A combined optimization method and system for communication signals
By detecting and analyzing abnormal communication data, dividing abnormal communication areas, performing base station scanning and simulating combined communication, generating and optimizing communication signal transmission solutions, the problem of signal quality degradation in high-density crowd scenarios is solved, and the stability and user experience of the communication system are improved.
Patent Information
- Application Number
- CN202510094173.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2045-01-21
AI Technical Summary
In scenarios where high-density crowds gather, the signal interference is severe and the transmission environment is complex, resulting in a decline in the quality of communication signals and affecting the user's communication experience.
By obtaining abnormal communication data, detecting the number of abnormal communication terminals, determining the abnormal communication location and requirements, dividing abnormal communication areas, performing base station scanning, simulating combined communication, generating multiple communication signal transmission schemes, and performing optimization and screening, selecting target signal transmission schemes, realizing signal transmission planning and data transmission.
It improves the stability and reliability of the communication system, enhances the communication experience of users, ensures that the communication needs of terminal equipment are met, and at the same time makes full use of existing base station resources, improving communication efficiency and resource utilization.
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Figure CN119562283B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of signal transmission, and in particular to a combined optimization method and system for communication signals. Background Art
[0002] With the rapid development of mobile communication technology, wireless communication systems have been widely used in people's daily lives, especially in places where people gather, such as railway stations, shopping malls, stadiums and other large public places, where the demand for wireless communication is particularly strong. However, in these high-density crowd scenes, due to factors such as the large number of users, severe signal interference, and complex transmission environment, the quality of communication signals often decreases significantly, resulting in poor communication, reduced data transmission rate, poor call quality, and other problems, which seriously affects the user's communication experience. Summary of the invention
[0003] In order to solve at least one of the above technical problems, the present application provides a combined optimization method and system for communication signals.
[0004] In a first aspect, the present application provides a combined optimization method for communication signals, which adopts the following technical solution:
[0005] Acquire abnormal communication data, where the abnormal communication data is signal request data that a terminal device in a preset area cannot realize a communication demand under a communication condition;
[0006] Performing quantity detection on the abnormal communication data, and when the number of detected abnormal communication terminals exceeds a preset communication abnormality number, determining the abnormal communication location and abnormal communication demand of the terminal device according to the abnormal communication data, wherein the preset communication abnormality number is a number set based on the nature of regional buildings;
[0007] Performing regional edge division on the abnormal communication location to obtain an abnormal communication area;
[0008] Scanning communication base stations based on the abnormal communication area to obtain regional base station information;
[0009] Determine the location of the communication base station and the communication capacity of the base station according to the regional base station information, and simulate combined communication for the abnormal communication demand, the location of the communication base station and the communication capacity of the base station to obtain multiple communication signal transmission schemes corresponding to each of the terminal devices;
[0010] Optimizing and screening the multiple communication information transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device;
[0011] Signal transmission planning is performed for the abnormal communication demand based on the target signal transmission scheme, and communication demand data corresponding to the abnormal communication demand is received, and the communication demand data is sent to the terminal device.
[0012] By adopting the above technical solution, the signal request data that the terminal equipment in the preset area cannot realize under the communication conditions is obtained, that is, abnormal communication data. It provides a key information basis for subsequent processing. Then, the abnormal communication data is detected in quantity, and the preset communication anomaly number based on the regional building properties is set as the judgment threshold to determine that there is a signal transmission abnormality problem in the area, thereby ensuring the accuracy of abnormal detection. After determining the abnormal communication location and demand, the abnormal communication location is further divided into regional edges to obtain a specific abnormal communication area. It provides a clear target range for subsequent base station scanning and improves the scanning efficiency. Based on the abnormal communication area, the communication base station is scanned to obtain the regional base station information, which provides data support for subsequent combined communication. The communication base station location and communication capacity are determined according to the regional base station information, and simulated combined communication is performed with the abnormal communication demand to generate multiple communication signal transmission schemes for each terminal device. The actual capacity of the base station and the communication demand of the terminal device are fully considered, providing a selection space for subsequent optimization screening. Multiple communication information transmission schemes are optimized and screened to obtain the target signal transmission scheme corresponding to each terminal device. It ensures that the final selected scheme not only meets the communication needs of the terminal device, but also makes full use of the existing base station resources, thereby improving communication efficiency and resource utilization. Based on the target signal transmission scheme, signal transmission planning is performed for abnormal communication needs, and communication demand data corresponding to the abnormal communication needs is received in real time, and then the data is sent to the terminal device. Rapid response and effective processing of abnormal communication needs are achieved, the stability and reliability of the communication system are improved, and thus the user's communication experience is also improved.
[0013] In a possible implementation, dividing the abnormal communication location into regional edges to obtain the abnormal communication area includes:
[0014] Determine the movement trajectory of the terminal device within a preset time period and the regional building properties of the area where the terminal device is located based on the abnormal communication location;
[0015] Determining the abnormal factors causing the abnormal communication of the terminal device according to the building properties in the area;
[0016] Determine whether the abnormal factor is caused by the communication abnormality of the regional building. If so, collect the coordinate position of the regional building and generate the abnormal communication area according to the coordinate position of the regional building;
[0017] If the abnormal factor is not a communication abnormality caused by the building in the area, the moving trajectory routes corresponding to each terminal device are summarized, and edge critical points are selected for the summarized trajectory routes to obtain an edge critical point set;
[0018] The edge critical point set is connected by lines according to adjacent points to obtain an abnormal communication area.
[0019] In a possible implementation, the simulating combined communication of the abnormal communication demand, the location of the communication base station, and the communication capacity of the base station to obtain multiple communication signal transmission schemes corresponding to each of the terminal devices includes:
[0020] Calculate the edge distance between the position of the communication base station and the abnormal communication area, and divide the communication base station into regions according to the edge distance to obtain a first base station area, a second base station area, and a third base station area, wherein the first base station area is the base station area closest to the abnormal communication area, the second base station area is the base station area adjacent to the first base station area, and the third base station area is the base station area adjacent to the second base station area;
[0021] Determine the unit communication capacity of each base station within the first base station area based on the base station communication capacity;
[0022] Summarizing the unit communication capacity of each base station in the first base station area to obtain a first total communication capacity corresponding to the first base station area;
[0023] Determine whether the first communication total capacity meets the abnormal communication demand. If so, allocate base stations to the abnormal communication demand according to the unit communication capacity and the edge distance between each base station in the first base station area and the abnormal communication area, and simulate communication for the abnormal communication demand according to the allocated base station communication plan to obtain a simulated communication result;
[0024] The base station communication scheme is adjusted according to the simulation communication result to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0025] In a possible implementation manner, the determining whether the first total communication capacity meets the abnormal communication demand includes:
[0026] If the first total communication capacity does not meet the abnormal communication demand, determining the unit communication capacity of each base station in the second base station area based on the base station communication capacity, and summarizing the unit communication capacity of each base station in the second base station area to obtain a second total communication capacity corresponding to the second base station area;
[0027] Calculating the sum of the second communication total capacity and the first communication total capacity to obtain the dual-area communication total capacity;
[0028] Determine whether the total communication capacity of the dual-area meets the abnormal communication demand, and if so, determine the first communication proportion value of the first base station area and the second base station area, and perform signal disassembly on the communication demand corresponding to each terminal device in the abnormal communication demand based on the first communication proportion value to obtain a first communication signal for transmission in the first base station area and a second communication signal for transmission in the second base station area;
[0029] The first communication signal and the second communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0030] In a possible implementation, the determining whether the dual-area communication total capacity meets the abnormal communication requirement includes:
[0031] If the dual-area communication total capacity cannot meet the abnormal communication demand, determine the capacity difference between the dual-area communication total capacity and the required communication capacity that meets the abnormal communication demand, and obtain the difference communication capacity;
[0032] Determine a first base station set adjacent to the second base station area in the third base station area, and detect whether the sum of the unit communication capacity of each base station in the first base station set meets the difference communication capacity according to the base station communication capacity;
[0033] If satisfied, determine the second communication proportion values of the first base station set, the first base station area, and the second base station area, and perform signal decomposition of the communication demand corresponding to each terminal device in the abnormal communication demand based on the second communication proportion value to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, and a third communication signal corresponding to the first base station set;
[0034] The first communication signal, the second communication signal and the third communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0035] In a possible implementation manner, the detecting whether the sum of the unit communication capacity of each base station in the first base station set satisfies the difference communication capacity includes:
[0036] If the sum of the unit communication capacity of each base station in the first base station set does not satisfy the difference communication capacity, determining a second base station set adjacent to each base station in the first base station set in the third base station area;
[0037] Calculating the sum of the unit communication capacity of each base station in the second base station set according to the base station communication capacity to obtain the set communication capacity;
[0038] Determine whether the sum of the collective communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity. If not, cyclically execute the steps of determining the N+1th base station set adjacent to each base station in the Nth base station set in the third base station area, calculating the sum of the unit communication capacity of each base station in the N+1th base station set according to the base station communication capacity, and obtaining the collective communication capacity, until the sum of the collective communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity, and N is greater than 2;
[0039] If satisfied, determine the second communication proportion values of the first base station set, the second base station set, the first base station area, and the second base station area, and perform signal decomposition of the communication demand corresponding to each terminal device in the abnormal communication demand based on the second communication proportion value to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, a third communication signal corresponding to the first base station set, and a fourth communication signal corresponding to the second base station set;
[0040] The first communication signal, the second communication signal, the third communication signal and the fourth communication signal are allocated to base stations according to the edge distance, so as to obtain a plurality of communication signal transmission schemes corresponding to each terminal device.
[0041] In a possible implementation, the optimizing and screening the multiple communication information transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device includes:
[0042] Respectively detecting the signal strength status corresponding to each communication information transmission scheme to obtain the signal transmission strength corresponding to each communication information transmission scheme;
[0043] The multiple communication information transmission schemes are comprehensively screened according to the signal transmission strength to obtain a target signal transmission scheme corresponding to each terminal device.
[0044] In a second aspect, the present application provides a combined optimization system for communication signals, which adopts the following technical solution:
[0045] A combined optimization system for communication signals, comprising:
[0046] A data acquisition module, used to acquire abnormal communication data, wherein the abnormal communication data is signal request data that a terminal device in a preset area cannot realize a communication demand under a communication condition;
[0047] an abnormality detection module, used to detect the number of abnormal communication data, and when the number of abnormal communication terminals detected exceeds a preset communication abnormality number, determine the abnormal communication location and abnormal communication demand of the terminal device according to the abnormal communication data, wherein the preset communication abnormality number is a number set based on the nature of regional buildings;
[0048] A region division module, used for dividing the abnormal communication location into regional edges to obtain an abnormal communication region;
[0049] A base station scanning module, used to scan communication base stations based on the abnormal communication area to obtain regional base station information;
[0050] A simulation communication module, used to determine the location of a communication base station and the communication capacity of the base station according to the regional base station information, and simulate combined communication for the abnormal communication demand, the location of the communication base station and the communication capacity of the base station to obtain multiple communication signal transmission schemes corresponding to each of the terminal devices;
[0051] A scheme optimization module, used to optimize and screen the multiple communication information transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device;
[0052] A data communication module is used to perform signal transmission planning for the abnormal communication demand based on the target signal transmission scheme, receive communication demand data corresponding to the abnormal communication demand, and send the communication demand data to the terminal device.
[0053] In a possible implementation, when the area division module divides the abnormal communication location into regional edges to obtain the abnormal communication area, it is specifically used to:
[0054] Determine the movement trajectory of the terminal device within a preset time period and the regional building properties of the area where the terminal device is located based on the abnormal communication location;
[0055] Determining the abnormal factors causing the abnormal communication of the terminal device according to the building properties in the area;
[0056] Determine whether the abnormal factor is caused by the communication abnormality of the regional building. If so, collect the coordinate position of the regional building and generate the abnormal communication area according to the coordinate position of the regional building;
[0057] If the abnormal factor is not a communication abnormality caused by the building in the area, the moving trajectory routes corresponding to each terminal device are summarized, and edge critical points are selected for the summarized trajectory routes to obtain an edge critical point set;
[0058] The edge critical point set is connected by lines according to adjacent points to obtain an abnormal communication area.
[0059] In another possible implementation, when the simulation communication module simulates the combined communication of the abnormal communication demand, the location of the communication base station, and the communication capacity of the base station to obtain multiple communication signal transmission schemes corresponding to each of the terminal devices, it is specifically used to:
[0060] Calculate the edge distance between the position of the communication base station and the abnormal communication area, and divide the communication base station into regions according to the edge distance to obtain a first base station area, a second base station area, and a third base station area, wherein the first base station area is the base station area closest to the abnormal communication area, the second base station area is the base station area adjacent to the first base station area, and the third base station area is the base station area adjacent to the second base station area;
[0061] Determine the unit communication capacity of each base station within the first base station area based on the base station communication capacity;
[0062] Summarizing the unit communication capacity of each base station in the first base station area to obtain a first total communication capacity corresponding to the first base station area;
[0063] Determine whether the first communication total capacity meets the abnormal communication demand. If so, allocate base stations to the abnormal communication demand according to the unit communication capacity and the edge distance between each base station in the first base station area and the abnormal communication area, and simulate communication for the abnormal communication demand according to the allocated base station communication plan to obtain a simulated communication result;
[0064] The base station communication scheme is adjusted according to the simulation communication result to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0065] In another possible implementation, when determining whether the first total communication capacity meets the abnormal communication requirement, the simulation communication module is specifically configured to:
[0066] If the first total communication capacity does not meet the abnormal communication demand, determining the unit communication capacity of each base station in the second base station area based on the base station communication capacity, and summarizing the unit communication capacity of each base station in the second base station area to obtain a second total communication capacity corresponding to the second base station area;
[0067] Calculating the sum of the second communication total capacity and the first communication total capacity to obtain the dual-area communication total capacity;
[0068] Determine whether the total communication capacity of the dual-area meets the abnormal communication demand, and if so, determine the first communication proportion value of the first base station area and the second base station area, and perform signal disassembly on the communication demand corresponding to each terminal device in the abnormal communication demand based on the first communication proportion value to obtain a first communication signal for transmission in the first base station area and a second communication signal for transmission in the second base station area;
[0069] The first communication signal and the second communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0070] In another possible implementation, when determining whether the total capacity of the dual-area communication meets the abnormal communication requirement, the simulation communication module is specifically configured to:
[0071] If the dual-area communication total capacity cannot meet the abnormal communication demand, determine the capacity difference between the dual-area communication total capacity and the required communication capacity that meets the abnormal communication demand, and obtain the difference communication capacity;
[0072] Determine a first base station set adjacent to the second base station area in the third base station area, and detect whether the sum of the unit communication capacity of each base station in the first base station set meets the difference communication capacity according to the base station communication capacity;
[0073] If satisfied, determine the second communication proportion values of the first base station set, the first base station area, and the second base station area, and perform signal decomposition of the communication demand corresponding to each terminal device in the abnormal communication demand based on the second communication proportion value to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, and a third communication signal corresponding to the first base station set;
[0074] The first communication signal, the second communication signal and the third communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0075] In another possible implementation manner, when detecting whether the sum of the unit communication capacity of each base station in the first base station set satisfies the difference communication capacity, the simulation communication module is specifically configured to:
[0076] If the sum of the unit communication capacity of each base station in the first base station set does not satisfy the difference communication capacity, determining a second base station set adjacent to each base station in the first base station set in the third base station area;
[0077] Calculating the sum of the unit communication capacity of each base station in the second base station set according to the base station communication capacity to obtain the set communication capacity;
[0078] Determine whether the sum of the collective communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity. If not, cyclically execute the steps of determining the N+1th base station set adjacent to each base station in the Nth base station set in the third base station area, calculating the sum of the unit communication capacity of each base station in the N+1th base station set according to the base station communication capacity, and obtaining the collective communication capacity, until the sum of the collective communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity, and N is greater than 2;
[0079] If satisfied, determine the second communication proportion values of the first base station set, the second base station set, the first base station area, and the second base station area, and perform signal decomposition of the communication demand corresponding to each terminal device in the abnormal communication demand based on the second communication proportion value to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, a third communication signal corresponding to the first base station set, and a fourth communication signal corresponding to the second base station set;
[0080] The first communication signal, the second communication signal, the third communication signal and the fourth communication signal are allocated to base stations according to the edge distance, so as to obtain a plurality of communication signal transmission schemes corresponding to each terminal device.
[0081] In another possible implementation, when the scheme optimization module optimizes and screens the multiple communication information transmission schemes to obtain the target signal transmission scheme corresponding to each terminal device, it is specifically used to:
[0082] Respectively detecting the signal strength status corresponding to each communication information transmission scheme to obtain the signal transmission strength corresponding to each communication information transmission scheme;
[0083] The multiple communication information transmission schemes are comprehensively screened according to the signal transmission strength to obtain a target signal transmission scheme corresponding to each terminal device.
[0084] In a third aspect, the present application provides an electronic device, which adopts the following technical solution:
[0085] at least one processor;
[0086] Memory;
[0087] At least one application, wherein the at least one application is stored in a memory and configured to be executed by at least one processor, and the at least one application is configured to: execute a combined optimization method for communication signals as described in any one of the first aspects.
[0088] In a fourth aspect, the present application provides a computer-readable storage medium, which adopts the following technical solution:
[0089] A computer-readable storage medium stores a computer program, which, when executed in a computer, causes the computer to execute any of the combined optimization methods for communication signals according to the first aspect.
[0090] In summary, the present application includes at least one of the following beneficial technical effects:
[0091] By adopting the above technical solution, the signal request data that the terminal equipment in the preset area cannot realize under the communication conditions is obtained, that is, abnormal communication data. It provides a key information basis for subsequent processing. Then, the abnormal communication data is detected in quantity, and the preset communication anomaly number based on the regional building properties is set as the judgment threshold to determine that there is a signal transmission abnormality problem in the area, thereby ensuring the accuracy of abnormal detection. After determining the abnormal communication location and demand, the abnormal communication location is further divided into regional edges to obtain a specific abnormal communication area. It provides a clear target range for subsequent base station scanning and improves the scanning efficiency. Based on the abnormal communication area, the communication base station is scanned to obtain the regional base station information, which provides data support for subsequent combined communication. The communication base station location and communication capacity are determined according to the regional base station information, and simulated combined communication is performed with the abnormal communication demand to generate multiple communication signal transmission schemes for each terminal device. The actual capacity of the base station and the communication demand of the terminal device are fully considered, providing a selection space for subsequent optimization screening. Multiple communication information transmission schemes are optimized and screened to obtain the target signal transmission scheme corresponding to each terminal device. It ensures that the final selected scheme not only meets the communication needs of the terminal device, but also makes full use of the existing base station resources, thereby improving communication efficiency and resource utilization. Based on the target signal transmission scheme, signal transmission planning is performed for abnormal communication needs, and communication demand data corresponding to the abnormal communication needs is received in real time, and then the data is sent to the terminal device. Rapid response and effective processing of abnormal communication needs are achieved, the stability and reliability of the communication system are improved, and thus the user's communication experience is also improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0092] Figure 1 A flowchart of a combined optimization method for communication signals provided in an embodiment of the present application.
[0093] Figure 2A schematic diagram of the structure of a combined optimization system for communication signals provided in an embodiment of the present application.
[0094] Figure 3 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0095] The following is combined with Figure 1-3 This application is described in further detail.
[0096] This specific embodiment is merely an explanation of the present application and is not a limitation of the present application. After reading this specification, a person skilled in the art may make non-creative modifications to the present embodiment as needed, but such modifications are protected by the patent law as long as they are within the scope of the present application.
[0097] In order to make the purpose, technical solution and advantages of the embodiments of the present application clearer, the technical solution in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0098] In addition, the term "and / or" in this article is only a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can represent: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character " / " in this article, unless otherwise specified, generally means that the associated objects before and after are in an "or" relationship.
[0099] The embodiments of the present application are further described in detail below in conjunction with the drawings in the specification.
[0100] The embodiment of the present application provides a method for a combined optimization method of communication signals, which is performed by an electronic device, wherein the electronic device may be an independent physical electronic device, or an electronic device cluster or distributed system composed of multiple physical electronic devices, or a cloud electronic device providing cloud computing services. The embodiment of the present application is not limited here, such as Figure 1 As shown, the method includes:
[0101] Step S10: Acquire abnormal communication data.
[0102] Among them, abnormal communication data is signal request data that the terminal equipment in the preset area cannot realize the communication demand when the communication conditions are met.
[0103] Step S11, performing quantity detection on abnormal communication data, and when the number of detected abnormal communication terminals exceeds a preset communication abnormality number, determining the abnormal communication position and abnormal communication demand of the terminal device according to the abnormal communication data.
[0104] Among them, the preset number of communication anomalies is a number set based on the nature of the regional buildings.
[0105] In an embodiment of the present application, the number of abnormal communications indicates data detected during network communication that is inconsistent with the normal communication mode, and quantity detection refers to statistics on the collected abnormal communication data to determine the number or frequency of abnormal communication events. The number of abnormal communication terminals is used to indicate the total number of terminal devices identified as performing abnormal communications in the network. The preset number of communication anomalies is a pre-set threshold used to determine whether the abnormal communication has reached a level that requires further action. This value is set based on the nature of the regional building, which means that different building areas (such as residential areas, commercial areas, industrial areas, etc.) will have different standards for the number of abnormal communications due to their different communication needs and potential risks.
[0106] Step S12: dividing the abnormal communication location into regional edges to obtain an abnormal communication area.
[0107] Specifically, based on the abnormal communication position, the moving trajectory route of the terminal device within a preset time period and the regional building properties of the terminal device are determined, and the abnormal factors of the terminal device's communication abnormality are determined according to the regional building properties. It is judged whether the abnormal factors are caused by the regional buildings. If so, the regional building coordinate positions are collected, and the abnormal communication area is generated according to the regional building coordinate positions. If the abnormal factors are not caused by the regional buildings, the mobile trajectory routes corresponding to each terminal device are summarized, and the edge critical points of the summarized trajectory routes are selected to obtain an edge critical point set. The edge critical point set is connected by lines according to adjacent points to obtain the abnormal communication area.
[0108] Step S13: Scan the communication base stations based on the abnormal communication area to obtain regional base station information.
[0109] Step S14, determine the communication base station location and base station communication capacity according to the regional base station information, and simulate combined communication for abnormal communication demand, communication base station location and base station communication capacity to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0110] Specifically, the edge distance between the position of the communication base station and the abnormal communication area is calculated, and the communication base station is divided into regions according to the edge distance to obtain a first base station area, a second base station area and a third base station area, wherein the first base station area is the base station area closest to the abnormal communication area, the second base station area is the base station area adjacent to the first base station area, and the third base station area is the base station area adjacent to the second base station area. The unit communication capacity of each base station in the first base station area is determined based on the base station communication capacity, the unit communication capacity of each base station in the first base station area is summarized to obtain a first total communication capacity corresponding to the first base station area, and it is determined whether the first total communication capacity meets the abnormal communication demand. If so, the abnormal communication demand is allocated to the base station according to the unit communication capacity and the edge distance between each base station in the first base station area and the abnormal communication area, and the abnormal communication demand is simulated according to the allocated base station communication scheme to obtain a simulated communication result, and the base station communication scheme is adjusted according to the simulated communication result to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0111] Specifically, if the first total communication capacity does not meet the abnormal communication demand, the unit communication capacity of each base station in the second base station area is determined based on the base station communication capacity, and the unit communication capacity of each base station in the second base station area is summarized to obtain the second total communication capacity corresponding to the second base station area, and the second total communication capacity is summed with the first total communication capacity to obtain the dual-area communication total capacity, and it is judged whether the dual-area communication total capacity meets the abnormal communication demand. If so, the first communication proportion value of the first base station area and the second base station area is determined, and the communication demand corresponding to each terminal device in the abnormal communication demand is signal-decomposed based on the first communication proportion value to obtain a first communication signal for transmission in the first base station area and a second communication signal for transmission in the second base station area, and the first communication signal and the second communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0112] In an embodiment of the present application, if the total communication capacity of the two-area communication cannot meet the abnormal communication demand, the capacity difference between the total communication capacity of the two-area communication and the communication capacity required to meet the abnormal communication demand is determined to obtain the difference communication capacity, and the first base station set adjacent to the second base station area in the third base station area is determined, and the sum of the unit communication capacity of each base station in the first base station set is detected according to the base station communication capacity to determine whether it meets the difference communication capacity. If it does, the second communication proportion value of the first base station set, the first base station area and the second base station area is determined, and based on the second communication proportion value, the communication demand corresponding to each terminal device in the abnormal communication demand is signal decomposed to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, and a third communication signal corresponding to the first base station set. The first communication signal, the second communication signal and the third communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0113] In an embodiment of the present application, if the sum of the unit communication capacity of each base station in the first base station set does not satisfy the difference communication capacity, then a second base station set adjacent to each base station in the first base station set in the third base station area is determined, and the sum of the unit communication capacity of each base station in the second base station set is calculated according to the base station communication capacity to obtain the collective communication capacity, and it is determined whether the sum of the collective communication capacity and the unit communication capacity of each base station in the first base station set satisfies the difference communication capacity. If not, the step of determining the N+1th base station set adjacent to each base station in the Nth base station set in the third base station area, and calculating the sum of the unit communication capacity of each base station in the N+1th base station set according to the base station communication capacity to obtain the collective communication capacity is executed in a loop until the sum of the unit communication capacity of the collective communication capacity and the sum of the unit communication capacity of each base station in the first base station set satisfies the difference communication capacity, and N is greater than 2.
[0114] If it is satisfied, the second communication proportion values of the first base station set, the second base station set, the first base station area and the second base station area are determined, and based on the second communication proportion values, the communication demand corresponding to each terminal device in the abnormal communication demand is signal decomposed to obtain the first communication signal corresponding to the first base station area, the second communication signal corresponding to the second base station area, the third communication signal corresponding to the first base station set and the fourth communication signal corresponding to the second base station set. The first communication signal, the second communication signal, the third communication signal and the fourth communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0115] Step S15: Optimize and screen multiple communication information transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device.
[0116] Specifically, the signal strength status corresponding to each communication information transmission scheme is detected respectively, the signal transmission strength corresponding to each communication information transmission scheme is obtained, and multiple communication information transmission schemes are comprehensively screened according to the signal transmission strength to obtain the target signal transmission scheme corresponding to each terminal device.
[0117] Step S16: perform signal transmission planning for abnormal communication demand based on the target signal transmission scheme, receive communication demand data corresponding to the abnormal communication demand, and send the communication demand data to the terminal device.
[0118] In the embodiment of the present application, the signal request data that the terminal device in the preset area cannot realize under the communication conditions is obtained, that is, the abnormal communication data. It provides a key information basis for subsequent processing. Then, the abnormal communication data is detected in quantity, and the preset communication anomaly number based on the regional building properties is set as the judgment threshold to determine that there is a signal transmission abnormality problem in the area, thereby ensuring the accuracy of abnormal detection. After determining the abnormal communication location and demand, the abnormal communication location is further divided into regional edges to obtain a specific abnormal communication area. It provides a clear target range for subsequent base station scanning and improves the scanning efficiency. The communication base station is scanned based on the abnormal communication area to obtain the regional base station information, which provides data support for subsequent combined communication. The communication base station location and communication capacity are determined according to the regional base station information, and simulated combined communication is performed with the abnormal communication demand to generate multiple communication signal transmission schemes for each terminal device. The actual capacity of the base station and the communication demand of the terminal device are fully considered, providing a selection space for subsequent optimization screening. Multiple communication information transmission schemes are optimized and screened to obtain the target signal transmission scheme corresponding to each terminal device. It is ensured that the final selected scheme not only meets the communication needs of the terminal device, but also can make full use of the existing base station resources, thereby improving the communication efficiency and resource utilization. Based on the target signal transmission scheme, signal transmission planning is performed for abnormal communication needs, and communication demand data corresponding to the abnormal communication needs is received in real time, and then the data is sent to the terminal device. Rapid response and effective processing of abnormal communication needs are achieved, the stability and reliability of the communication system are improved, and thus the user's communication experience is also improved.
[0119] The following is an introduction to a combined optimization system for communication signals provided in an embodiment of the present application. The combined optimization system for communication signals described below and the combined optimization method for communication signals described above can be referred to in correspondence with each other. Please refer to Figure 2 , Figure 2 : is a structural diagram of a combined optimization system 20 for communication signals provided in an embodiment of the present application, including:
[0120] The data acquisition module 21 is used to acquire abnormal communication data, where the abnormal communication data is signal request data indicating that the terminal devices in the preset area cannot realize the communication requirements under the communication conditions;
[0121] The abnormality detection module 22 is used to detect the number of abnormal communication data, and when the number of abnormal communication terminals detected exceeds the preset communication abnormality number, determine the abnormal communication location and abnormal communication demand of the terminal device according to the abnormal communication data, and the preset communication abnormality number is a number set based on the nature of the regional building;
[0122] The area division module 23 is used to divide the abnormal communication location into regional edges to obtain the abnormal communication area;
[0123] A base station scanning module 24 is used to scan communication base stations based on abnormal communication areas to obtain regional base station information;
[0124] The simulation communication module 25 is used to determine the communication base station location and the base station communication capacity according to the regional base station information, and simulate the combined communication of abnormal communication demand, communication base station location and base station communication capacity to obtain multiple communication signal transmission schemes corresponding to each terminal device;
[0125] A scheme optimization module 26 is used to optimize and screen multiple communication information transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device;
[0126] The data communication module 27 is used to perform signal transmission planning for abnormal communication requirements based on the target signal transmission scheme, receive communication requirement data corresponding to the abnormal communication requirements, and send the communication requirement data to the terminal device.
[0127] In a possible implementation manner in the embodiment of the present application, when the area division module 23 divides the abnormal communication position into regional edges to obtain the abnormal communication area, it is specifically used to:
[0128] Determine the movement trajectory of the terminal device within a preset time period and the regional building properties of the area where the terminal device is located based on the abnormal communication location;
[0129] Determine the abnormal factors that cause abnormal communication of terminal equipment based on the nature of regional buildings;
[0130] Determine whether the abnormal factor is caused by the communication abnormality of the regional building. If so, collect the coordinate position of the regional building and generate the abnormal communication area according to the coordinate position of the regional building;
[0131] If the abnormal factor is not caused by the regional buildings, the mobile trajectory routes corresponding to each terminal device are summarized, and the edge critical points are selected for the summarized trajectory routes to obtain the edge critical point set;
[0132] The edge critical point set is connected by lines according to adjacent points to obtain the abnormal communication area.
[0133] In another possible implementation of the embodiment of the present application, the simulation communication module 25 simulates combined communication for abnormal communication demand, communication base station location and base station communication capacity to obtain multiple communication signal transmission schemes corresponding to each terminal device, specifically for:
[0134] Calculate the edge distance between the communication base station location and the abnormal communication area, and divide the communication base station into regions according to the edge distance to obtain a first base station region, a second base station region, and a third base station region, wherein the first base station region is the base station region closest to the abnormal communication area, the second base station region is the base station region adjacent to the first base station region, and the third base station region is the base station region adjacent to the second base station region;
[0135] Determining the unit communication capacity of each base station within the first base station area based on the base station communication capacity;
[0136] Summarizing the unit communication capacity of each base station in the first base station area to obtain a first total communication capacity corresponding to the first base station area;
[0137] Determine whether the first communication total capacity meets the abnormal communication demand. If so, allocate base stations to the abnormal communication demand according to the unit communication capacity and the edge distance between each base station in the first base station area and the abnormal communication area, and simulate communication for the abnormal communication demand according to the allocated base station communication plan to obtain a simulated communication result;
[0138] The base station communication scheme is adjusted according to the simulation communication results to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0139] In another possible implementation of the embodiment of the present application, when the simulation communication module 25 determines whether the first communication total capacity meets the abnormal communication requirement, it is specifically used to:
[0140] If the first total communication capacity does not meet the abnormal communication demand, the unit communication capacity of each base station in the second base station area is determined based on the base station communication capacity, and the unit communication capacity of each base station in the second base station area is summarized to obtain a second total communication capacity corresponding to the second base station area;
[0141] The second communication total capacity is calculated by summing the first communication total capacity to obtain the dual-area communication total capacity;
[0142] Determine whether the total communication capacity of the two areas meets the abnormal communication demand. If so, determine the first communication ratio of the first base station area and the second base station area, and perform signal decomposition on the communication demand corresponding to each terminal device in the abnormal communication demand based on the first communication ratio to obtain a first communication signal for transmission in the first base station area and a second communication signal for transmission in the second base station area;
[0143] The first communication signal and the second communication signal are allocated to base stations according to the edge distance, and multiple communication signal transmission schemes corresponding to each terminal device are obtained.
[0144] In another possible implementation of the embodiment of the present application, when the simulation communication module 25 determines whether the total capacity of dual-area communication meets the abnormal communication demand, it is specifically used to:
[0145] If the total communication capacity of the two regions cannot meet the abnormal communication demand, the capacity difference between the total communication capacity of the two regions and the required communication capacity that meets the abnormal communication demand is determined to obtain the difference communication capacity;
[0146] Determine a first base station set adjacent to the second base station area in the third base station area, and detect whether the sum of the unit communication capacity of each base station in the first base station set meets the difference communication capacity according to the base station communication capacity;
[0147] If satisfied, determine the second communication proportion values of the first base station set, the first base station area, and the second base station area, and perform signal decomposition of the communication demand corresponding to each terminal device in the abnormal communication demand based on the second communication proportion value to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, and a third communication signal corresponding to the first base station set;
[0148] The first communication signal, the second communication signal and the third communication signal are allocated to base stations according to the edge distance, so as to obtain multiple communication signal transmission schemes corresponding to each terminal device.
[0149] In another possible implementation of the embodiment of the present application, when the analog communication module 25 detects whether the sum of the unit communication capacity of each base station in the first base station set satisfies the difference communication capacity, it is specifically used to:
[0150] If the sum of the unit communication capacity of each base station in the first base station set does not satisfy the difference communication capacity, determining a second base station set adjacent to each base station in the first base station set in the third base station area;
[0151] Calculating the sum of the unit communication capacity of each base station in the second base station set according to the base station communication capacity to obtain the set communication capacity;
[0152] Determine whether the sum of the aggregate communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity. If not, cyclically execute the steps of determining the N+1th base station set adjacent to each base station in the Nth base station set in the third base station area, calculating the sum of the unit communication capacity of each base station in the N+1th base station set according to the base station communication capacity, and obtaining the aggregate communication capacity, until the sum of the aggregate communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity, and N is greater than 2;
[0153] If satisfied, the second communication proportion values of the first base station set, the second base station set, the first base station area and the second base station area are determined, and based on the second communication proportion values, the communication demand corresponding to each terminal device in the abnormal communication demand is signal decomposed to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, a third communication signal corresponding to the first base station set, and a fourth communication signal corresponding to the second base station set;
[0154] The first communication signal, the second communication signal, the third communication signal and the fourth communication signal are allocated to base stations according to the edge distance, so as to obtain a plurality of communication signal transmission schemes corresponding to each terminal device.
[0155] In another possible implementation of the embodiment of the present application, when the scheme optimization module 26 optimizes and screens multiple communication information transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device, it is specifically used to:
[0156] Respectively detecting the signal strength status corresponding to each communication information transmission scheme to obtain the signal transmission strength corresponding to each communication information transmission scheme;
[0157] A plurality of communication information transmission schemes are comprehensively screened according to the signal transmission strength to obtain a target signal transmission scheme corresponding to each terminal device.
[0158] The present application embodiment provides an electronic device, such as Figure 3 As shown, Figure 3 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application, Figure 3 The electronic device 300 shown includes: a processor 301 and a memory 303. The processor 301 and the memory 303 are connected, such as through a bus 302. Optionally, the electronic device 300 may also include a transceiver 304. It should be noted that in actual applications, the transceiver 304 is not limited to one, and the structure of the electronic device 300 does not constitute a limitation on the embodiments of the present application.
[0159] The processor 301 may be a CPU (Central Processing Unit), a general-purpose processor, a DSP (Digital Signal Processor), an ASIC (Application Specific Integrated Circuit), an FPGA (Field Programmable Gate Array), or other programmable logic devices, transistor logic devices, hardware components, or any combination thereof. It may implement or execute various exemplary logic blocks, modules, and circuits described in conjunction with the disclosure of the embodiments of the present application. The processor 301 may also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of a DSP and a microprocessor, and the like.
[0160] The bus 302 may include a path to transmit information between the above components. The bus 302 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus. The bus 302 may be divided into an address bus, a data bus, a control bus, etc. For ease of representation, Figure 3 Only one thick line is used in the diagram, but this does not mean that there is only one bus or only one type of bus.
[0161] The memory 303 may be a ROM (Read Only Memory) or other types of static storage devices that can store static information and instructions, a RAM (Random Access Memory) or other types of dynamic storage devices that can store information and instructions, or an EEPROM (Electrically Erasable Programmable Read Only Memory), a CD-ROM (Compact Disc Read Only Memory) or other optical disk storage, optical disk storage (including compressed optical disk, laser disk, optical disk, digital versatile disk, Blu-ray disk, etc.), a magnetic disk storage medium or other magnetic storage device, or any other medium that can be used to carry or store the desired program code in the form of instructions or data structures and can be accessed by a computer, but is not limited thereto.
[0162] The memory 303 is used to store application code for executing the solution of the embodiment of the present application, and the execution is controlled by the processor 301. The processor 301 is used to execute the application code stored in the memory 303 to implement the content shown in the above method embodiment.
[0163] Among them, electronic devices include but are not limited to: mobile terminals such as mobile phones, laptops, digital broadcast receivers, PDAs (personal digital assistants), PADs (tablet computers), PMPs (portable multimedia players), vehicle-mounted terminals (such as vehicle-mounted navigation terminals), etc., and fixed terminals such as digital TVs, desktop computers, etc. Figure 3 The electronic device shown is merely an example and should not bring any limitation to the functions and scope of use of the embodiments of the present application.
[0164] A computer-readable storage medium provided in an embodiment of the present application is introduced below. The computer-readable storage medium described below and the method described above can be referenced to each other.
[0165] An embodiment of the present application provides a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the steps of the above-mentioned combined optimization method for communication signals are implemented.
[0166] Since the embodiments of the computer-readable storage medium part and the embodiments of the method part correspond to each other, the embodiments of the computer-readable storage medium part refer to the description of the embodiments of the method part.
[0167] It should be understood that, although the steps in the flowchart of the accompanying drawings are displayed in sequence as indicated by the arrows, these steps are not necessarily executed in sequence in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order restriction on the execution of these steps, and they can be executed in other orders. Moreover, at least a part of the steps in the flowchart of the accompanying drawings may include multiple sub-steps or multiple stages, and these sub-steps or stages are not necessarily executed at the same time, but can be executed at different times, and their execution order is not necessarily sequential, but can be executed in turn or alternately with other steps or at least a part of the sub-steps or stages of other steps.
[0168] The above are only some implementation methods of the present application. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present application. These improvements and modifications should also be regarded as the scope of protection of the present application.
Claims
1. A combined optimization method for communication signals, characterized in that: include: Acquire abnormal communication data, where the abnormal communication data is signal request data that a terminal device in a preset area cannot realize a communication demand under a communication condition; Performing quantity detection on the abnormal communication data, and when the number of detected abnormal communication terminals exceeds a preset communication abnormality number, determining the abnormal communication location and abnormal communication demand of the terminal device according to the abnormal communication data, wherein the preset communication abnormality number is a number set based on the nature of regional buildings; Performing regional edge division on the abnormal communication location to obtain an abnormal communication area; Scanning communication base stations based on the abnormal communication area to obtain regional base station information; Determine the location of the communication base station and the communication capacity of the base station according to the regional base station information, and simulate combined communication for the abnormal communication demand, the location of the communication base station and the communication capacity of the base station to obtain multiple communication signal transmission schemes corresponding to each of the terminal devices; Optimizing and screening the multiple communication signal transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device; Signal transmission planning is performed for the abnormal communication demand based on the target signal transmission scheme, and communication demand data corresponding to the abnormal communication demand is received, and the communication demand data is sent to the terminal device.
2. A combined optimization method for communication signals according to claim 1, characterized in that: The step of dividing the abnormal communication location into regional edges to obtain the abnormal communication area includes: Determine the movement trajectory of the terminal device within a preset time period and the regional building properties of the area where the terminal device is located based on the abnormal communication location; Determining the abnormal factors causing the abnormal communication of the terminal device according to the building properties in the area; Determine whether the abnormal factor is caused by the communication abnormality of the regional building. If so, collect the coordinate position of the regional building and generate the abnormal communication area according to the coordinate position of the regional building; If the abnormal factor is not a communication abnormality caused by the building in the area, the moving trajectory routes corresponding to each terminal device are summarized, and edge critical points are selected for the summarized trajectory routes to obtain an edge critical point set; The edge critical point set is connected by lines according to adjacent points to obtain an abnormal communication area.
3. A combined optimization method for communication signals according to claim 1, characterized in that: The simulating combined communication of the abnormal communication demand, the location of the communication base station and the communication capacity of the base station to obtain a plurality of communication signal transmission schemes corresponding to each of the terminal devices includes: Calculate the edge distance between the position of the communication base station and the abnormal communication area, and divide the communication base station into regions according to the edge distance to obtain a first base station area, a second base station area, and a third base station area, wherein the first base station area is the base station area closest to the abnormal communication area, the second base station area is the base station area adjacent to the first base station area, and the third base station area is the base station area adjacent to the second base station area; Determine the unit communication capacity of each base station within the first base station area based on the base station communication capacity; Summarizing the unit communication capacity of each base station in the first base station area to obtain a first total communication capacity corresponding to the first base station area; Determine whether the first communication total capacity meets the abnormal communication demand. If so, allocate base stations to the abnormal communication demand according to the unit communication capacity and the edge distance between each base station in the first base station area and the abnormal communication area, and simulate communication for the abnormal communication demand according to the allocated base station communication plan to obtain a simulated communication result; The base station communication scheme is adjusted according to the simulation communication result to obtain multiple communication signal transmission schemes corresponding to each terminal device.
4. A combined optimization method for communication signals according to claim 3, characterized in that: The determining whether the first total communication capacity meets the abnormal communication requirement includes: If the first total communication capacity does not meet the abnormal communication demand, determining the unit communication capacity of each base station in the second base station area based on the base station communication capacity, and summarizing the unit communication capacity of each base station in the second base station area to obtain a second total communication capacity corresponding to the second base station area; Calculating the sum of the second communication total capacity and the first communication total capacity to obtain the dual-area communication total capacity; Determine whether the total communication capacity of the dual-area meets the abnormal communication demand, and if so, determine the first communication proportion value of the first base station area and the second base station area, and perform signal disassembly on the communication demand corresponding to each terminal device in the abnormal communication demand based on the first communication proportion value to obtain a first communication signal for transmission in the first base station area and a second communication signal for transmission in the second base station area; The first communication signal and the second communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
5. A combined optimization method for communication signals according to claim 4, characterized in that: The determining whether the dual-area communication total capacity meets the abnormal communication requirement includes: If the dual-area communication total capacity cannot meet the abnormal communication demand, determine the capacity difference between the dual-area communication total capacity and the required communication capacity that meets the abnormal communication demand, and obtain the difference communication capacity; Determine a first base station set adjacent to the second base station area in the third base station area, and detect whether the sum of the unit communication capacity of each base station in the first base station set meets the difference communication capacity according to the base station communication capacity; If satisfied, determine the second communication proportion values of the first base station set, the first base station area, and the second base station area, and perform signal decomposition of the communication demand corresponding to each terminal device in the abnormal communication demand based on the second communication proportion value to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, and a third communication signal corresponding to the first base station set; The first communication signal, the second communication signal and the third communication signal are allocated to base stations according to the edge distance to obtain multiple communication signal transmission schemes corresponding to each terminal device.
6. A combined optimization method for communication signals according to claim 5, characterized in that: The detecting whether the sum of the unit communication capacity of each base station in the first base station set satisfies the difference communication capacity includes: If the sum of the unit communication capacity of each base station in the first base station set does not satisfy the difference communication capacity, determining a second base station set adjacent to each base station in the first base station set in the third base station area; Calculating the sum of the unit communication capacity of each base station in the second base station set according to the base station communication capacity to obtain the set communication capacity; Determine whether the sum of the collective communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity. If not, cyclically execute the steps of determining the N+1th base station set adjacent to each base station in the Nth base station set in the third base station area, calculating the sum of the unit communication capacity of each base station in the N+1th base station set according to the base station communication capacity, and obtaining the collective communication capacity, until the sum of the collective communication capacity and the unit communication capacity of each base station in the first base station set meets the difference communication capacity, and N is greater than 2; If satisfied, determine the second communication proportion values of the first base station set, the second base station set, the first base station area, and the second base station area, and perform signal decomposition of the communication demand corresponding to each terminal device in the abnormal communication demand based on the second communication proportion value to obtain a first communication signal corresponding to the first base station area, a second communication signal corresponding to the second base station area, a third communication signal corresponding to the first base station set, and a fourth communication signal corresponding to the second base station set; The first communication signal, the second communication signal, the third communication signal and the fourth communication signal are allocated to base stations according to the edge distance, so as to obtain a plurality of communication signal transmission schemes corresponding to each terminal device.
7. A combined optimization method for communication signals according to claim 6, characterized in that: The optimizing and screening the multiple communication signal transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device includes: Respectively detecting the signal strength status corresponding to each communication signal transmission scheme to obtain the signal transmission strength corresponding to each communication signal transmission scheme; The multiple communication signal transmission schemes are comprehensively screened according to the signal transmission strength to obtain a target signal transmission scheme corresponding to each terminal device.
8. A combined optimization system for communication signals, characterized in that: include: A data acquisition module, used to acquire abnormal communication data, wherein the abnormal communication data is signal request data that a terminal device in a preset area cannot realize a communication demand under a communication condition; an abnormality detection module, used to detect the number of abnormal communication data, and when the number of abnormal communication terminals detected exceeds a preset communication abnormality number, determine the abnormal communication location and abnormal communication demand of the terminal device according to the abnormal communication data, wherein the preset communication abnormality number is a number set based on the nature of regional buildings; A region division module, used for dividing the abnormal communication location into regional edges to obtain an abnormal communication region; A base station scanning module, used to scan communication base stations based on the abnormal communication area to obtain regional base station information; A simulation communication module, used to determine the location of a communication base station and the communication capacity of the base station according to the regional base station information, and simulate combined communication for the abnormal communication demand, the location of the communication base station and the communication capacity of the base station to obtain multiple communication signal transmission schemes corresponding to each of the terminal devices; A scheme optimization module, used to optimize and screen the multiple communication signal transmission schemes to obtain a target signal transmission scheme corresponding to each terminal device; A data communication module is used to perform signal transmission planning for the abnormal communication demand based on the target signal transmission scheme, receive communication demand data corresponding to the abnormal communication demand, and send the communication demand data to the terminal device.
9. An electronic device, characterized in that: The electronic device includes: at least one processor; Memory; At least one application, wherein the at least one application is stored in a memory and configured to be executed by at least one processor, and the at least one application is configured to: execute a combined optimization method for communication signals according to any one of claims 1-7.
10. A computer-readable storage medium, characterized in that: include: A computer program is stored which can be loaded by a processor and execute a combined optimization method for communication signals as claimed in any one of claims 1 to 7.
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