the third threshold.
[0142] During the target time period, the amount of data accessed by the packet data aggregation protocol is greater than or equal to the fourth threshold.
[0143] Downlink wireless resource utilization is greater than or equal to the fifth threshold.
[0144] Specifically, when the target terminal supports the first network non-standalone networking function and does not support the first network standalone networking function, the network function of the target network is obtained. If the network function of the target network is the first network non-standalone networking function and the target network does not enable the anchor point function, the international roaming parameters of each network base station of the target network within a preset period are obtained. The international roaming parameters are used to indicate the network parameters of the terminal of the international roaming user under each base station in the domestic mobile communication network, and can be used to indicate the network usage status of the international roaming user's terminal.
[0145] Specifically, based on the international roaming parameters of each network base station in the target network within a preset period, the network base station that meets the first condition is identified as the first target base station, and the anchor point function of the first target base station is activated.
[0146] The first condition can be set specifically according to the actual situation.
[0147] For example, the first condition includes at least one of the following: within the target time period, the number of network connections (RRC) of terminals supporting the non-standalone networking function of the first network is greater than or equal to a first threshold; the amount of access data (or traffic) of terminals supporting the non-standalone networking function of the first network is greater than or equal to a second threshold; within a preset period, the average number of network connections (such as 4GRRC) is greater than or equal to a third threshold; within the target time period, the amount of access data via Packet Data Convergence Protocol (User Plane PDCP) is greater than or equal to a fourth threshold; and the downlink radio resource utilization (PRB) is greater than or equal to a fifth threshold.
[0148] Specifically, the preset period can be set according to the actual situation. For example, the preset period can be 7 days or 10 days. The first threshold, second threshold, third threshold, fourth threshold, and fifth threshold can be set based on historical international roaming parameters prior to the preset period.
[0149] For example, the first threshold is 5, the second threshold is 5 GBytes, the third threshold is 50, the fourth threshold is 8 GBytes, and the fifth threshold is 50%. Alternatively, the first threshold is 6, the second threshold is 8 GBytes, the third threshold is 80, the fourth threshold is 10 GBytes, and the fifth threshold is 60%.
[0150] The target time period can be specifically set according to the actual situation. For example, the target time period can be a period of high network traffic.
[0151] Specifically, support for non-networking functionality in the target network refers to a core network possessing non-networking capabilities and wireless base stations supporting non-networking functionality being operational, but without anchor point functionality (such as 4G anchor point functionality). Anchor point functionality can be enabled for network base stations that meet the second condition. Furthermore, the ability to enable and configure non-networking functionality for target terminals supporting the first network's non-networking capabilities for international roaming users residing under these network base stations can be achieved. By enabling anchor point functionality and non-networking functionality for network base stations, target terminals supporting the first network's non-networking capabilities but not the first network's networking capabilities can more stably reside on the NSA network.
[0152] In some embodiments, after obtaining the international roaming parameters of each network base station of the target network within a preset period, the method includes:
[0153] Based on the international roaming parameters, the network base station that meets the second condition is identified as the second target base station;
[0154] Enable the first network non-standalone networking function of the second target base station;
[0155] The second condition includes the number of times the network status of a terminal supporting the first network independent networking function changes within the preset period is greater than a sixth threshold.
[0156] Specifically, based on the international roaming parameters of each network base station in the target network within a preset period, the network base station that meets the second condition is identified as the second target base station, and the first network non-standalone networking function of the second target base station is activated. For ease of explanation, the second target base station can also be referred to as the auxiliary station of the first target base station.
[0157] The second condition can be set specifically according to the actual situation.
[0158] Optionally, the second condition includes the number of times the network status of terminals supporting the independent networking function of the first network changes more than a sixth threshold within a preset period. The sixth threshold can be specifically set according to actual conditions. For example, the sixth threshold can be 5 or 7.
[0159] Optionally, the number of network status changes of a terminal supporting the first network independent networking function can indicate the number of times the terminal device (including international roaming terminals or non-international roaming terminals) switches or redirects to a network supporting the first network independent networking function; or, it can indicate the number of times the terminal device (including international roaming terminals or non-international roaming terminals) falls back from a network supporting the first network independent networking function due to coverage issues or voice services.
[0160] By enabling and configuring the first network non-standalone networking function for the second target base station, users can use the network supporting the first network non-standalone networking function to conduct data services through the target terminal network base station that supports the first network non-standalone networking function.
[0161] In some embodiments, the method includes:
[0162] In response to a network update request, obtain the service network number corresponding to the network update request;
[0163] When the service network number indicates the target network number, the terminal corresponding to the network update request is determined to be the target terminal, and the function type of the target terminal is obtained;
[0164] When the function type of the target terminal is the first network non-standalone networking function, a network connection is established with the target terminal based on the second target base station to provide network update services to the target terminal.
[0165] Specifically, in response to a network update request, the service network number corresponding to the network update request is obtained. If the service network number indicates a target network number, the terminal corresponding to the network update request is determined to be the terminal device of the international roaming user, i.e., the target terminal, and the function type of the target terminal is obtained. The target network number is used to indicate the service network number of the international roaming user.
[0166] Specifically, when the target terminal supports the first network non-standalone networking function, a network connection is established between the target terminal and the second target base station to provide the target terminal with network update services corresponding to the network update request.
[0167] For example, if the network update request sent by the target terminal is an "adding leg" action (such as adding a base station or network node to expand network coverage or enhance network capacity), then the current terminal identifies the base stations that need to enable the first network non-standalone (NSA) function and enables the NSA function of the aforementioned base stations, thereby increasing the number of base stations with the first NSA function enabled. Alternatively, if the network update request sent by the target terminal is a "removing leg" action (such as reducing a base station or network node), then the current terminal identifies the base stations that have already enabled NSA and reduces the number of base stations with the first NSA function enabled.
[0168] This application embodiment enables the anchor point function and non-standalone function of the base station by using international roaming parameters, which reduces the gap between the mobile communication network parameters supported by the target terminal and the domestic mobile communication network parameters, and increases the probability that the target terminal will stay at the anchor point base station. This allows the target terminal to stay at the anchor point base station and use the network that supports the first network non-standalone networking function to perform data services.
[0169] Figure 6This is a schematic diagram of the network configuration device provided in an embodiment of this application. Figure 6 As shown, the network configuration device includes:
[0170] The determining module 601 is used to determine the target network corresponding to the network connection request in response to the network connection request of the target terminal; wherein, the target terminal is used to indicate a terminal device that has accessed the target network, completed the registration process, and started international roaming service;
[0171] The first acquisition module 602 is used to acquire the public frequency list of the target network, as well as the network parameters and function types supported by the target terminal;
[0172] The sending module 603 is used to process the public frequency list according to the network parameters and the function type to obtain a target frequency list, and send the target frequency list to the target terminal; wherein, the target frequency list includes at least one frequency point;
[0173] The configuration module 604 is configured to configure a mobile communication strategy corresponding to the target terminal according to the function type, so that the target terminal can stay on the frequency points in the target frequency list based on the mobile communication strategy.
[0174] Optionally, the function type includes a first network independent networking function; the network parameters include first frequency band parameters; the transmitting module 603 includes:
[0175] The first determining unit is configured to determine the second frequency band parameters based on the first frequency band parameters when the function type of the target terminal is the first network independent networking function; the second frequency band parameters are used to indicate other frequency band parameters in each network besides the first frequency band parameters.
[0176] The first processing unit is used to delete the second frequency band parameter from the public frequency list to obtain the first target frequency list;
[0177] The first transmitting unit is used to transmit the first target frequency list to the target terminal.
[0178] Optionally, the configuration module 604 includes:
[0179] The first configuration unit is configured to send voice service function authorization information to the target terminal when the function type is the first network standalone networking function and the target terminal does not support the first network non-standalone networking function but supports voice service function, so that the target terminal can camp on the frequency point in the first target frequency list through the first network and have the permission to use the voice service function.
[0180] Optionally, the function type includes a first network non-standalone networking function; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network; the transmitting module 603 includes:
[0181] The second determining unit is configured to determine the first target network frequency band parameters based on the fourth frequency band parameters of the second network when the function type of the target terminal is the first network non-standalone networking function and the target terminal does not support the first network standalone networking function; the first target network frequency band parameters are used to indicate other frequency band parameters besides the fourth frequency band parameters of the second network under the second network.
[0182] The second processing unit is used to delete the third frequency band parameter of the first network and the first target network frequency band parameter of the first network in the public frequency list to obtain a second target frequency list; wherein, the public frequency list is the frequency list broadcast by the network base station of the target network;
[0183] The second transmitting unit is used to transmit the second target frequency list to the target terminal.
[0184] Optionally, the configuration module 604 includes:
[0185] The third determining unit is used to determine the first target base station when the function type of the target terminal is the first network non-standalone networking function and the target terminal does not support the first network standalone networking function.
[0186] The second configuration unit is used to send the first target base station to the target terminal so that the target terminal camps on a frequency point in the target frequency list based on the first target base station.
[0187] Optionally, the third determining unit includes:
[0188] The first acquisition subunit is used to acquire the network function of the target network when the function type of the target terminal is the first network non-standalone networking function and the target terminal does not support the first network standalone networking function.
[0189] The second acquisition subunit is used to acquire the international roaming parameters of each network base station of the target network within a preset period when the network function of the target network is the first network non-standalone networking function and the target network has not enabled the anchor point function.
[0190] The first determining subunit is used to determine the network base station that meets the first condition as the first target base station according to the international roaming parameters, and to activate the anchor point function of the first target base station.
[0191] The first condition includes at least one of the following:
[0192] During the target time period, the number of network connections of terminals that support the non-standalone networking function of the first network is greater than or equal to the first threshold.
[0193] The amount of data accessed by a terminal that supports the first network non-standalone networking function is greater than or equal to the second threshold.
[0194] Within a preset period, the average number of network connections is greater than or equal to the third threshold.
[0195] During the target time period, the amount of data accessed by the packet data aggregation protocol is greater than or equal to the fourth threshold.
[0196] Downlink wireless resource utilization is greater than or equal to the fifth threshold.
[0197] Optionally, the third determining unit includes:
[0198] The second determining subunit is used to determine the network base station that meets the second condition as the second target base station according to the international roaming parameters;
[0199] The processing subunit is used to enable the first network non-standalone networking function of the second target base station.
[0200] The second condition includes the number of times the network status of a terminal supporting the first network independent networking function changes within the preset period is greater than a sixth threshold.
[0201] Optionally, the method includes:
[0202] The second acquisition module is used to acquire the service network number corresponding to the network update request in response to the network update request;
[0203] The third acquisition module is used to determine the terminal corresponding to the network update request as the target terminal when the service network number is indicated as the target network number, and to acquire the function type of the target terminal;
[0204] The processing module is used to establish a network connection with the target terminal based on the second target base station and provide network update services to the target terminal when the function type of the target terminal is the first network non-standalone networking function.
[0205] Optionally, the functional type includes a second network; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network; the transmitting module 603 includes:
[0206] The fourth determining unit is used to determine the second target frequency band parameters based on the fourth frequency band parameters of the second network when the function type of the target terminal is the second network; the second target frequency band parameters are used to indicate frequency band parameters other than the fourth frequency band parameters of the second network under the second network.
[0207] The third processing unit is used to delete the third frequency band parameter of the first network and the second target frequency band parameter of the public frequency list to obtain the third target frequency list;
[0208] The third transmitting unit is used to transmit the third target frequency list to the target terminal.
[0209] The network configuration device provided in this application embodiment can be used to execute the technical solution of the network configuration method in the above embodiment. Its implementation principle and technical effect are similar, and will not be described again here.
[0210] Figure 7 This is a schematic diagram of the server structure provided in an embodiment of this application. Figure 7 As shown, the server may include: transceiver 101, processor 102, and memory 103.
[0211] Processor 102 executes computer execution instructions stored in memory, causing processor 102 to perform the scheme in the above embodiments. Processor 102 may be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it may also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components.
[0212] The memory 103 is connected to the processor 102 via the system bus and completes communication between them. The memory 103 is used to store computer program instructions.
[0213] Transceiver 101 can be used to obtain a list of public frequencies, etc.
[0214] The system bus can be a Peripheral Component Interconnect (PCI) bus or an Extended Industry Standard Architecture (EISA) bus, etc. The system bus can be divided into address bus, data bus, control bus, etc. For ease of representation, only one thick line is used in the diagram, but this does not indicate that there is only one bus or one type of bus. Transceivers are used to enable communication between database access devices and other computers (e.g., clients, read-write libraries, and read-only libraries). Memory may include random access memory (RAM) and may also include non-volatile memory.
[0215] This application also provides a computer-readable storage medium storing computer instructions that, when executed on a computer, cause the computer to perform the network configuration method described in the above embodiments.
[0216] This application also provides a computer program product, which includes a computer program stored in a computer-readable storage medium. At least one processor can read the computer program from the computer-readable storage medium, and when the at least one processor executes the computer program, it can implement the technical solution of the network configuration method in the above embodiments.
[0217] In the several embodiments provided in this application, it should be understood that the disclosed devices and methods can be implemented in other ways. For example, the device embodiments described above are merely illustrative; for instance, the division of modules is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple modules may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be indirect coupling or communication connection through some interfaces, devices, or modules, and may be electrical, mechanical, or other forms.
[0218] The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to implement the solution of this embodiment according to actual needs.
[0219] Furthermore, the functional modules in the various embodiments of this application can be integrated into one processing unit, or each module can exist physically separately, or two or more modules can be integrated into one unit. The unit composed of the above modules can be implemented in hardware or in the form of hardware plus software functional units.
[0220] The integrated modules described above, implemented as software functional modules, can be stored in a computer-readable storage medium. These software functional modules, stored in a storage medium, include several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) or processor to execute some steps of the methods of the various embodiments of this application.
[0221] It should be understood that the aforementioned processor can be a Central Processing Unit (CPU), or other general-purpose processors, digital signal processors (DSPs), application-specific integrated circuits (ASICs), etc. A general-purpose processor can be a microprocessor or any conventional processor. The steps of the method disclosed in this invention can be directly manifested as being executed by a hardware processor, or executed by a combination of hardware and software modules within the processor.
[0222] The memory may include high-speed RAM, and may also include non-volatile storage (NVM), such as at least one disk storage device, and may also be a USB flash drive, external hard drive, read-only memory, disk or optical disc, etc.
[0223] The bus can be an Industry Standard Architecture (ISA) bus, a Peripheral Component Interconnect (PCI) bus, or an Extended Industry Standard Architecture (EISA) bus, etc. Buses can be categorized as address buses, data buses, control buses, etc. For ease of illustration, the buses shown in the accompanying drawings are not limited to a single bus or a single type of bus.
[0224] The aforementioned storage medium can be implemented from any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic storage, flash memory, magnetic disk, or optical disk. The storage medium can be any available medium accessible to general-purpose or special-purpose computers.
[0225] An exemplary storage medium is coupled to a processor, enabling the processor to read information from and write information to the storage medium. Alternatively, the storage medium can be an integral part of the processor. The processor and storage medium can reside in an Application Specific Integrated Circuit (ASIC). Alternatively, the processor and storage medium can exist as discrete components in an electronic control unit or main control device.
[0226] Other embodiments of this application will readily occur to those skilled in the art upon consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of this application that follow the general principles of this application and include common knowledge or customary techniques in the art not disclosed herein. The specification and examples are to be considered exemplary only, and the true scope and spirit of this application are indicated by the following claims.
[0227] It should be understood that this application is not limited to the precise structure described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this application is limited only by the appended claims.
Claims
1. A network configuration method, characterized in that, Applied in servers, including: In response to a network connection request from a target terminal, a target network corresponding to the network connection request is determined; wherein, the target terminal is used to indicate a terminal device that has accessed the target network, completed the registration process, and started international roaming service; Obtain the list of public frequencies of the target network, as well as the network parameters and function types supported by the target terminal; The public frequency list is processed according to the network parameters and the function type to obtain a target frequency list, and the target frequency list is sent to the target terminal; wherein, the target frequency list includes at least one frequency point; According to the function type, configure a mobile communication policy corresponding to the target terminal so that the target terminal can stay on the frequency points in the target frequency list based on the mobile communication policy.
2. The method according to claim 1, characterized in that, The function type includes a first network independent networking function; the network parameters include a first frequency band parameter; the step of processing the public frequency list according to the network parameters and the function type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes: When the function type of the target terminal is the first network independent networking function, the second frequency band parameter is determined according to the first frequency band parameter; the second frequency band parameter is used to indicate other frequency band parameters in each network besides the first frequency band parameter; Delete the second frequency band parameter from the public frequency list to obtain the first target frequency list; The first target frequency list is sent to the target terminal.
3. The method according to claim 2, characterized in that, The step of configuring a mobile communication policy corresponding to the target terminal according to the function type, so that the target terminal camps on a frequency point in the target frequency list based on the mobile communication policy, includes: When the function type is the first network standalone networking function, and the target terminal does not support the first network non-standalone networking function but supports voice service function, voice service function authorization information is sent to the target terminal so that the target terminal can camp on the frequency point in the first target frequency list through the first network and has the right to use the voice service function.
4. The method according to claim 1, characterized in that, The functional type includes a first network non-standalone networking function; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network; the step of processing the public frequency list according to the network parameters and the functional type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes: When the target terminal's function type is a first network non-standalone networking function and the target terminal does not support the first network standalone networking function, the first target network frequency band parameters are determined based on the fourth frequency band parameters of the second network; the first target network frequency band parameters are used to indicate other frequency band parameters besides the fourth frequency band parameters of the second network under the second network. The third frequency band parameter of the first network and the frequency band parameter of the first target network in the public frequency list are deleted to obtain the second target frequency list; wherein, the public frequency list is the frequency list broadcast by the network base station of the target network; The second target frequency list is sent to the target terminal.
5. The method according to claim 4, characterized in that, The step of configuring a mobile communication policy corresponding to the target terminal according to the function type, so that the target terminal camps on a frequency point in the target frequency list based on the mobile communication policy, includes: When the function type of the target terminal is the first network non-standalone networking function, and the target terminal does not support the first network standalone networking function, the first target base station is determined; The first target base station is sent to the target terminal so that the target terminal camps on a frequency point in the target frequency list based on the first target base station.
6. The method according to claim 5, characterized in that, When the target terminal's function type is a first network non-standalone networking function, and the target terminal does not support the first network standalone networking function, determining the first target base station includes: When the function type of the target terminal is the first network non-standalone networking function, and the target terminal does not support the first network standalone networking function, the network function of the target network is obtained. When the network function of the target network is the first network non-standalone networking function and the target network does not enable the anchor point function, the international roaming parameters of each network base station of the target network within a preset period are obtained. Based on the international roaming parameters, network base stations that meet the first condition are identified as the first target base station, and the anchor point function of the first target base station is activated. The first condition includes at least one of the following: During the target time period, the number of network connections of terminals that support the non-standalone networking function of the first network is greater than or equal to the first threshold. The amount of data accessed by a terminal that supports the first network non-standalone networking function is greater than or equal to the second threshold. Within a preset period, the average number of network connections is greater than or equal to the third threshold. During the target time period, the amount of data accessed by the packet data aggregation protocol is greater than or equal to the fourth threshold. Downlink wireless resource utilization is greater than or equal to the fifth threshold.
7. The method according to claim 6, characterized in that, After obtaining the international roaming parameters of each network base station of the target network within a preset period, the process includes: Based on the international roaming parameters, the network base station that meets the second condition is identified as the second target base station; Enable the first network non-standalone networking function of the second target base station; The second condition includes the number of times the network status of a terminal supporting the first network independent networking function changes within the preset period is greater than a sixth threshold.
8. The method according to claim 7, characterized in that, The method includes: In response to a network update request, obtain the service network number corresponding to the network update request; When the service network number indicates the target network number, the terminal corresponding to the network update request is determined to be the target terminal, and the function type of the target terminal is obtained; When the target terminal's function type is a first network non-standalone networking function, a network connection is established with the target terminal based on the second target base station to provide network update services to the target terminal.
9. The method according to claim 1, characterized in that, The functional type includes a second network; the network parameters include the third frequency band parameters of the first network and the fourth frequency band parameters of the second network; the step of processing the public frequency list according to the network parameters and the functional type to obtain a target frequency list, and sending the target frequency list to the target terminal, includes: When the function type of the target terminal is the second network, the second target frequency band parameters are determined based on the fourth frequency band parameters of the second network; the second target frequency band parameters are used to indicate the frequency band parameters other than the fourth frequency band parameters of the second network under the second network. Delete the third frequency band parameter of the first network and the second target frequency band parameter of the public frequency list to obtain the third target frequency list; The third target frequency list is sent to the target terminal.
10. A network configuration device, characterized in that, Applied in servers, including: The determination module is used to determine the target network corresponding to the network connection request in response to the network connection request of the target terminal; wherein, the target terminal is used to indicate a terminal device that has accessed the target network, completed the registration process, and started international roaming service; The first acquisition module is used to acquire the public frequency list of the target network, as well as the network parameters and function types supported by the target terminal; A sending module is configured to process the public frequency list according to the network parameters and the function type to obtain a target frequency list, and send the target frequency list to the target terminal; wherein the target frequency list includes at least one frequency point; The configuration module is used to configure a mobile communication strategy corresponding to the target terminal according to the function type, so that the target terminal can stay on the frequency points in the target frequency list based on the mobile communication strategy.
11. A server, characterized in that, include: A processor, and a memory communicatively connected to the processor; The memory stores computer-executed instructions; The processor executes computer execution instructions stored in the memory to implement the method as described in any one of claims 1 to 9.
12. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores computer-executable instructions, which, when executed by a processor, are used to implement the network configuration method as described in any one of claims 1 to 9.
13. A computer program product, characterized in that, Includes a computer program that, when executed by a processor, implements the method of any one of claims 1 to 9.