A Mobile Network Management Method, System, Device and Storage Medium

By counting the terminal data request volume in real time and adjusting the routing terminal position, the problem of signal imbalance under fixed settings is solved, and stable coverage and efficient management of network signals are achieved.

CN119363604BActive Publication Date: 2025-07-08SHENZHEN XUWEI TECH DEV CO LTD
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Patent Information

Application Number
CN202411907647.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-07-08
Estimated Expiration
2044-12-24

AI Technical Summary

Technical Problem

Existing network routers are difficult to meet the office scenario needs of different traffic densities under fixed settings, resulting in unbalanced signal strength and affecting the stability of data transmission.

Method used

By counting the terminal data request volume in real time, adjusting the location of the routing terminal to cover the area with the largest data request volume, and using the aircraft-bound routing terminal to move and charge at the charging point to ensure the stability of network signal coverage.

Benefits of technology

It improves the stability of data transmission, meets users' usage needs, and improves the efficiency and adaptability of network management.

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Abstract

The present application discloses a mobile network management method, system, device and storage medium, which includes: a terminal that obtains request data in real time and counts the request volumes of terminal data in different regions; when the request volume of terminal data in a region is greater than a request threshold, obtain the region location; based on the region location, control the routing terminal to move to the corresponding position in the region. In the above solution of the present application, by counting the data request volume, for the region with the largest data request volume, the data transmission stability is correspondingly improved, and the position of the routing terminal is correspondingly adjusted to make the routing terminal adapt to the region with the largest data request volume, so as to meet the usage requirements of users.
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Description

Technical Field

[0001] This application relates to the field of network data transmission, and particularly to a mobile network management method, system, device, and storage medium. Background Art

[0002] In factories or office areas, etc., existing network routers are generally fixedly installed. However, in daily work, the density of people flow is not necessarily constant. Therefore, there will be a situation where the signal is weak in places with a large number of people and strong in places with few people. On the one hand, the transmission stability of data will be affected. On the other hand, the location setting of the router also needs to be pre-set, and it is difficult to meet the requirements of different office and living scenarios. Summary of the Invention

[0003] The purpose of this application is to more efficiently implement data transmission of network routers.

[0004] The above technical purpose of this application is achieved through the following technical solutions:

[0005] A mobile network management method, which includes:

[0006] Real-time obtain the terminals requesting data, and count the request amounts of terminal data in different regions;

[0007] When the request amount of terminal data in a region is greater than the request threshold, obtain the region location;

[0008] Based on the region location, control the routing terminal to move to the corresponding position in this region.

[0009] In the above solution of this application, by counting the data request amounts, for the region with the largest data request amount, correspondingly improve the data transmission stability, and correspondingly adjust the position of the routing terminal, so that the routing terminal adapts to the region with the largest data request amount to meet the usage requirements of users.

[0010] Optionally, in the mobile network management method, the method further includes:

[0011] If within the time interval of a predetermined time, there is no region where the request amount of terminal data is greater than the request threshold, control the routing terminal to move to the initial position.

[0012] In the above solution of this application, when there is no data request amount that meets the maximum request threshold within a certain time, correspondingly control the routing terminal to move to the initial position, which can match the initial position in normal usage scenarios and improve the usage efficiency.

[0013] Optionally, in the mobile network management method, the method further includes:

[0014] Regularly obtain the data request volume of each location area. Based on the location of the area with the maximum data request volume, the parking location of the routing terminal corresponding to this area is the initial location.

[0015] In the above solution of this application, by regularly obtaining the data request volume of each location area and counting the data request volume of each location, the area with the maximum data request volume can be obtained, and then this area is marked as the initial location of the routing terminal, which can adapt to more users.

[0016] Optionally, in the mobile network management method described above, in the step of controlling the routing terminal to move to the corresponding location in this area based on the area location, the steps of determining the corresponding location in the area include:

[0017] Within the range of this area location, adjust the location of the routing terminal every other period, and obtain the location information of the request data terminal;

[0018] Based on different routing terminal locations, determine that the routing terminal location where the location of the request data terminal is closest to the routing terminal is the corresponding location of the routing terminal in this area.

[0019] In the above solution of this application, by adjusting different locations of the routing terminal to respectively obtain the locations of the terminals requesting data, the optimal placement location of the routing terminal in this area is determined, improving data transmission stability.

[0020] Optionally, in the mobile network management method described above, before the step of controlling the routing terminal to move to the corresponding location in this area based on the area location, it further includes:

[0021] Based on the area where the data request volume is greater than the request threshold, when it is determined that the current area is a non-compliant area, an exception prompt is issued, and the data request volume of this area this time is not included in the judgment.

[0022] In the above solution of this application, when the data request volume is greater than the request threshold, it is judged whether the current area is compliant. If it is non-compliant, it means that the data request volume in this area is abnormal, and it is not included in the judgment. Correspondingly, the location of the routing terminal will not be adjusted either.

[0023] Optionally, in the mobile network management method described above, the steps of issuing an exception prompt and not including the data request volume of this area this time in the judgment when it is determined that the current area is a non-compliant area based on the area where the data request volume is greater than the request threshold include:

[0024] Based on the area where the data request volume is greater than the request threshold, obtain the current time;

[0025] Based on the current time, judge whether the current time is within the time range allowed for data requests in the current area;

[0026] When the current time is not within the time range allowed for data requests in the current area, the current area is a non-compliant area.

[0027] In the above solution of the present application, when the data request is greater than the request threshold, the current time is obtained, and it is judged whether the data request volume in this area is reasonable at the current time. If it is not reasonable, that is, within the current time range, such a large data request is not allowed, then the current area is a non-compliant area, and the position adjustment of the routing terminal will not be performed, which is also convenient for subsequent analysis and troubleshooting of the routing terminal data.

[0028] Optionally, in the mobile network management method, the method further includes:

[0029] When the data request volumes of multiple areas are all greater than the request threshold, first judge whether the area with the largest data request volume is a non-compliant area. If the area with the largest data request volume is a non-compliant area, then judge in turn according to the size of the data request volume.

[0030] In the above solution of the present application, when the data requests of multiple areas are all greater than the request threshold, compliance judgment is required. If the area with the largest data request volume is a compliant area, the position of the routing terminal is adjusted accordingly. If the area with the largest data request volume is a non-compliant area, then the compliance judgment of the next area with a data request volume greater than the request threshold is performed, improving the stability of the position adjustment of the routing terminal.

[0031] On the other hand, the present application discloses a mobile network management system, which includes:

[0032] A data statistics module, configured to obtain in real time the terminals requesting data and count the request volumes of the terminal data in different areas;

[0033] A position acquisition module, configured to acquire the area position when the request volume of the terminal data in the area is greater than the request threshold;

[0034] A control module, configured to control the routing terminal to move to the corresponding position in the area based on the area position.

[0035] In the above solution of the present application, by counting the data request volume, for the area with the largest data request volume, the data transmission stability is correspondingly improved, and the position of the routing terminal is adjusted accordingly, so that the routing terminal adapts to the area with the largest data request volume and meets the user's usage requirements.

[0036] On the other hand, the present application discloses a mobile network management device, which includes a memory and a processor, and the memory stores a computer program that can be loaded and executed by the processor to perform the above-mentioned mobile network management method.

[0037] On the other hand, the present application discloses a storage medium storing a computer program that can be loaded and executed by a processor to perform the mobile network management method as described above.

[0038] In summary, the above solutions of the present application have at least one of the following beneficial effects:

[0039] 1. By counting the data request volume, for the area with the largest data request volume, correspondingly improving the data transmission stability, and correspondingly adjusting the position of the routing terminal, so that the routing terminal adapts to the area with the largest data request volume to meet the user's usage requirements;

[0040] 2. When there is no data request volume that meets the maximum request threshold within a certain period of time, correspondingly controlling the routing terminal to move to the initial position, which can match the initial position in a normal usage scenario and improve the usage efficiency;

[0041] 3. By regularly obtaining the data request volume of each location area and counting the data request volume of each location, the area with the largest data request volume can be obtained, and then marking this area as the initial position of the routing terminal, which can adapt to more users. BRIEF DESCRIPTION OF THE DRAWINGS

[0042] Figure 1 is a flowchart of the steps of the mobile network management method described in the present application.

[0043] Figure 2 is a block diagram of the structure of the mobile network management system described in the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0044] The present application will be further described in detail below with reference to the accompanying drawings.

[0045] In the embodiments of the present application, based on different personnel flow densities in factories or office areas, etc., corresponding different network requirements are proposed. Therefore, a mobile network management method is proposed. Refer to Figure 1 , which is a flowchart of the steps of the method. Among them, it includes:

[0046] S1. Real-time obtain the terminals requesting data, and count the request volumes of the terminal data in different regions;

[0047] In the embodiments of the present application, the coverage area of the routing terminal will be divided, and the request volume of the data in each area will be counted, so as to know the size of the request volume of the terminal data in different areas. Based on the size of the data request volume, the network requirements of different areas can be obtained, which can provide a data basis and basis for the routing terminal.

[0048] S2. When the request volume of the terminal data in the area is greater than the request threshold, obtain the area location;

[0049] In specific implementation, the size of the data request volume corresponds to the network demand. When the data requests in each region are relatively balanced, or for example, during holidays when the data request volume is small, at this time, there is no need to adjust the routing terminal. Therefore, in the embodiments of the present application, it is preferably to judge the data request volume, judge whether the request volume of the terminal data in each region is greater than the request threshold, and set the threshold. Only when the request volume of the terminal data is greater than the request threshold, indicating that the network demand in this region is large, at this time, obtain the location information of the region where the request volume of the terminal data is greater than the request threshold. The system can know which location's region has a request volume of terminal data greater than the request threshold, which is convenient for adjusting the routing terminal.

[0050] S3. Based on the regional location, control the routing terminal to move to the corresponding position in this region.

[0051] When the request volume of the terminal data is greater than the request threshold, the location information of the corresponding region is obtained. Therefore, it is necessary to ensure the network signal transmission in this region. Based on the location information of this region, determine the adjustment position of the routing terminal, and control the routing terminal to move to the corresponding position in this region. After adjustment, the network signal in this region can be stronger, so as to meet the use of personnel in the region with a large network demand.

[0052] In the embodiments of the present application, the routing terminal is bound to the aircraft, and by controlling the aircraft, the movement of the routing terminal is controlled. A plurality of charging points are set within the coverage area of the routing terminal. When the network request is idle, it can move to the charging point for charging to ensure sufficient power.

[0053] As mentioned in the foregoing embodiments, if the data requests in each region do not exceed the request threshold, there is no need to adjust the routing terminal. However, in specific implementation, there will still be differences in data requests. Therefore, in some possible embodiments of the present application, for the mobile network management method, wherein, the method further includes:

[0054] If within the time interval of the predetermined time, there is no region where the request volume of the terminal data is greater than the request threshold, control the routing terminal to move to the initial position.

[0055] In the embodiments of the present application, within a period of time, there is no region where the request volume of the terminal data is greater than the request threshold. At this time, theoretically, there is no need to adjust the position of the routing terminal. However, there will still be differences in the request volume of the terminal data in different regions. If no adjustment is made for a period of time, it may also affect user use. Therefore, when there is no region where the request volume of the terminal data is greater than the request threshold within a period of time, the routing terminal will be controlled to move to the initial position. The initial position is generally set in the region with a relatively large data request volume, which can adapt to the personnel region with more network demands as much as possible.

[0056] In some possible embodiments of the present application, in the mobile network management method, the method further includes:

[0057] Regularly obtain the data request volumes of each location area. Based on the location of the area with the maximum data request volume, the parking location of the routing terminal corresponding to this area is the initial location.

[0058] In the embodiments of the present application, determining the initial location is mainly based on the data request volumes of different areas, and it is necessary to ensure the use by a large number of people. Therefore, regularly obtain the data request volumes of each area, and determine the area with the maximum data request volume as the initial location. In specific implementation, a difference threshold can also be set. When the difference between the data request volume of the area with the maximum data request volume and the data request volume of the area with the second largest data request volume is greater than the threshold, it means that the area with the maximum data request volume is relatively reliable.

[0059] In the foregoing embodiments, even if the area with the maximum data request volume is determined, the position of the routing terminal still needs to be correspondingly adjusted. In some possible embodiments, in the mobile network management method, in the step of controlling the routing terminal to move to the corresponding position in this area based on the area location, the step of determining the corresponding position within the area includes:

[0060] Within the range of this area location, adjust the position of the routing terminal every other period, and obtain the location information of the request data terminal;

[0061] Based on different routing terminal positions, determine the routing terminal position closest to the request data terminal as the corresponding position of the routing terminal in this area.

[0062] In the embodiments of the present application, after determining the area with the maximum data request volume, it is necessary to adjust the position of the routing terminal. At this time, every other period, for example, every ten seconds, adjust the position of the routing terminal, either randomly or according to a certain rule. Based on different routing terminal positions, obtain the location information of the request data terminal within one minute, and the location distribution information of the terminals requesting data can be obtained. Based on the location distribution information, the position where the routing terminal is closest to the terminal can be obtained. Therefore, the final position is determined, and the routing terminal can be adjusted to the corresponding position.

[0063] In some possible embodiments of the present application, in the mobile network management method, before the step of controlling the routing terminal to move to the corresponding position in this area based on the area location, it further includes:

[0064] When it is determined that the current area is a non-compliant area based on the area where the data request volume is greater than the request threshold, an exception prompt is issued, and the data request volume of this area this time is not included in the judgment.

[0065] In the embodiment of the present application, since the adjustment of the routing terminal is based on the data request volume, but in the specific implementation, for example, in the toilet area, normally, the data request volume in this area will not be too large. And when the data request volume in this area is greater than the request threshold, it is unreasonable and there may be a situation where employees are lazy. Therefore, in the embodiment of the present application, a judgment on whether the area is compliant will be made. If the current area is compliant, the routing terminal will be adjusted accordingly. If the current area is non-compliant, the data request volume at this time will not be included in the judgment, and the routing terminal will not make a location adjustment based on the current non-compliant area.

[0066] In some possible embodiments, for the mobile network management method described above, when it is determined that the current area is a non-compliant area based on the area where the data request volume is greater than the request threshold, the steps of issuing an exception prompt and not including the data request volume of this area in the judgment include:

[0067] Based on the area where the data request volume is greater than the request threshold, obtain the current time;

[0068] Based on the current time, determine whether the current time is within the time range when data requests are allowed in the current area;

[0069] If the current time is not within the time range when data requests are allowed in the current area, then the current area is a non-compliant area.

[0070] In the embodiment of the present application, as mentioned before, a judgment on whether the area is compliant will be made. First, the data request volume in the current area should be greater than the request threshold, and the current area will be judged. The current time is obtained, and it is determined whether the current time is within the time range when data requests are allowed in the current area. For example, in the employee dormitory, during the normal working hours on weekdays, the data request volume in the employee dormitory is relatively small and there will be no situation where the data request volume is greater than the request threshold. Therefore, if the current time is the working hours on weekdays, then the current time is not within the time range when data requests are allowed in the current area. If the current time is on a rest day or during rest time, then the current time is within the time range when data requests are allowed in the current area, and the corresponding area is a compliant area. Therefore, at different times, the current area may be compliant or non-compliant. Making a compliance judgment based on time improves the accuracy of the compliance judgment.

[0071] In some possible embodiments of the present application, for the mobile network management method described above, the method further includes:

[0072] When the data request volumes of multiple regions are all greater than the request threshold, first determine whether the region with the largest data request volume is a non-compliant region. If the region with the largest data request volume is a non-compliant region, then make judgments in sequence according to the size of the data request volume.

[0073] In the embodiment of the present application, the foregoing solution mentions that when the data request volume is greater than the request threshold, the position of the routing terminal will be adjusted. In specific implementation, there may be a situation where the data request volumes of multiple regions are all greater than the request threshold. At this time, it is possible to judge whether the region is compliant. If the region with the largest data request volume is compliant, then adjust the position of the routing terminal based on the region with the largest data request volume. If the region with the largest data request volume is non-compliant, then the data of the region with the largest data request volume is not included in the judgment. At this time, judge whether the region with the second largest data request volume is compliant. If it is compliant, then adjust the position of the routing terminal correspondingly based on the region with the second largest data request volume. When the region with the second largest data request volume is also a non-compliant region, continue to make judgments. If the largest data request volume of the region with the third largest data request volume is less than the request threshold, end the judgment. If the largest request volume of the region with the third largest data request volume is greater than the request threshold, continue to make a compliance judgment until the routing terminal is adjusted correspondingly or the judgment ends.

[0074] Another embodiment of the present application discloses a mobile network management system. Refer to Figure 2 , which is a structural block diagram of the system. Among them, it includes:

[0075] A data statistics module 100, configured to obtain in real time the terminals of the request data and count the request volumes of the terminal data in different regions;

[0076] A position acquisition module 200, configured to acquire the region position when the request volume of the terminal data in the region is greater than the request threshold;

[0077] A control module 300, configured to control the routing terminal to move to the corresponding position of the region based on the region position.

[0078] In the embodiment of the present application, the coverage area of the routing terminal will be divided. By using the data statistics module to count the data request volumes in each region, it is possible to know the sizes of the request volumes of the terminal data in different regions. Based on the sizes of the data request volumes, the network demands of different regions can be obtained, which can provide a data basis and basis for the routing terminal.

[0079] In specific implementation, the size of the data request volume corresponds to the network requirements. When the data requests in each region are relatively balanced, or for example, during holidays when the data request volume is small, there is no need to adjust the routing terminal at this time. Therefore, in the embodiments of the present application, it is preferably to judge the data request volume, and judge whether the request volume of the terminal data in each region is greater than the request threshold, and set the threshold. Only when the request volume of the terminal data is greater than the request threshold, indicating that the network requirements in this region are large, at this time, the position acquisition module correspondingly acquires the position information of the region where the request volume of the terminal data is greater than the request threshold, and the system can know which position region has a request volume of terminal data greater than the request threshold, which is convenient for adjusting the routing terminal.

[0080] When the request volume of the terminal data is greater than the request threshold, the position information of the corresponding region is obtained. Therefore, it is necessary to ensure the network signal transmission in this region. Based on the position information of this region, the adjustment position of the routing terminal is determined, and the control module controls the routing terminal to move to the corresponding position in this region. After the adjustment, the network signal in this region can be made stronger, so as to meet the usage requirements of the personnel in the region with large network requirements.

[0081] In the embodiments of the present application, the routing terminal is bound to the aircraft, and the movement of the routing terminal is controlled by controlling the aircraft. A plurality of charging points are set in the coverage area of the routing terminal. When the network request is idle, it can move to the charging point to charge and ensure sufficient power.

[0082] On the other hand, the present application discloses a mobile network management device, which includes a memory and a processor. The memory stores a computer program that can be loaded and executed by the processor to perform the mobile network management method as described above.

[0083] On the other hand, the present application discloses a storage medium, which stores a computer program that can be loaded and executed by the processor to perform the mobile network management method as described above.

[0084] The steps of the method or algorithm described in combination with the embodiments disclosed in this article can be directly implemented by hardware, software modules executed by a processor, or a combination of the two. The software module can be placed in a random access memory (RAM), memory, read-only memory (ROM), electrically programmable ROM, electrically erasable programmable ROM, register, hard disk, removable disk, CD-ROM, or any other form of storage medium well-known in the technical field.

[0085] In the description of this specification, the descriptions referring to terms such as "one embodiment", "some embodiments", "examples", "specific examples", or "some examples" etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0086] In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In the description of the present invention, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise specifically defined.

[0087] Any process or method description shown in a flowchart or described in other ways herein can be understood as representing a module, segment, or part of code including one or more executable instructions for implementing a customized logic function or process. And the scope of the preferred embodiments of the present invention includes additional implementations, where the functions can be executed in a manner that is not in the order shown or discussed, including in a substantially simultaneous manner according to the functions involved or in a reverse order, which should be understood by those skilled in the art to which the embodiments of the present invention pertain.

[0088] This embodiment provides a computer-readable storage medium. Since the computer program stored therein, after running on a processor, can implement the respective steps of the foregoing embodiments, it can thus achieve the same technical effects as the foregoing embodiments. The principle analysis can refer to the relevant step descriptions of the foregoing, and will not be elaborated herein.

[0089] The embodiments of this specific implementation manner are all preferred embodiments of this application, and do not limit the protection scope of this application accordingly. Therefore, all equivalent changes made according to the structure and principle of this application should be covered within the protection scope of this application.

Claims

1. A mobile network management method, characterized in that Including: A terminal that obtains request data in real time and counts the request volumes of terminal data in different regions; When the request volume of terminal data in a region is greater than the request threshold, obtain the region location; Based on the region location, control the routing terminal to move to the corresponding location in this region; Before the step of controlling the routing terminal to move to the corresponding location in this region based on the region location, it further includes: Based on the region where the data request volume is greater than the request threshold, when it is determined that the current region is a non-compliant region, an exception prompt is issued, and the data request volume of this region this time is not included in the judgment; The step of, based on the region where the data request volume is greater than the request threshold, when it is determined that the current region is a non-compliant region, issuing an exception prompt and not including the data request volume of this region this time in the judgment includes: Based on the region where the data request volume is greater than the request threshold, obtain the current time; Based on the current time, determine whether the current time is within the time range allowed for data requests in the current region; If the current time is not within the time range allowed for data requests in the current region, then the current region is a non-compliant region; At different times, it is possible that the current region is compliant, and it is also possible that the current region is non-compliant. Making compliance judgments based on time improves the accuracy of compliance judgments.

2. The mobile network management method according to claim 1, characterized in that The method further includes: If within the time interval of a predetermined time, there is no region where the terminal data request volume is greater than the request threshold, control the routing terminal to move to the initial position.

3. The mobile network management method according to claim 2, wherein The method further includes: Regularly obtain the data request volumes of each location region, and based on the region location with the maximum data request volume, the parking position of the routing terminal corresponding to this region is the initial position.

4. The mobile network management method according to claim 1, characterized in that, In the step of, based on the region location, controlling the routing terminal to move to the corresponding location in this region, the step of determining the corresponding location within the region includes: Within the range of this region location, adjust the position of the routing terminal every other period, and obtain the position information of the request data terminal; Based on different routing terminal positions, determine that the routing terminal position closest to the position of the request data terminal is the corresponding position of the routing terminal in this region.

5. The mobile network management method according to claim 1, wherein The method further includes: When the data request volumes of multiple regions are all greater than the request threshold, first determine whether the region with the maximum data request volume is a non-compliant region. If the region with the maximum data request volume is a non-compliant region, then make judgments in sequence according to the size of the data request volume.

6. A mobile network management system, characterized in that, Including: A data statistics module, which is used to obtain the terminal that requests data in real time and count the request volumes of terminal data in different regions; A position acquisition module, which is used to obtain the region location when the request volume of terminal data in a region is greater than the request threshold; An exception prompt module, which is used to, based on the region where the data request volume is greater than the request threshold, when it is determined that the current region is a non-compliant region, issue an exception prompt and not include the data request volume of this region this time in the judgment; The exception prompt module includes: A time acquisition unit, which is used to, based on the region where the data request volume is greater than the request threshold, obtain the current time; A judgment unit, which is used to, based on the current time, determine whether the current time is within the time range allowed for data requests in the current region; Compliance determination unit: If the current time is not within the time range allowed for data requests in the current area, then the current area is a non-compliant area. At different times, the current area may be compliant or non-compliant. Making compliance judgments based on time improves the accuracy of compliance judgments. Control module, used to control the routing terminal to move to the corresponding position in the area based on the area location.

7. A mobile network management device, characterized in that, It includes a memory and a processor. The memory stores a computer program that can be loaded and executed by the processor to perform the mobile network management method according to any one of claims 1-5.

8. A storage medium, characterized in that, Stores a computer program that can be loaded and executed by the processor to perform the mobile network management method according to any one of claims 1-5.

Citation Information

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