Fault indication model homologous maintenance method based on system through of region I, region IV

By configuring the same-source maintenance kit to maintain fault indicators on the geographic map, the problem of fault indicator location deviation is solved, the accurate connection of fault indicators and data consistency are achieved, misjudgment during emergency repairs is avoided, and visual support applications are provided.

CN114819201BActive Publication Date: 2025-12-19STATE GRID ZHEJIANG ELECTRIC POWER CO LTD SHAOXING POWER SUPPLY CO
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Patent Information

Application Number
CN202210224402.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-03-09
Publication Date
2025-12-19
Estimated Expiration
2042-03-09

AI Technical Summary

Technical Problem

In existing technologies, the location of fault indicators displayed in the distribution network automation master station system deviates from the actual location on site, resulting in a large maintenance workload and an inability to guarantee data consistency, and failing to provide visual support applications.

Method used

By configuring the same-source maintenance kit, the fault indicator model can be maintained in the same source. The same-source maintenance kit is used to maintain and display the fault indicator equipment on the geographic map, and the poles with fault indicators installed are generated as key poles on the single-line map and pushed to the distribution network automation master station system of Zone I and IV to realize the automatic mapping and adjustment of fault indicators.

Benefits of technology

It improves the accuracy of fault indicator connection in single-line diagrams, avoids misjudgment of emergency repairs due to incorrect connection, realizes the same source maintenance of fault indicators, and ensures data consistency and visualization applications.

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Abstract

The application relates to a fault indicator model homologous maintenance method based on a system through I and IV areas, and solves the problems of the prior art.The technical scheme points of the application are as follows: step one: configuring homologous maintenance suite side detailed function points;step two: after secondary equipment installation and maintenance of the fault indicator are migrated to management in the homologous maintenance suite, the IV area master station needs to be synchronously matched according to the middle station graphics, measurement and information query function modules;step three: after the fault indicator is maintained in the geographic map by the homologous maintenance suite, line abnormality pushes single-line diagram graph module information containing fault indicator information to the I area master station, and the I area master station graph module is imported, graph display and fault analysis function modules are matched and reformed, and the graph module analysis containing the fault indicator information and the fault analysis application of the fault indicator are supported.
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Description

TECHNICAL FIELD

[0001] The application relates to a fault indicator model homologous maintenance method, in particular to a fault indicator model homologous maintenance method based on system interpenetration of I and IV areas. BACKGROUND

[0002] Fault indicators play a very important role in fault alarm and fault research of distribution network lines. At present, after the fault indicators are installed on site, the fault indicator maintenance and display need to be performed in the line single-line diagram of the distribution network automation master station system. However, since the single-line diagram only generates some key towers (such as branch connection towers, switch towers, first and last towers, etc.), most of the fault indicators are not installed on the key towers, and each unit can only bind the on-site fault indicators to the nearby key towers, so that the displayed fault indicator positions in the distribution network automation master station system are deviated from the actual positions on site.

[0003] After the fault indicators are installed on site, the PMS2.0 cannot provide the fault indicator model in the early stage, and the interpenetration mode of hanging in the IV area master station and pushing the full quantity account to the I area master station every day is adopted. The I area master station is manually connected, the maintenance workload of the basic team personnel is huge, and the data consistency cannot be guaranteed, and the visual support application cannot be provided for dispatching. SUMMARY

[0004] In view of the above technical scheme, the fault indicators are maintained in the IV area at present, are transmitted to the I area in the full quantity, and are manually connected in the I area, so that the problems of large workload, equipment loss and no place to connect exist. The model homologous problem of the fault indicator object of the I area system (OPEN5200) needs to be solved, and the application provides a fault indicator model homologous maintenance method based on system interpenetration of I and IV areas.

[0005] The technical scheme adopted by the application to solve the technical problem is as follows: a fault indicator model homologous maintenance method based on system interpenetration of I and IV areas,

[0006] Step one: configure the homologous maintenance kit side detailed function points;

[0007] Step two: after the fault indicator secondary equipment installation and maintenance are migrated to the management of the homologous maintenance kit, the IV area master station needs to be synchronized with the middle station graphics, measurement and information query function modules;

[0008] Step three: after the fault indicator is maintained in the geographic map by the homologous maintenance kit, the line change pushes the single-line diagram graph module information containing the fault indicator information to the I area master station, the I area master station graph module is imported, the graphic display and fault research function modules are cooperated and transformed, and the graphic module analysis containing the fault indicator information and the fault research application of the fault indicator are supported.

[0009] The application maintains and displays fault indicator secondary equipment in the distribution network homologous maintenance kit geographic map, and the fault indicator participates in the automatic mapping of the single-line diagram, the tower installed with the fault indicator equipment is generated as the key tower in the single-line diagram, and the single-line diagram is pushed into the I and IV area distribution network automation master station system, so that the fault indicator hanging accuracy of the single-line diagram is improved, and the situation of repair misjudgment caused by fault indicator hanging error is avoided.

[0010] As preferred, in the step one, the homologous maintenance kit side detailed function points are configured, the requirements of supporting the fault indicator homologous maintenance kit in the geographic map maintenance, installation, display, automatic mapping of the fault indicator and adjustment of the map and the information pushing of the single-line diagram model to the I and IV area distribution network automation master station system are met.

[0011] As preferred, in the step three, the fault indicator model and the account are created in the grid resource business platform, and the hanging in the single-line diagram is completed, the single-line diagram is pushed to the I and IV area master station through the single-line diagram transaction process, and the homologous maintenance of the fault indicator is realized.

[0012] As preferred, in the step one, the homologous maintenance kit side detailed function points are configured, including the fault indicator graphic maintenance and display, the account maintenance and viewing and maintenance, device installation and replacement, positioning, thematic map mapping and adjustment, inventory data engineering and personalized application in different situations.

[0013] As preferred, after the fault indicator secondary equipment installation and maintenance are migrated to the management of the homologous maintenance kit, the IV area master station needs to be cooperated according to the graphic, measurement and information query function modules, mainly including device installation module modification, device replacement module modification, device removal module modification, inventory device query interface, device hanging transaction interface, terminal debugging function modification and graphic interface modification contents.

[0014] As preferred, after the fault indicator is maintained in the geographic map by the homologous maintenance kit, the single-line diagram model information containing the fault indicator information is pushed to the I area master station by the line transaction, and the I area master station is correspondingly cooperated, mainly including the configuration of the model import module, the configuration of the graphic browsing module and the configuration of the fault indicator comprehensive judgment function.

[0015] The substantial effect of the application is that the application maintains and displays the fault indicator secondary equipment in the distribution network homologous maintenance kit geographic map, the fault indicator participates in the automatic mapping of the single-line diagram, the tower installed with the fault indicator equipment is generated as the key tower in the single-line diagram, and the single-line diagram is pushed into the I and IV area distribution network automation master station system, so that the fault indicator hanging accuracy of the single-line diagram is improved, and the situation of repair misjudgment caused by fault indicator hanging error is avoided. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is a kind of overall flow schematic diagram of the embodiment. DETAILED DESCRIPTION

[0017] The technical solutions of the present application are further specifically described below through specific examples.

[0018] Example 1:

[0019] A fault indicator model homologous maintenance method based on the system penetration of the I and IV areas (see attached Figure 1 ),

[0020] Step one: configure the homologous maintenance kit side detailed function points; in the step one, the homologous maintenance kit side detailed function points are configured to meet the requirements of supporting the fault indicator homologous maintenance kit in the geographic map maintenance, installation, display, automatic mapping of the fault indicator, and pushing the fault indicator single-line diagram model information to the I and IV area power distribution network automation master station system. In the step one, the homologous maintenance kit side detailed function points are configured, including fault indicator graphic maintenance and display, account maintenance viewing and maintenance, device installation and replacement, positioning, thematic mapping and mapping, inventory data engineering, and meeting the individualized application of different situations.

[0021] Step two: after the secondary equipment installation and maintenance of the fault indicator are migrated to the management of the homologous maintenance kit, the IV area master station needs to be synchronized and cooperated according to the middle station graphic, measurement, and information query function modules.

[0022] Step three: after the fault indicator is maintained in the geographic map by the homologous maintenance kit, the line abnormality will push the single-line diagram model information containing the fault indicator information to the I area master station, and the I area master station model import, graphic display, and fault research and judgment function modules are cooperated and transformed to support the analysis of the model containing the fault indicator information and the fault research and judgment application of the fault indicator. In step three, the fault indicator model and account are created in the power grid resource business middle station, and the hanging is completed in the single-line diagram, which is simultaneously pushed to the I and IV area master stations through the single-line diagram abnormality process, so as to realize the homologous maintenance of the fault indicator.

[0023] More specifically:

[0024] After the secondary equipment installation and maintenance of the fault indicator are migrated to the management of the homologous maintenance kit, the IV area master station needs to be cooperated and transformed according to the middle station graphic, measurement, and information query function modules, mainly including device installation module transformation, device replacement module transformation, device removal module transformation, inventory device query interface, device hanging abnormality interface, terminal debugging function transformation, and graphic interface transformation content.

[0025] After the fault indicator is maintained by the same-source maintenance kit in the geographic map, the line abnormality will push the single-line diagram model information containing the fault indicator information to the I-area master station, and the I-area master station will perform corresponding cooperation, mainly including diagram model import module configuration, diagram browsing module configuration, and fault indicator comprehensive research and judgment function configuration. The so-called configuration in this embodiment refers to selecting appropriate options from the original options or inputting reasonable numerical values within the specified parameter range or model selection range according to actual needs.

[0026] In summary, the creative points of the embodiment are:

[0027] In the power grid resource business station, a fault indicator model and an account are created, and are connected in a single-line diagram, and are pushed to the I-area and IV-area master stations through a single-line diagram abnormality process, so that the same-source maintenance of the fault indicator is realized, the diagram models of the I-area and IV-area are consistent, and the existing problems of the fault indicator are solved from the root.

[0028] (1) To support the maintenance, installation, and display of the fault indicator same-source maintenance kit in the geographic map, the automatic diagramming and adjustment of the fault indicator, and the pushing of the single-line diagram model information with the fault indicator to the I-area and IV-area power distribution automation master station systems and other series of applications, the side detailed function points of the same-source maintenance kit are designed, including fault indicator graphic maintenance and display, account maintenance and viewing, device installation and replacement, search and positioning, thematic diagramming and adjustment, stock data engineering, and personalized applications for different situations.

[0029] (2) After the installation and maintenance of the fault indicator secondary equipment are migrated to the management of the same-source maintenance kit, the IV-area master station needs to be configured according to the graphic, measurement, and information query function modules of the middle station, mainly including device installation module configuration, device replacement module configuration, device removal module configuration, inventory device query interface, device connection abnormality interface, terminal debugging function configuration, and graphic interface configuration.

[0030] (3) After the fault indicator is maintained by the same-source maintenance kit in the geographic map, the line abnormality will push the single-line diagram model information containing the fault indicator information to the I-area master station. To support the analysis of the diagram model containing the fault indicator and the fault research and judgment application of the fault indicator, the I-area master station needs to be configured, mainly including diagram model import module configuration, diagram browsing module configuration, and fault indicator comprehensive research and judgment function configuration.

[0031] In this embodiment, the fault indicator secondary equipment is maintained and displayed in the geographic map of the power distribution same-source maintenance kit, and the fault indicator participates in the automatic diagramming of the single-line diagram. The tower with the installed fault indicator device is generated as a key tower in the single-line diagram, and the single-line diagram is pushed to the I-area and IV-area power distribution automation master station systems, so as to improve the accuracy of the single-line diagram fault indicator connection and avoid the misjudgment of the repair caused by the fault indicator connection error.

[0032] The above-described embodiments are only the preferred ones of the present application, and do not limit the present application in any form, and other variants and modifications can be made without departing from the technical solutions recited in the claims.

Claims

1. A fault indicator model based on the same maintenance method of the I, IV area system through, characterized by: Step one: configure the detailed function points of the same maintenance kit side; Step two: after the secondary equipment installation and maintenance of the fault indicator are migrated to the management of the same maintenance kit, the IV area master station needs to be synchronized and cooperated according to the middle station graphics, measurement, and information query function modules; Step three: after the fault indicator is maintained in the geographic map by the same maintenance kit, the single-line diagram graph module information containing the fault indicator information will be pushed to the I area master station by the line anomaly, and the I area master station will be cooperated and transformed by the graph module import, graphic display, and fault research and judgment function modules, supporting the analysis of the graph module containing the fault indicator information and the fault research and judgment of the fault indicator; In the step one, the detailed function points of the same maintenance kit side are configured to meet the requirements of supporting the fault indicator same maintenance kit in the geographic map maintenance, installation, display, automatic mapping and mapping of the fault indicator, and pushing the single-line diagram graph module information containing the fault indicator to the I and IV area power distribution automation master station system; In step three, the fault indicator model and account are created in the power grid resource business middle station, and are connected in the single-line diagram, and are pushed to the I and IV area master stations through the single-line diagram anomaly process, realizing the same maintenance of the fault indicator.

2. The method according to claim 1, wherein the method is characterized by, In the step one, the detailed function points of the same maintenance kit side are configured, including fault indicator graphic maintenance and display, account maintenance and viewing and maintenance, device installation and replacement, finding and positioning, thematic mapping and mapping, inventory data engineering, and meeting the individualized application of different situations.

3. The method according to claim 2, wherein the method is characterized by, After the secondary equipment installation and maintenance of the fault indicator are migrated to the management of the same maintenance kit, the IV area master station needs to be cooperated and transformed according to the middle station graphics, measurement, and information query function modules, mainly including device installation module transformation, device replacement module transformation, device removal module transformation, inventory device query interface, device connection anomaly interface, terminal debugging function transformation, and graphic interface transformation content.

4. The method according to claim 2, wherein the method is characterized by, After the fault indicator is maintained in the geographic map by the same maintenance kit, the single-line diagram graph module information containing the fault indicator information will be pushed to the I area master station by the line anomaly, and the I area master station will be cooperated and transformed by the corresponding, mainly including graph module import module configuration, graphic browsing module configuration, and fault indicator comprehensive research and judgment function configuration.

Citation Information

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