Power grid identifier management method and system based on Internet big data

Through the power grid identification management method based on Internet big data, virtual identifiers are generated and data embedded in the power grid equipment and transmission and distribution lines are solved, and the problem of excessively long data call time is achieved, orderly data management and safety risks are reduced.

CN120106356AInactive Publication Date: 2025-06-06FOSHAN JIATU CULTURE TECH CO LTD
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Patent Information

Application Number
CN202510160992.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2025-06-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The data of power equipment and transmission and distribution lines in the existing power grid are not reasonably managed, which leads to the need to filter out several groups of different transmission and distribution lines when it is necessary to call the data of a certain transmission and distribution line, resulting in the data call time being too long.

Method used

The power grid identification management method based on Internet big data is adopted, and the power grid distribution map is obtained and analyzed through intelligent management terminals, the substation location and transmission and distribution lines are determined, and a unique virtual identifier is generated. The relevant data of the transmission and distribution lines and the relevant data of the power grid equipment are embedded in the virtual identifier to realize orderly data management.

Benefits of technology

Through the use of virtual identifiers, data call time is shortened, data management efficiency is improved, and security risks are reduced through the installation of entity identifiers.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention discloses a power grid identification management method and system based on Internet big data, and relates to the technical field of power grid identification management, and the method comprises the steps: carrying out the analysis and processing of a power grid distribution diagram, and determining the position of a substation; and analyzing and processing the position of the substation, and determining a power transmission and distribution line and power grid equipment corresponding to the power transmission and distribution line. Different types of power transmission and distribution line data and different types of power grid equipment data are embedded into the virtual identifier, ordered management of the data is achieved, in addition, in order to avoid the situation that unrelated personnel touch by mistake, the different types of power transmission and distribution line data and the different types of power grid equipment data are analyzed, and the accuracy of the data is improved. According to the technical scheme, the physical identifier is manufactured and installed in the designated area, potential safety hazards are reduced, finally, when data of a certain power transmission and distribution line needs to be called, data of the power transmission and distribution line can be obtained only by conducting data reading on the virtual identifier of the certain power transmission and distribution line, and the data calling time is shortened.
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Description

Technical Field

[0001] The present invention relates to the technical field of power grid identification management, and in particular to a power grid identification management method and system based on Internet big data. Background Art

[0002] The whole of the power system consisting of substations and transmission and distribution lines of various voltages is called the power grid. It includes three units: substation, transmission, and distribution. The task of the power grid is to transmit and distribute electrical energy and change the voltage.

[0003] There are a variety of equipment and transmission and distribution lines in the power grid, and different power equipment and transmission and distribution lines may have different maintenance methods. However, the data of power equipment and transmission and distribution lines in the existing power grid are not managed reasonably. When the data of a certain transmission and distribution line needs to be called, it is necessary to screen from several groups of different transmission and distribution lines, resulting in a long data call time. Summary of the invention

[0004] In order to solve the above technical problems, a power grid identification management method and system based on Internet big data are provided. This technical solution solves the problem proposed in the above background technology that the data of power equipment and transmission and distribution lines in the existing power grid are not reasonably managed. When the data of a certain transmission and distribution line needs to be called, it is necessary to screen from several groups of different transmission and distribution lines, resulting in a long data calling time.

[0005] In order to achieve the above purpose, the technical solution adopted by the present invention is:

[0006] A power grid identification management method based on Internet big data, comprising:

[0007] Obtain the power grid distribution map, analyze and process the power grid distribution map based on the intelligent management terminal, and determine the substation location;

[0008] Based on the intelligent management terminal, the substation location is analyzed and processed to determine the transmission and distribution lines and the grid equipment corresponding to the transmission and distribution lines;

[0009] Based on the intelligent management terminal, the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines are analyzed and processed to determine the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment;

[0010] Based on the intelligent management terminal, the relevant data of the power transmission and distribution line and the relevant data of the power grid equipment are analyzed and processed to determine the composition method of the virtual identifier, wherein the virtual identifier includes the virtual identifier of the power transmission and distribution line and the virtual identifier of the power grid equipment;

[0011] The intelligent management terminal embeds the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment into the virtual identifier to obtain a unique virtual identifier;

[0012] Based on the intelligent management terminal, the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment are analyzed and processed to obtain the entity identifier;

[0013] Based on the intelligent management terminal, the power grid distribution map is analyzed and processed to determine the installation location of the entity identifier, and the staff installs the entity identifier according to the installation location of the entity identifier.

[0014] Preferably, the obtaining of the power grid distribution map, analyzing and processing the power grid distribution map based on the intelligent management terminal, and determining the substation location specifically comprises the following steps:

[0015] Based on the intelligent management terminal, data is read and processed from the data storage device to obtain the power grid distribution map and the replacement symbol of the power grid distribution map;

[0016] Based on the intelligent management terminal, the replacement symbols of the power grid distribution map are traversed and processed to determine the replacement symbols of the substation;

[0017] Based on the intelligent management terminal, the power grid distribution map is processed with the replacement symbol of the substation as the feature to determine the location of the substation.

[0018] Preferably, the analysis and processing of the substation location based on the intelligent management terminal to determine the power transmission and distribution lines and the power grid equipment corresponding to the power transmission and distribution lines specifically includes the following steps:

[0019] Based on the intelligent management terminal, the data storage device is read and processed based on the location of the substation, and the configuration information of the substation and the line trend diagram inside the substation are obtained;

[0020] Based on the intelligent management terminal, the configuration information of the substation is read and processed to determine the transmission and distribution lines;

[0021] Based on the intelligent management terminal, the line trend diagram inside the substation is analyzed and processed based on the transmission and distribution line as the feature, and the composition diagram of the transmission and distribution line inside the substation is determined;

[0022] Based on the intelligent management terminal, feature extraction and processing are performed on the structure diagram of the transmission and distribution line inside the substation to determine the power grid equipment corresponding to the transmission and distribution line.

[0023] Preferably, the analysis and processing of the power transmission and distribution lines and the power grid equipment corresponding to the power transmission and distribution lines based on the intelligent management terminal to determine the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment specifically includes the following steps:

[0024] Based on the intelligent management terminal, the configuration information of the substation is extracted and processed based on the transmission and distribution line as the feature, and the transmission and distribution line number is determined;

[0025] Based on the intelligent management terminal, the data storage device is processed for information extraction based on the transmission and distribution line number as a feature to obtain the relevant data of the transmission and distribution line and the relevant data of the power grid equipment.

[0026] Preferably, the method of analyzing and processing the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment based on the intelligent management terminal to determine the composition of the virtual identifier specifically includes the following steps:

[0027] Based on the intelligent management terminal, the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment are classified and processed to determine the types of relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment;

[0028] Based on the intelligent management terminal, the data types related to the transmission and distribution lines and the data types related to the power grid equipment are quantitatively analyzed and processed to determine the number of virtual identifiers to be generated;

[0029] The intelligent management terminal generates a corresponding number of virtual identifiers through a unified coding rule;

[0030] The intelligent management terminal marks the virtual identifier through the RFID tag.

[0031] Preferably, the intelligent management terminal embeds the relevant data of the power transmission and distribution line and the relevant data of the power grid equipment into the virtual identifier, and obtaining the unique virtual identifier specifically comprises the following steps:

[0032] Based on the intelligent management terminal, the data related to the transmission and distribution lines and the data related to the power grid equipment are classified and processed according to the types of data related to the transmission and distribution lines and the types of data related to the power grid equipment, and different types of transmission and distribution line data and different types of power grid equipment data are obtained;

[0033] Based on the intelligent management terminal, different types of transmission and distribution line data and different types of power grid equipment data are classified and processed based on the transmission and distribution line number as a feature, and different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number are obtained;

[0034] Based on the intelligent management terminal, different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number are embedded in the virtual identifier to obtain a unique virtual identifier.

[0035] Preferably, based on the intelligent management terminal, different types of power transmission and distribution line data and different types of power grid equipment data are classified based on the power transmission and distribution line number as a feature, and obtaining different types of power transmission and distribution line data with the same number and different types of power grid equipment data with the same number specifically includes the following steps:

[0036] Based on the intelligent management terminal, the transmission and distribution line numbers, different types of transmission and distribution line data, and different types of power grid equipment data are judged and processed;

[0037] If the number of the power transmission and distribution line is consistent with the numbers in the data of different types of power transmission and distribution lines and the data of different types of power grid equipment, the data of different types of power transmission and distribution lines with the same number and the data of different types of power grid equipment with the same number are output;

[0038] If the transmission and distribution line number is inconsistent with the numbers in different types of transmission and distribution line data and different types of power grid equipment data, replace other transmission and distribution line numbers and reclassify the data.

[0039] Preferably, the method of analyzing and processing the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment based on the intelligent management terminal to determine the entity identifier specifically comprises the following steps:

[0040] Based on the intelligent management terminal, feature extraction and processing are performed on different types of power transmission and distribution line data and different types of power grid equipment data with precautions and safety protection as features, to determine precaution information of power transmission and distribution lines, safety protection information of power transmission and distribution lines, precaution information of power grid equipment, and safety protection information of power grid equipment;

[0041] The intelligent management terminal generates entity identifiers based on the precautions information of the transmission and distribution lines, the safety protection information of the transmission and distribution lines, the precautions information of the power grid equipment and the safety protection information of the power grid equipment. The number of the entity identifiers is consistent with the sum of the precautions information of the transmission and distribution lines, the safety protection information of the transmission and distribution lines, the precautions information of the power grid equipment and the safety protection information of the power grid equipment.

[0042] Preferably, the intelligent management terminal is used to analyze and process the power grid distribution map to determine the installation location of the entity identifier, and the staff installs the entity identifier according to the installation location of the entity identifier, which specifically includes the following steps:

[0043] Based on the intelligent management terminal, position analysis and processing are performed on the power grid distribution map to determine the installation position of the first entity identifier;

[0044] Based on the intelligent management terminal, a position analysis process is performed on the configuration diagram of the power transmission and distribution line inside the substation to determine the installation position of the second entity identifier;

[0045] The staff installs the entity identifier at the first entity identifier installation position and the second entity identifier installation position.

[0046] Furthermore, a power grid identification management system based on Internet big data is proposed, which is used to implement the above-mentioned power grid identification management method based on Internet big data, including:

[0047] An intelligent management terminal, the intelligent management terminal is used to analyze the power grid distribution map, determine the substation location and the installation location of the first entity identifier, the intelligent management terminal is used to analyze the substation location, determine the transmission and distribution line and the power grid equipment corresponding to the transmission and distribution line, the intelligent management terminal is used to analyze the relevant data of the transmission and distribution line and the relevant data of the power grid equipment, generate a unique virtual identifier and a physical identifier, and the intelligent management terminal is used to perform position analysis processing on the composition diagram of the transmission and distribution line inside the substation to determine the installation location of the second physical identifier;

[0048] A data storage device, the data storage device is used to store a power grid distribution map, a replacement symbol of the power grid distribution map, configuration information of a substation, a line trend map inside the substation, and relevant data of a transmission and distribution line and relevant data of a power grid device;

[0049] The intelligent management terminal is internally integrated with:

[0050] An analysis and management module, which is used to control the location analysis, data analysis, generation of virtual identifiers, and determination of physical identifier installation locations among various modules, and is used to implement data transmission and information exchange among various modules;

[0051] A data reading module, the data reading module is used to read data from a data storage device;

[0052] A location determination module, wherein the location determination module performs feature extraction processing on the power grid distribution map using the replacement symbol of the substation as a feature to determine the location of the substation;

[0053] A line and equipment determination module, which analyzes and processes the configuration information of the substation and the line trend diagram inside the substation to determine the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines;

[0054] A data classification module, wherein the data classification module classifies the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment to determine the types of the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment;

[0055] A number matching module, which performs judgment and processing on the transmission and distribution line number, different types of transmission and distribution line data and different types of power grid equipment data, and determines different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number;

[0056] A virtual identifier generation module, wherein the virtual identifier generation module generates a virtual identifier according to a unified encoding rule;

[0057] The entity identifier installation position determination module performs position analysis on the power grid distribution diagram and the structure diagram of the power transmission and distribution lines inside the substation to determine the entity identifier installation position.

[0058] Compared with the prior art, the present invention provides a power grid identification management method and system based on Internet big data, which has the following beneficial effects:

[0059] The present invention firstly performs a location analysis on the power grid distribution map to determine the substation location, and then performs a type analysis on the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment in the substation location to determine different types of power transmission and distribution line data and different types of power grid equipment data, and then embeds different types of power transmission and distribution line data and different types of power grid equipment data into virtual identifiers, thereby achieving orderly management of data. In addition, in order to avoid accidental touch by non-related personnel, different types of power transmission and distribution line data and different types of power grid equipment data are analyzed, physical identifiers are made, and installed in designated areas, thereby reducing safety hazards. Finally, when it is necessary to call the data of a certain power transmission and distribution line, it is only necessary to read the data of the virtual identifier of the certain power transmission and distribution line to obtain the data of the power transmission and distribution line, thereby shortening the data calling time. BRIEF DESCRIPTION OF THE DRAWINGS

[0060] Figure 1 A flowchart of steps S100-S700 in a power grid identification management method based on Internet big data proposed by the present invention;

[0061] Figure 2 A flowchart of steps S101-S103 in a power grid identification management method based on Internet big data proposed by the present invention;

[0062] Figure 3 A flowchart of steps S201-S204 in a power grid identification management method based on Internet big data proposed by the present invention;

[0063] Figure 4 A flowchart of steps S301-S302 in a power grid identification management method based on Internet big data proposed by the present invention;

[0064] Figure 5 A flowchart of steps S401-S404 in a power grid identification management method based on Internet big data proposed by the present invention;

[0065] Figure 6 A flowchart of steps S501-S503 in a power grid identification management method based on Internet big data proposed by the present invention;

[0066] Figure 7 A flowchart of steps S5021-S5023 in a power grid identification management method based on Internet big data proposed by the present invention;

[0067] Figure 8 A flowchart of steps S601-S602 in a power grid identification management method based on Internet big data proposed by the present invention;

[0068] Fig. 9 A flowchart of steps S701-S703 in a power grid identification management method based on Internet big data proposed by the present invention;

[0069] Fig.10 This is a structural block diagram of a power grid identification management system based on Internet big data proposed by the present invention. DETAILED DESCRIPTION

[0070] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments described below are only examples, and those skilled in the art may think of other obvious variations.

[0071] Reference Figure 1 As shown, a power grid identification management method based on Internet big data includes:

[0072] S100, obtaining a power grid distribution map, analyzing and processing the power grid distribution map based on the intelligent management terminal, and determining the location of the substation;

[0073] S200, analyzing and processing the substation location based on the intelligent management terminal, and determining the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines;

[0074] S300, based on the intelligent management terminal, analyzing and processing the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines, and determining the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment;

[0075] S400, based on the intelligent management terminal, analyzing and processing the relevant data of the power transmission and distribution line and the relevant data of the power grid equipment, and determining the composition method of the virtual identifier, wherein the virtual identifier includes the virtual identifier of the power transmission and distribution line and the virtual identifier of the power grid equipment;

[0076] S500, the intelligent management terminal embeds the relevant data of the power transmission and distribution line and the relevant data of the power grid equipment into the virtual identifier to obtain a unique virtual identifier;

[0077] S600, based on the intelligent management terminal, analyzing and processing the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment to obtain an entity identifier;

[0078] S700, based on the intelligent management terminal, the power grid distribution map is analyzed and processed to determine the installation location of the entity identifier, and the staff installs the entity identifier according to the installation location of the entity identifier;

[0079] It is understandable to those skilled in the art that different transmission and distribution lines may transmit different electric energy, and therefore, the power grid equipment used may also be different. When the data of the transmission and distribution lines and the data of the power grid equipment are not managed, if the data of a certain transmission and distribution line needs to be called, it is necessary to screen from several groups of transmission and distribution line data, which prolongs the data calling time. Therefore, by embedding the data of the transmission and distribution lines and the data of the power grid equipment into a virtual identifier, when the data of a certain transmission and distribution line needs to be called, it is only necessary to read the data stored in the virtual identifier of the line to realize the calling of the data of the transmission and distribution line. In addition, since the transmission and distribution lines and the power grid equipment are used to transmit electric energy and have certain dangers, the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment are analyzed to determine the precautions and protective measures, and the physical identifier is made according to the precautions and protective measures to remind personnel to accidentally touch the transmission and distribution lines and the power grid equipment, thereby reducing the safety hazards to a certain extent.

[0080] Reference Figure 2 As shown, obtaining a power grid distribution map, analyzing and processing the power grid distribution map based on the intelligent management terminal, and determining the substation location specifically include the following steps:

[0081] S101, based on the intelligent management terminal, performing data reading and processing on the data storage device to obtain a power grid distribution map and a replacement symbol of the power grid distribution map;

[0082] S102, based on the intelligent management terminal, traverse the replacement symbols of the power grid distribution map to determine the replacement symbol of the substation;

[0083] S103, based on the intelligent management terminal, extracting features from the power grid distribution map using the replacement symbol of the substation as a feature to determine the location of the substation;

[0084] In this embodiment, in order to reflect the simplicity of the map, replacement symbols are used in the power grid distribution map to replace certain buildings or equipment. Therefore, in order to determine the location of the substation in the power grid distribution map, the location of the substation is determined by the replacement symbol of the power grid distribution map, and then the internal transmission and distribution lines and power grid equipment are retrieved according to the location of the substation. Because the transmission and distribution lines and power grid equipment of different substations may be different, the corresponding data will also be different. In order to improve the accuracy of the retrieved data, it is necessary to determine the location of the substation.

[0085] Reference Figure 3As shown, based on the intelligent management terminal, the substation location is analyzed and processed to determine the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines, which specifically includes the following steps:

[0086] S201, based on the intelligent management terminal, data is read and processed from the data storage device based on the location of the substation, and the configuration information of the substation and the line trend diagram inside the substation are obtained;

[0087] S202, based on the intelligent management terminal, read and process the configuration information of the substation to determine the transmission and distribution lines;

[0088] S203, based on the intelligent management terminal, the line trend diagram inside the substation is analyzed and processed based on the transmission and distribution line as a feature, and the composition diagram of the transmission and distribution line inside the substation is determined;

[0089] S204, based on the intelligent management terminal, feature extraction processing is performed on the composition diagram of the power transmission and distribution line inside the substation to determine the power grid equipment corresponding to the power transmission and distribution line;

[0090] In this embodiment, the route of the transmission and distribution line in the substation may be designed according to the building distribution of the substation, and a certain transmission and distribution line and its power grid equipment are connected together. Therefore, the internal structure of the transmission and distribution line in the substation is determined through the route diagram inside the substation, and then the power grid equipment used in conjunction with it is found. Because different transmission and distribution lines may use the same power grid equipment, but the data of the power grid equipment may be different. In order to improve the accuracy of data calling, it is necessary to determine the power grid equipment used in conjunction with each transmission and distribution line.

[0091] Reference Figure 4 As shown, based on the intelligent management terminal, the power transmission and distribution lines and the power grid equipment corresponding to the power transmission and distribution lines are analyzed and processed, and the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment are determined, which specifically includes the following steps:

[0092] S301, based on the intelligent management terminal, feature extraction processing is performed on the configuration information of the substation with the power transmission and distribution line as the feature, and the power transmission and distribution line number is determined;

[0093] S302, based on the intelligent management terminal, extracting information from the data storage device based on the power transmission and distribution line number as a feature, and obtaining relevant data of the power transmission and distribution line and relevant data of the power grid equipment;

[0094] In this embodiment, different transmission and distribution lines are distinguished by numbers. Therefore, the relevant data of the transmission and distribution lines and power grid equipment are read by numbers. When it is necessary to read the data of a certain section of the transmission and distribution line or the data of a certain power grid equipment, it is only necessary to read the data inside the corresponding virtual identifier to realize the data call, avoiding the call of the data of the entire transmission and distribution line, and indirectly shortening the data call time.

[0095] Reference Figure 5 As shown, based on the intelligent management terminal, the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment are analyzed and processed to determine the composition of the virtual identifier, which specifically includes the following steps:

[0096] S401, based on the intelligent management terminal, classify and process the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment, and determine the types of the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment;

[0097] S402: Based on the intelligent management terminal, quantitative analysis and processing are performed on the types of data related to the power transmission and distribution lines and the types of data related to the power grid equipment to determine the number of virtual identifiers to be generated;

[0098] S403, the intelligent management terminal generates a corresponding number of virtual identifiers according to a unified coding rule;

[0099] S404, the intelligent management terminal marks the virtual identifier through an RFID tag;

[0100] In this embodiment, the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment include the installation location, equipment model, maintenance record, precautions, protective measures, etc., and in order to improve the orderliness of the data, a corresponding virtual identifier is generated according to the type of data, and the virtual identifier is marked with an RFID tag to realize data calling. When it is necessary to call the data of a certain power grid equipment or a certain section of the power transmission and distribution line, it is only necessary to identify the RFID tag on its virtual identifier to complete the data calling, thereby realizing orderly data management of the power transmission and distribution lines and power grid equipment.

[0101] Reference Figure 6 As shown, the intelligent management terminal embeds the relevant data of the transmission and distribution line and the relevant data of the power grid equipment into the virtual identifier, and obtaining the unique virtual identifier specifically includes the following steps:

[0102] S501. Based on the intelligent management terminal, classify and process the data related to the power transmission and distribution lines and the data related to the power grid equipment according to the types of the data related to the power transmission and distribution lines and the types of the data related to the power grid equipment, and obtain different types of data of the power transmission and distribution lines and different types of data of the power grid equipment;

[0103] S502, based on the intelligent management terminal, classify different types of power transmission and distribution line data and different types of power grid equipment data based on the power transmission and distribution line number as a feature, and obtain different types of power transmission and distribution line data with the same number and different types of power grid equipment data with the same number;

[0104] S503: Based on the intelligent management terminal, different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number are embedded into the virtual identifier to obtain a unique virtual identifier.

[0105] Reference Figure 7 As shown, based on the intelligent management terminal, different types of transmission and distribution line data and different types of power grid equipment data are classified and processed based on the transmission and distribution line number as a feature, and different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number are obtained, which specifically includes the following steps:

[0106] S5021. Based on the intelligent management terminal, determine and process the transmission and distribution line number, different types of transmission and distribution line data, and different types of power grid equipment data;

[0107] S5022. If the number of the power transmission and distribution line is consistent with the numbers in the data of different types of power transmission and distribution lines and the data of different types of power grid equipment, output the data of different types of power transmission and distribution lines with the same number and the data of different types of power grid equipment with the same number;

[0108] S5023. If the transmission and distribution line number is inconsistent with the numbers in different types of transmission and distribution line data and different types of power grid equipment data, replace other transmission and distribution line numbers and reclassify the data;

[0109] In this embodiment, when power transmission and distribution line data and power grid equipment data with different numbers are combined, data confusion will occur. When the data is subsequently called for analysis, erroneous analysis results will appear. In order to avoid the above situation, the numbers in different types of power transmission and distribution line data and different types of power grid equipment data are matched by the power transmission and distribution line numbers, thereby ensuring that when the data is subsequently called, it is the data of the transmission and distribution line or power grid equipment with that number, thereby improving the accuracy of data calling.

[0110] Reference Figure 8 As shown, based on the intelligent management terminal, the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment are analyzed and processed, and the entity identifier is determined, which specifically includes the following steps:

[0111] S601. Based on the intelligent management terminal, feature extraction and processing are performed on different types of power transmission and distribution line data and different types of power grid equipment data based on precautions and safety protection, and the precaution information of the power transmission and distribution lines, the safety protection information of the power transmission and distribution lines, the precaution information of the power grid equipment, and the safety protection information of the power grid equipment are determined;

[0112] S602. The intelligent management terminal generates entity identifiers based on the precautions information of the transmission and distribution lines, the safety protection information of the transmission and distribution lines, the precautions information of the power grid equipment and the safety protection information of the power grid equipment. The number of the entity identifiers is consistent with the sum of the precautions information of the transmission and distribution lines, the safety protection information of the transmission and distribution lines, the precautions information of the power grid equipment and the safety protection information of the power grid equipment.

[0113] Reference Fig. 9 As shown, based on the intelligent management terminal, the power grid distribution map is analyzed and processed to determine the installation location of the entity identifier. The staff installs the entity identifier according to the installation location of the entity identifier, which specifically includes the following steps:

[0114] S701, based on the intelligent management terminal, performing location analysis and processing on the power grid distribution map to determine the installation location of the first entity identifier;

[0115] S702: Based on the intelligent management terminal, perform position analysis on the configuration diagram of the power transmission and distribution line inside the substation to determine the installation position of the second entity identifier;

[0116] S703: The staff installs the entity identifier at the first entity identifier installation position and the second entity identifier installation position;

[0117] In this embodiment, in order to reduce safety hazards, physical identifiers are installed on the transmission and distribution lines that pass through densely populated areas in the power grid distribution map to prevent people from accidentally touching the transmission and distribution lines and posing a threat to their lives. In addition, there are staff inside the substation, and a variety of power grid equipment will be installed inside the substation. In order to prevent staff from accidentally touching the power grid equipment, the structure diagram of the transmission and distribution lines inside the substation is analyzed to determine the installation location of the power grid equipment, and physical identifiers are installed in obvious areas of the power grid equipment to prevent staff from accidentally touching the power grid equipment.

[0118] Reference Fig.10 As shown, a power grid identification management system based on Internet big data is used to implement the above-mentioned power grid identification management method based on Internet big data, including:

[0119] An intelligent management terminal, the intelligent management terminal is used to analyze the power grid distribution map, determine the substation location and the installation location of the first entity identifier, the intelligent management terminal is used to analyze the substation location, determine the transmission and distribution line and the power grid equipment corresponding to the transmission and distribution line, the intelligent management terminal is used to analyze the relevant data of the transmission and distribution line and the relevant data of the power grid equipment, generate a unique virtual identifier and a physical identifier, and the intelligent management terminal is used to perform position analysis processing on the composition diagram of the transmission and distribution line inside the substation to determine the installation location of the second physical identifier;

[0120] A data storage device, the data storage device is used to store a power grid distribution map, a replacement symbol of the power grid distribution map, configuration information of a substation, a line trend map inside the substation, and relevant data of a transmission and distribution line and relevant data of a power grid device;

[0121] The intelligent management terminal is internally integrated with:

[0122] An analysis and management module, which is used to control the location analysis, data analysis, generation of virtual identifiers, and determination of physical identifier installation locations among various modules, and is used to implement data transmission and information exchange among various modules;

[0123] A data reading module, the data reading module is used to read data from a data storage device;

[0124] A location determination module, wherein the location determination module performs feature extraction processing on the power grid distribution map using the replacement symbol of the substation as a feature to determine the location of the substation;

[0125] A line and equipment determination module, which analyzes and processes the configuration information of the substation and the line trend diagram inside the substation to determine the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines;

[0126] A data classification module, wherein the data classification module classifies the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment to determine the types of the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment;

[0127] A number matching module, which performs judgment and processing on the transmission and distribution line number, different types of transmission and distribution line data and different types of power grid equipment data, and determines different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number;

[0128] A virtual identifier generation module, wherein the virtual identifier generation module generates a virtual identifier according to a unified encoding rule;

[0129] The entity identifier installation position determination module performs position analysis on the power grid distribution diagram and the structure diagram of the power transmission and distribution lines inside the substation to determine the entity identifier installation position.

[0130] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions only describe the principles of the present invention. The present invention may be subject to various changes and improvements without departing from the spirit and scope of the present invention. These changes and improvements fall within the scope of the present invention. The scope of protection claimed by the present invention is defined by the attached claims and their equivalents.

Claims

1. A power grid identification management method based on Internet big data, characterized in that: include: Obtain the power grid distribution map, analyze and process the power grid distribution map based on the intelligent management terminal, and determine the substation location; Based on the intelligent management terminal, the substation location is analyzed and processed to determine the transmission and distribution lines and the grid equipment corresponding to the transmission and distribution lines; Based on the intelligent management terminal, the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines are analyzed and processed to determine the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment; Based on the intelligent management terminal, the relevant data of the power transmission and distribution line and the relevant data of the power grid equipment are analyzed and processed to determine the composition method of the virtual identifier, wherein the virtual identifier includes the virtual identifier of the power transmission and distribution line and the virtual identifier of the power grid equipment; The intelligent management terminal embeds the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment into the virtual identifier to obtain a unique virtual identifier; Based on the intelligent management terminal, the relevant data of the transmission and distribution lines and the relevant data of the power grid equipment are analyzed and processed to obtain the entity identifier; Based on the intelligent management terminal, the power grid distribution map is analyzed and processed to determine the installation location of the entity identifier, and the staff installs the entity identifier according to the installation location of the entity identifier.

2. According to a method for managing power grid identification based on Internet big data according to claim 1, it is characterized in that: The obtaining of the power grid distribution map, analyzing and processing the power grid distribution map based on the intelligent management terminal, and determining the substation location specifically include the following steps: Based on the intelligent management terminal, data is read and processed from the data storage device to obtain the power grid distribution map and the replacement symbol of the power grid distribution map; Based on the intelligent management terminal, the replacement symbols of the power grid distribution map are traversed and processed to determine the replacement symbols of the substation; Based on the intelligent management terminal, the power grid distribution map is processed with the replacement symbol of the substation as the feature to determine the location of the substation.

3. The power grid identification management method based on Internet big data according to claim 1 is characterized in that: The analysis and processing of the substation location based on the intelligent management terminal to determine the power transmission and distribution lines and the power grid equipment corresponding to the power transmission and distribution lines specifically includes the following steps: Based on the intelligent management terminal, the data storage device is read and processed based on the location of the substation, and the configuration information of the substation and the line trend diagram inside the substation are obtained; Based on the intelligent management terminal, the configuration information of the substation is read and processed to determine the transmission and distribution lines; Based on the intelligent management terminal, the line trend diagram inside the substation is analyzed and processed based on the transmission and distribution line as the feature, and the composition diagram of the transmission and distribution line inside the substation is determined; Based on the intelligent management terminal, feature extraction and processing are performed on the structure diagram of the transmission and distribution line inside the substation to determine the power grid equipment corresponding to the transmission and distribution line.

4. The power grid identification management method based on Internet big data according to claim 1 is characterized in that: The method of analyzing and processing the power transmission and distribution lines and the power grid equipment corresponding to the power transmission and distribution lines based on the intelligent management terminal to determine the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment specifically includes the following steps: Based on the intelligent management terminal, the configuration information of the substation is extracted and processed based on the transmission and distribution line as the feature, and the transmission and distribution line number is determined; Based on the intelligent management terminal, the data storage device is processed for information extraction based on the transmission and distribution line number as a feature to obtain the relevant data of the transmission and distribution line and the relevant data of the power grid equipment.

5. The power grid identification management method based on Internet big data according to claim 1 is characterized in that: The method of analyzing and processing the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment based on the intelligent management terminal to determine the composition of the virtual identifier specifically includes the following steps: Based on the intelligent management terminal, the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment are classified and processed to determine the types of relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment; Based on the intelligent management terminal, the data types related to the transmission and distribution lines and the data types related to the power grid equipment are quantitatively analyzed and processed to determine the number of virtual identifiers to be generated; The intelligent management terminal generates a corresponding number of virtual identifiers through a unified coding rule; The intelligent management terminal marks the virtual identifier through the RFID tag.

6. A power grid identification management method based on Internet big data according to claim 1, characterized in that: The intelligent management terminal embeds the relevant data of the power transmission and distribution line and the relevant data of the power grid equipment into the virtual identifier, and obtaining the unique virtual identifier specifically includes the following steps: Based on the intelligent management terminal, the data related to the power transmission and distribution lines and the data related to the power grid equipment are classified and processed based on the types of data related to the power transmission and distribution lines and the types of data related to the power grid equipment, and different types of data on the power transmission and distribution lines and different types of data on the power grid equipment are obtained; Based on the intelligent management terminal, different types of transmission and distribution line data and different types of power grid equipment data are classified and processed based on the transmission and distribution line number as a feature, and different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number are obtained; Based on the intelligent management terminal, different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number are embedded in the virtual identifier to obtain a unique virtual identifier.

7. A power grid identification management method based on Internet big data according to claim 1, characterized in that: The method of classifying different types of power transmission and distribution line data and different types of power grid equipment data based on the power transmission and distribution line number as a feature based on the intelligent management terminal, and obtaining different types of power transmission and distribution line data and different types of power grid equipment data with the same number specifically includes the following steps: Based on the intelligent management terminal, the transmission and distribution line numbers, different types of transmission and distribution line data, and different types of power grid equipment data are judged and processed; If the number of the power transmission and distribution line is consistent with the numbers in the data of different types of power transmission and distribution lines and the data of different types of power grid equipment, the data of different types of power transmission and distribution lines with the same number and the data of different types of power grid equipment with the same number are output; If the transmission and distribution line number is inconsistent with the numbers in different types of transmission and distribution line data and different types of power grid equipment data, replace other transmission and distribution line numbers and reclassify the data.

8. The method for managing power grid identification based on Internet big data according to claim 7 is characterized in that: The method of analyzing and processing the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment based on the intelligent management terminal to determine the entity identifier specifically includes the following steps: Based on the intelligent management terminal, feature extraction and processing are performed on different types of power transmission and distribution line data and different types of power grid equipment data with precautions and safety protection as features, to determine precaution information of power transmission and distribution lines, safety protection information of power transmission and distribution lines, precaution information of power grid equipment, and safety protection information of power grid equipment; The intelligent management terminal generates entity identifiers based on the precautions information of the transmission and distribution lines, the safety protection information of the transmission and distribution lines, the precautions information of the power grid equipment and the safety protection information of the power grid equipment. The number of the entity identifiers is consistent with the sum of the precautions information of the transmission and distribution lines, the safety protection information of the transmission and distribution lines, the precautions information of the power grid equipment and the safety protection information of the power grid equipment.

9. A power grid identification management method based on Internet big data according to claim 1, characterized in that: The intelligent management terminal is used to analyze and process the power grid distribution map, determine the installation location of the entity identifier, and the staff installs the entity identifier according to the installation location of the entity identifier, which specifically includes the following steps: Based on the intelligent management terminal, position analysis and processing are performed on the power grid distribution map to determine the installation position of the first entity identifier; Based on the intelligent management terminal, a position analysis process is performed on the configuration diagram of the power transmission and distribution line inside the substation to determine the installation position of the second entity identifier; The staff installs the entity identifier at the first entity identifier installation position and the second entity identifier installation position.

10. A power grid identification management system based on Internet big data, used to implement a power grid identification management method based on Internet big data as described in any one of claims 1 to 9, characterized in that: include: An intelligent management terminal, the intelligent management terminal is used to analyze the power grid distribution map, determine the substation location and the installation location of the first entity identifier, the intelligent management terminal is used to analyze the substation location, determine the transmission and distribution line and the power grid equipment corresponding to the transmission and distribution line, the intelligent management terminal is used to analyze the relevant data of the transmission and distribution line and the relevant data of the power grid equipment, generate a unique virtual identifier and a physical identifier, and the intelligent management terminal is used to perform position analysis processing on the composition diagram of the transmission and distribution line inside the substation to determine the installation location of the second physical identifier; A data storage device, the data storage device is used to store a power grid distribution map, a replacement symbol of the power grid distribution map, configuration information of a substation, a line trend map inside the substation, and relevant data of a transmission and distribution line and relevant data of a power grid device; The intelligent management terminal is internally integrated with: An analysis and management module, which is used to control the location analysis, data analysis, generation of virtual identifiers, and determination of physical identifier installation locations among various modules, and is used to implement data transmission and information exchange among various modules; A data reading module, the data reading module is used to read data from a data storage device; A location determination module, wherein the location determination module performs feature extraction processing on the power grid distribution map using the replacement symbol of the substation as a feature to determine the location of the substation; A line and equipment determination module, which analyzes and processes the configuration information of the substation and the line trend diagram inside the substation to determine the transmission and distribution lines and the power grid equipment corresponding to the transmission and distribution lines; A data classification module, wherein the data classification module classifies the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment to determine the types of the relevant data of the power transmission and distribution lines and the relevant data of the power grid equipment; A number matching module, which performs judgment and processing on the transmission and distribution line number, different types of transmission and distribution line data and different types of power grid equipment data, and determines different types of transmission and distribution line data with the same number and different types of power grid equipment data with the same number; A virtual identifier generation module, wherein the virtual identifier generation module generates a virtual identifier according to a unified encoding rule; The entity identifier installation position determination module performs position analysis on the power grid distribution diagram and the structure diagram of the power transmission and distribution lines inside the substation to determine the entity identifier installation position.