A simulation processing method and system for power communication network
By dividing the power communication network into multiple communication areas and determining the construction target of the simulation model according to the equipment distribution and topology, the technical problems of simulation processing in the existing technology are solved and efficient simulation processing of the power communication network is achieved.
Patent Information
- Application Number
- CN202510094343.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-21
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2045-01-21
AI Technical Summary
The construction of simulation models for power communication networks is difficult, which leads to greater difficulty in simulation processing, and existing technologies are difficult to effectively solve this problem.
The power communication network is divided into multiple communication areas. The difficulty and requirements of building simulation models in each area are determined based on the distribution data of communication equipment and the power supply topology of power equipment. The construction goals of the simulation model are determined by associating the communication topology and power equipment, and the simulation processing order is determined based on the matching situation.
The screening and differentiation strategies for the difficulty of constructing simulation models for different communication areas are realized, which improves the efficiency and reliability of simulation processing and ensures the accuracy and matching of simulation results.
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Figure CN119865432B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of simulation software, and in particular relates to a simulation processing method and system for a power communication network. Background Art
[0002] With the rapid development of the Internet, the services and applications carried on the network are becoming increasingly diverse, and network management issues are becoming increasingly prominent. Network traffic prediction is a key issue, and it can solve various problems in network service management, engineering traffic, and congestion control. Therefore, how to establish an appropriate mathematical model to complete network traffic prediction is of great significance for preventing network congestion and effectively improving network utilization.
[0003] To achieve simulation analysis of communication networks, for example, CN202311254853.3, "A Digital Twin System and Operation Method Based on a Physical Information Model," breaks through the limitations of traditional single-device or isolated power grid simulations and establishes a simulation platform that integrates power grids, information networks, and control systems. This platform supports flexible grid construction, refined information process description, and system verification under complex cyber-physical interactions. However, the above technical solution has the following technical problems:
[0004] Since the power communication network of the power company is relatively large, if a full simulation model is constructed for all power communication networks, it will not only make the construction of the simulation model more difficult, but also make the simulation processing of the simulation model more difficult.
[0005] In response to the above technical problems, the present invention provides a simulation processing method and system for a power communication network. Summary of the Invention
[0006] To achieve the purpose of the present invention, the present invention adopts the following technical solutions:
[0007] In order to solve the above technical problems, the present invention provides the following technical solutions to achieve the purpose of the present invention:
[0008] According to one aspect of the present invention, a simulation processing method for a power communication network is provided.
[0009] A simulation processing method for a power communication network, specifically comprising:
[0010] S1 divides the power communication network into multiple communication areas, obtains distribution data of communication devices in different communication areas, and determines the difficulty of constructing simulation models for different communication areas based on the communication topology between different communication devices. If the difficulty of constructing the simulation model for the communication area does not meet the requirements, proceed to the next step;
[0011] S2 is based on the distribution data of the power equipment corresponding to the communication area, and combined with the nodes of the power supply topology corresponding to different power equipment, when it is determined that the construction requirements of the simulation model of the communication area meet the requirements, the next step is entered;
[0012] S3: determining the power equipment associated with the communication equipment based on the communication topology node where the communication equipment in the communication area is located, and determining the construction target of the simulation model in the communication equipment based on the equipment monitoring data of the associated power equipment;
[0013] S4 constructs the simulation model of the communication area based on the construction targets of the simulation model and the association of the communication topology between the construction targets, and determines the simulation processing order of the communication area based on the matching between the simulation model of the communication area and the communication network.
[0014] The beneficial effects of the present invention are:
[0015] 1. The distribution data of communication devices in different communication areas and the communication topology between different communication devices are used to determine the difficulty of constructing and processing simulation models for different communication areas, thereby realizing the determination of the difficulty of constructing and processing simulation models from two perspectives: the number of communication devices in different communication areas and the communication topology between communication devices. This further realizes the screening of communication areas with greater construction and processing difficulty, and also lays the foundation for further generating differentiated simulation model construction and processing strategies for different communication areas according to the differences in construction and processing difficulty.
[0016] 2. The simulation processing order of the communication area is determined based on the matching situation of the simulation model of the communication area and the communication network. This takes into account the difference in matching data between the simulation model of the communication area and the communication network, which leads to the difference in accuracy between the simulation results of the simulation model and the actual operation results of the communication area. It also takes into account the difference in the difficulty of simulation processing caused by the number of communication devices in the simulation model of the communication area. This realizes the determination of the simulation processing order of different communication areas from multiple angles, ensuring the efficiency and reliability of the simulation processing.
[0017] A further technical solution is to divide the power communication network into multiple communication areas, including:
[0018] Based on the preset power supply area, the power communication network is divided into multiple communication areas.
[0019] A further technical solution is that the distribution data of the communication devices in the communication area includes the number of communication devices in the communication area and the distribution positions of different communication devices in the communication topology.
[0020] A further technical solution is that the method for determining the difficulty of constructing the simulation model of the communication area is:
[0021] determining a communication network in the communication area based on a communication topology between different communication devices in the communication area;
[0022] The number of communication lines in the communication network is determined based on the communication network in the communication area, and the difficulty of constructing the simulation model of the communication area is determined based on the number of communication lines.
[0023] A further technical solution is that the difficulty of constructing the simulation model of the communication area is determined according to the ratio of the number of the communication lines to the number of preset lines.
[0024] A further technical solution is that the method for determining the simulation processing order of the communication area is:
[0025] Based on the matching situation between the simulation model of the communication area and the communication network, determining whether there is a matching communication network topology between the simulation model of the communication area and the communication network of the communication area, and determining a matching coefficient between the simulation model of the communication area and the communication area based on the proportion of the number of the communication network topologies;
[0026] Determining communication devices of the simulation model in the communication area based on an analysis result of the simulation model of the communication area, and determining a regional simulation processing difficulty of the communication area based on the number of the communication devices;
[0027] The simulation processing priority coefficient of the communication area is calculated based on the area construction difficulty and the area simulation processing difficulty, and the simulation processing order of the communication area is determined using the simulation processing priority coefficient.
[0028] A further technical solution is that the simulation processing order of the communication areas is determined from large to small according to the simulation processing priority coefficients of the communication areas.
[0029] In a second aspect, the present invention provides a computer system comprising: a memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes the above-mentioned simulation processing method for the power communication network.
[0030] Other features and advantages will be described in the following description, and in part will become apparent from the description, or understood by practicing the invention. The purpose and other advantages of the invention are realized and obtained by the structures particularly pointed out in the description and the drawings.
[0031] In order to make the above objectives, characteristics and advantages of the present application more apparent, more comprehensible, the following preferred embodiments are specifically described in detail below, together with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS
[0032] The above and other features and advantages of the present application will become more apparent by describing in detail exemplary embodiments thereof with reference to the attached drawings.
[0033] Figure 1 is a flowchart of a simulation processing method for a power communication network;
[0034] Figure 2 is a flowchart of a method of determining construction processing difficulty of a simulation model of a communication area;
[0035] Figure 3 is a flowchart of a method of determining construction target of a simulation model in a communication device. DETAILED DESCRIPTION
[0036] Example embodiments will now be described more fully with reference to the accompanying drawings. Example embodiments, however, can be implemented in many different forms and should not be construed as limited to the implementations set forth herein; rather, these implementations are provided so that this disclosure will be thorough and complete, and will fully convey the concept of example embodiments to those skilled in the art. Like reference numerals refer to like elements throughout the drawings, and thus a detailed description of them will not be repeated.
[0037] The terms "one", "a", "an", "the", and "said" are used to indicate the existence of one or more than one element / portion / etc.; the terms "include" and "have" are used to indicate an open-ended inclusion of the elements / portion / etc. listed in the specification, and mean that additional elements / portion / etc. can be present in addition to those listed.
[0038] To solve the above problems, according to one aspect of the present application, as shown in Figure 1 According to one aspect of the present application, a simulation processing method for a power communication network is provided, specifically comprising:
[0039] S1 divides the power communication network into a plurality of communication areas, acquires distribution data of communication devices in different communication areas, and determines construction processing difficulty of simulation models of different communication areas in combination with communication topologies between different communication devices, and when the construction processing difficulty of the simulation models of the communication areas does not meet the requirements, proceeds to the next step;
[0040] Further, the power communication network is divided into a plurality of communication areas, specifically comprising:
[0041] The power communication network is divided into a plurality of communication areas based on a preset power supply area.
[0042] Specifically, the distribution data of the communication devices in the communication area includes the number of the communication devices in the communication area and the distribution positions of different communication devices in the communication topology.
[0043] It should be noted that if Figure 2 As shown, the method for determining the difficulty of constructing the simulation model of the communication area is:
[0044] determining a communication network in the communication area based on a communication topology between different communication devices in the communication area;
[0045] The number of communication lines in the communication network is determined based on the communication network in the communication area, and the difficulty of constructing the simulation model of the communication area is determined based on the number of communication lines.
[0046] Furthermore, the difficulty of constructing the simulation model of the communication area is determined according to the ratio of the number of the communication lines to the number of preset lines.
[0047] It can be understood that the value range of the construction processing difficulty of the simulation model of the communication network is between 0 and 1, where when the construction processing difficulty of the simulation model of the communication network is greater than the preset difficulty threshold, it is determined that the construction processing difficulty of the simulation model of the communication network does not meet the requirements.
[0048] It should also be noted that the method for determining the difficulty of constructing the simulation model of the communication area is:
[0049] determining a communication network in the communication area based on a communication topology between different communication devices in the communication area;
[0050] determining, based on the communication network in the communication area, communication lines between different communication devices in the communication network, and selecting communication devices having a number of communication lines greater than a preset number of lines as screening communication devices;
[0051] The difficulty of constructing the simulation model of the communication area is determined based on the number of the screened communication devices.
[0052] Furthermore, when the difficulty of constructing the simulation model of the communication area meets the requirements, the construction of the simulation model of the communication area is performed according to the association of the communication devices in the communication area and the communication topology between different communication devices.
[0053] It should also be noted that the method for determining the difficulty of constructing the simulation model of the communication area is:
[0054] S21 determines a communication network in the communication area based on a communication topology between different communication devices in the communication area;
[0055] Optionally, the above step S21 includes steps S211-S213, specifically:
[0056] S211 determines a communication network in the communication area based on a communication topology between different communication devices in the communication area, and calculates the number of communication devices in the communication area based on the communication network. When the number of communication devices in the communication area is greater than a preset number of devices, it is determined that the difficulty of constructing the simulation model of the communication area does not meet the requirements. When the number of communication devices in the communication area is not greater than the preset number of devices, the process proceeds to step S212.
[0057] S212: When the number of communication devices in the communication area is within the preset device number range, proceed to step S22; when the number of communication devices in the communication area is not within the preset device number range, proceed to step S213;
[0058] S212 determines the communication network image of the communication network based on the analysis results of the communication network in the communication area, and determines the image complexity coefficient of the communication network based on the analysis results of the communication network image of the communication network. When the image complexity coefficient of the communication network does not meet the requirements, it is determined that the construction processing difficulty of the simulation model of the communication area does not meet the requirements. When the image complexity coefficient of the communication network does not meet the requirements, proceed to step S22.
[0059] S22: determining, based on the communication network in the communication area, communication lines between different communication devices in the communication network, and determining a difficulty coefficient for constructing a network topology for different communication devices based on the number of communication lines between the different communication devices;
[0060] Optionally, the above step S22 includes steps S221-S223, specifically:
[0061] S221 determines, based on the communication network in the communication area, communication lines between different communication devices in the communication network, and uses the number of communication lines to determine the selected communication devices. When the number of selected communication devices is greater than a preset number of selected devices, it is determined that the difficulty level of constructing the simulation model of the communication area does not meet the requirements. When the number of selected communication devices is not greater than the preset number of selected devices, the process proceeds to step S222.
[0062] S222 determines the network topology construction difficulty coefficients of different communication devices based on the number of communication lines between different communication devices. If there is a communication device whose network topology construction difficulty coefficient does not meet the requirement, the process proceeds to step S223. If there is no communication device whose network topology construction difficulty coefficient does not meet the requirement, the process proceeds to step S23.
[0063] S223: The communication devices whose network topology construction difficulty coefficient does not meet the requirement are regarded as complex communication devices. When the number of the complex communication devices does not meet the requirement, it is determined that the construction processing difficulty of the simulation model of the communication area does not meet the requirement. When the number of the complex communication devices meets the requirement, the process proceeds to step S224.
[0064] S224 determines the screening difficulty coefficient based on the number of complex communication devices and the network topology construction difficulty coefficients of different complex communication devices. When the screening difficulty coefficient does not meet the requirements, it is determined that the construction processing difficulty of the simulation model of the communication area does not meet the requirements. When the screening difficulty coefficient meets the requirements, proceed to step S23.
[0065] S23 determines the difficulty of constructing the simulation model of the communication area based on the network topology construction difficulty coefficients of different communication devices.
[0066] S2 is based on the distribution data of the power equipment corresponding to the communication area, and combined with the nodes of the power supply topology corresponding to different power equipment, when it is determined that the construction requirements of the simulation model of the communication area meet the requirements, the next step is entered;
[0067] Furthermore, determining whether the construction requirements of the simulation model of the communication area meet the requirements specifically includes:
[0068] Based on the nodes of the power supply topology corresponding to different power devices, determine the power supply areas affected by the failure of different power devices, and use the areas of the power supply areas to determine the weight coefficients of different power devices;
[0069] Determining the number of power devices in the communication area based on distribution data of power devices corresponding to the communication area;
[0070] The construction requirement coefficient of the simulation model of the communication area is determined by the number of the power devices and the weight coefficients of different power devices, and the construction requirement coefficient is used to determine whether the construction requirement of the simulation model of the communication area meets the requirements.
[0071] It can be understood that the weight coefficient of the power equipment is determined according to the product of the area of the power supply area and a preset coefficient.
[0072] It should be noted that the construction requirement coefficient of the simulation model of the communication area is determined according to the weight coefficients of different power equipment and a preset mapping function model.
[0073] It should also be noted that determining whether the construction requirements of the simulation model of the communication area meet the requirements specifically includes:
[0074] Determining the number of power devices in the communication area based on the distribution data of the power devices corresponding to the communication area, and determining that the construction requirements of the simulation model of the communication area do not meet the requirements when the number of power devices in the communication area is greater than a preset number of devices;
[0075] When the number of power devices in the communication area is not greater than the preset number of devices:
[0076] Based on the nodes of the power supply topology corresponding to different power devices, the power supply areas affected by the failure of different power devices are determined, and the weight coefficients of different power devices are determined using the areas of the power supply areas. The weight coefficients are used to determine the screened power devices among the power devices. When the number of the screened power devices is greater than the preset number of power devices, it is determined that the construction requirements of the simulation model of the communication area are not met.
[0077] When the number of the screened electrical devices is not greater than the preset number of electrical devices:
[0078] Determining a sum of weight coefficients of the power devices using weight coefficients of different power devices, and when the sum of the weight coefficients of the power devices is greater than a preset coefficient sum, determining that a construction requirement of the simulation model of the communication area does not meet the requirement;
[0079] When the sum of the weight coefficients of the power equipment is not greater than the preset coefficient sum:
[0080] Determining, based on equipment monitoring data of different power equipment, equipment monitoring demand coefficients of different power equipment, and when the number of power equipment having equipment monitoring demand coefficients greater than a preset monitoring demand coefficient threshold does not meet the requirement, determining that the construction requirement of the simulation model of the communication area does not meet the requirement;
[0081] When the number of power devices with device monitoring demand coefficients greater than the preset monitoring demand coefficient threshold meets the requirements:
[0082] Determining corrected weight coefficients of different power devices based on weight coefficients of different power devices and device monitoring requirement coefficients, and when the number of power devices having corrected weight coefficients greater than a preset correction coefficient threshold does not meet the requirement, determining that the construction requirement of the simulation model of the communication area does not meet the requirement;
[0083] When the number of power equipment with a correction weight coefficient greater than the preset correction coefficient threshold meets the requirement,
[0084] The construction requirement coefficient of the simulation model of the communication area is determined by the number of the power devices and the correction weight coefficients of different power devices, and the construction requirement coefficient is used to determine whether the construction requirement of the simulation model of the communication area meets the requirements.
[0085] S3: determining the power equipment associated with the communication equipment based on the communication topology node where the communication equipment in the communication area is located, and determining the construction target of the simulation model in the communication equipment based on the equipment monitoring data of the associated power equipment;
[0086] Furthermore, the power equipment associated with the communication equipment is determined based on the power equipment corresponding to the communication data of the communication equipment.
[0087] Specifically, such as Figure 3 As shown, the method for determining the construction target of the simulation model in the communication device is:
[0088] Determining the power equipment associated with the communication device based on the device monitoring data of the associated power equipment, and determining the power equipment association coefficient of the communication device according to the number of power equipment associated with the communication device;
[0089] Determining a communication device associated with the communication device based on a communication topology of the communication device, and determining a communication device association coefficient of the communication device based on the number of associated communication devices;
[0090] A comprehensive correlation coefficient of the communication device is determined by the communication device correlation coefficient and the power device correlation coefficient, and based on the comprehensive correlation coefficient, it is determined whether the communication device is a construction target of the simulation model.
[0091] Furthermore, the power equipment association coefficient of the communication device is determined according to a preset association coefficient corresponding to the number of power equipment associated with the communication device.
[0092] It can be understood that the communication device association coefficient of the communication device is determined according to a preset association coefficient corresponding to the number of communication devices associated with the communication device.
[0093] It should be noted that the comprehensive correlation coefficient is determined based on the average value of the communication equipment correlation coefficient and the power equipment correlation coefficient.
[0094] It should also be noted that the method for determining the construction target of the simulation model in the communication device is:
[0095] Determining the power equipment associated with the communication device based on the device monitoring data of the associated power equipment, and when the number of power equipment associated with the communication device is greater than a preset number of associated devices, determining that the communication device belongs to the construction target of the simulation model;
[0096] When the number of power devices associated with the communication device is not greater than the preset number of associated devices:
[0097] Determining communication devices associated with the communication device based on a communication topology of the communication device, and when the number of communication devices associated with the communication device is greater than a preset number of communication devices, determining that the communication device belongs to a construction target of a simulation model;
[0098] When the number of communication devices associated with the communication device is not greater than the preset number of communication devices:
[0099] The power equipment associated with the communication device is regarded as the associated power equipment, and according to the equipment monitoring data of different associated power equipment, the data dimension proportion of the equipment monitoring data of the communication device is determined for different associated power equipment, and the correlation coefficient of the different associated power equipment is calculated using the data dimension proportion;
[0100] When the number of associated power devices having the association coefficient greater than the preset association coefficient is greater than the preset number of associated devices: determining that the communication device belongs to the construction target of the simulation model;
[0101] When the number of associated power devices whose association coefficient is greater than the preset association coefficient is not greater than the preset number of associated devices:
[0102] Determining a power device association coefficient of the communication device according to the number of power devices associated with the communication device and association coefficients of different power devices; and determining that the communication device belongs to a construction target of a simulation model when the power device association coefficient of the communication device is greater than a preset association coefficient threshold;
[0103] When the power equipment correlation coefficient of the communication device is not greater than a preset correlation coefficient threshold:
[0104] The communication device association coefficient of the communication device is determined by the number of associated communication devices, the comprehensive association coefficient of the communication device is determined by the communication device association coefficient and the power equipment association coefficient, and based on the comprehensive association coefficient, it is determined whether the communication device is a construction target of the simulation model.
[0105] S4 constructs the simulation model of the communication area based on the construction targets of the simulation model and the association of the communication topology between the construction targets, and determines the simulation processing order of the communication area based on the matching between the simulation model of the communication area and the communication network.
[0106] Specifically, the method for determining the simulation processing order of the communication area is:
[0107] Based on the matching situation between the simulation model of the communication area and the communication network, determining whether there is a matching communication network topology between the simulation model of the communication area and the communication network of the communication area, and determining a matching coefficient between the simulation model of the communication area and the communication area based on the proportion of the number of the communication network topologies;
[0108] Determining communication devices of the simulation model in the communication area based on an analysis result of the simulation model of the communication area, and determining a regional simulation processing difficulty of the communication area based on the number of the communication devices;
[0109] The simulation processing priority coefficient of the communication area is calculated based on the area construction difficulty and the area simulation processing difficulty, and the simulation processing order of the communication area is determined using the simulation processing priority coefficient.
[0110] Furthermore, the simulation processing order of the communication areas is determined from large to small according to the simulation processing priority coefficients of the communication areas.
[0111] In a second aspect, the present invention provides a computer system comprising: a memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes the above-mentioned simulation processing method for the power communication network.
[0112] The various embodiments in this specification are described in a progressive manner. Similar portions between the various embodiments can be referenced to each other, and each embodiment focuses on the differences from the other embodiments. In particular, the device, apparatus, and non-volatile computer storage medium embodiments are generally similar to the method embodiments, so their descriptions are relatively simplified. For relevant details, refer to the descriptions of the method embodiments.
[0113] The foregoing description of this specification describes specific embodiments. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in an order different from that described in the embodiments and still achieve the desired results. Furthermore, the processes depicted in the accompanying drawings do not necessarily require the specific order shown or the sequential order to achieve the desired results. In certain embodiments, multitasking and parallel processing are also possible or may be advantageous.
[0114] The foregoing description is merely one or more embodiments of this specification and is not intended to limit this specification. It will be apparent to those skilled in the art that various modifications and variations may be made to one or more embodiments of this specification. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of one or more embodiments of this specification are intended to be within the scope of the claims of this specification.
Claims
1. A simulation processing method for a power communication network, characterized in that: Specifically include: Dividing the power communication network into multiple communication areas, obtaining distribution data of communication devices in different communication areas, and determining the difficulty of constructing simulation models for different communication areas based on the communication topology between different communication devices. If the difficulty of constructing the simulation models for the communication areas does not meet the requirements, proceeding to the next step; Based on the distribution data of the power equipment corresponding to the communication area, and in combination with the nodes of the power supply topology corresponding to different power equipment, when it is determined that the construction requirements of the simulation model of the communication area meet the requirements, proceed to the next step; Determining the power equipment associated with the communication equipment based on the communication topology node where the communication equipment in the communication area is located, and determining the construction target of the simulation model in the communication equipment based on the equipment monitoring data of the associated power equipment; Constructing the simulation model of the communication area based on the construction targets of the simulation model and the association of the communication topology between the construction targets, and determining the simulation processing order of the communication area based on the matching between the simulation model of the communication area and the communication network; The method for determining the difficulty of constructing the simulation model of the communication area is as follows: determining a communication network in the communication area based on a communication topology between different communication devices in the communication area; Determining the number of communication lines in the communication network according to the communication network in the communication area, and determining the difficulty of constructing a simulation model of the communication area based on the number of communication lines; The difficulty of constructing the simulation model of the communication network has a value range of 0 to 1, wherein when the difficulty of constructing the simulation model of the communication network is greater than a preset difficulty threshold, it is determined that the difficulty of constructing the simulation model of the communication network does not meet the requirement; Determining whether the construction requirements of the simulation model of the communication area meet the requirements specifically includes: Based on the nodes of the power supply topology corresponding to different power devices, determine the power supply areas affected by the failure of different power devices, and use the areas of the power supply areas to determine the weight coefficients of different power devices; Determining the number of power devices in the communication area based on distribution data of power devices corresponding to the communication area; The construction requirement coefficient of the simulation model of the communication area is determined by the number of the power devices and the weight coefficients of different power devices, and the construction requirement coefficient is used to determine whether the construction requirement of the simulation model of the communication area meets the requirements.
2. The simulation processing method for the electric power communication network according to claim 1, characterized in that: The power communication network is divided into multiple communication areas, including: Based on the preset power supply area, the power communication network is divided into multiple communication areas.
3. The simulation processing method for the electric power communication network according to claim 1, characterized in that: The distribution data of the communication devices in the communication area includes the number of the communication devices in the communication area and the distribution positions of different communication devices in the communication topology.
4. The simulation processing method for a power communication network according to claim 1, wherein: The weight coefficient of the power equipment is determined according to the product of the area of the power supply area and a preset coefficient.
5. The simulation processing method for the electric power communication network according to claim 4, characterized in that: The construction requirement coefficient of the simulation model of the communication area is determined according to the weight coefficients of different power equipment and a preset mapping function model.
6. The simulation processing method for a power communication network according to claim 1, wherein: The method for determining the construction target of the simulation model in the communication device is: Determining the power equipment associated with the communication device based on the device monitoring data of the associated power equipment, and determining the power equipment association coefficient of the communication device according to the number of power equipment associated with the communication device; Determining a communication device associated with the communication device based on a communication topology of the communication device, and determining a communication device association coefficient of the communication device based on the number of associated communication devices; A comprehensive correlation coefficient of the communication device is determined by the communication device correlation coefficient and the power device correlation coefficient, and based on the comprehensive correlation coefficient, it is determined whether the communication device is a construction target of the simulation model.
7. A computer system comprising: A memory and a processor in communication connection, and a computer program stored in the memory and capable of running on the processor, characterized in that when the processor runs the computer program, it executes a simulation processing method for a power communication network as described in any one of claims 1-6.
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