A distribution network single-line diagram model checking comprehensive display method and tool

By providing a comprehensive method and tools for verifying and displaying single-line diagram models of distribution networks, the problem of the inability to intuitively display verification results in existing technologies has been solved, and efficient and accurate single-line diagram repair has been achieved.

CN114036698BActive Publication Date: 2025-11-28GUIZHOU POWER GRID CO LTD
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Patent Information

Application Number
CN202111143437.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-28
Publication Date
2025-11-28
Estimated Expiration
2041-09-28

AI Technical Summary

Technical Problem

The lack of visualization tools in the current technology to intuitively display the verification results of the single-line diagram model of the distribution network leads to the need to consume a lot of manpower to analyze and troubleshoot problems, and makes it impossible to efficiently repair the single-line diagram.

Method used

This paper provides a comprehensive method and tool for verifying single-line diagram models of distribution networks. It displays the verification results of the diagram model in a visual manner and supports reverse positioning to specific objects in the single-line diagram, including semantic verification, data integrity verification, diagram model consistency verification and topology connectivity verification. Repair is performed using a tree list and interactive methods.

Benefits of technology

It enables efficient and accurate single-line diagram repair of problems, reducing manpower consumption and improving repair efficiency.

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Abstract

The application discloses a kind of distribution network single-line diagram model checking comprehensive display method and tool, the method includes: step S1: opening single-line diagram and carrying out display in visual way;Step S2: show diagram module checking result, according to the checking result list fed back by diagram module checking background service, according to semantic checking, data integrity checking, diagram module consistency checking, topological connectivity checking, non-examination equipment list classification display;Step S3: checking result auxiliary data repair.The application provides a kind of visual method and tool to intuitively show diagram module checking result, can be positioned to the specific object in single-line diagram by result reverse, to avoid consuming a lot of manpower according to problem list to analyze and investigate problem, realizes the efficient and accurate problem single-line diagram repair.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of distribution network single-line diagram processing, in particular to a distribution network single-line diagram model checking comprehensive display method and device. BACKGROUND

[0002] At present, in the process of generating single-line diagram model files by GIS and applying in the southern power grid, a plurality of model checking rules have been formulated for diagnosing model quality according to corresponding technical specifications, and a problem list is output in the form of excel to assist in repairing the existing distribution network single-line diagram.

[0003] However, there is no visual tool to intuitively display the model checking results at the present stage, and the specific objects in the single-line diagram cannot be located reversely through the results, a large amount of manpower is needed to analyze and troubleshoot problems according to the problem list, and there is a lack of efficient single-line diagram repair tool. SUMMARY

[0004] Therefore, one of the purposes of the present application is to provide a distribution network single-line diagram model checking comprehensive display method, which can solve the problems in the background art.

[0005] One of the purposes of the present application is achieved by the following technical solutions:

[0006] A distribution network single-line diagram model checking comprehensive display method comprises

[0007] Step S1: opening the single-line diagram and displaying the region in a visual manner;

[0008] Step S2: displaying the model checking results, according to the checking result list fed back by the model checking background service, the results are classified and displayed according to semantic checking, data integrity checking, model consistency checking, topological connectivity checking and non-examination equipment list;

[0009] Step S3: checking result auxiliary data repair: according to the model checking results, the objects in the single-line diagram are reversely located and displayed by clicking the result list, the problem single-line diagram is repaired, and the model checking result display is restarted after the repair is completed.

[0010] The second purpose of the present application is to provide a distribution network single-line diagram model checking comprehensive display tool, which comprises a single-line diagram list module, a single-line diagram display module and a model checking result module, the model checking result module comprises five sub-modules of semantic checking, data integrity checking, model consistency checking, topological connectivity checking and non-examination equipment list, and the non-examination equipment list sub-module is used for selecting and adding the non-examination equipment list from the checking results of the four checking sub-modules of semantic checking, data integrity checking, model consistency checking and topological connectivity checking.

[0011] Further, the single-line diagram list module displays all the power distribution single-line diagrams in a tree list, and provides single-line diagram opening and viewing functions through interaction.

[0012] Further, the single-line diagram display module is used for displaying a single-line diagram full view and providing a function of viewing device attribute parameters in the diagram through interaction.

[0013] Further, when the diagram model verification result module performs diagram model verification, the diagram model data with errors is classified, and the diagram model verification result object data is displayed in a tree form, the tree node device object supports single-line diagram positioning, supports fuzzy query according to a device name, supports query according to a device DevID, and supports adding a problem device to a non-assessment device list.

[0014] Further, in the tree node object of each verification category, different colors are used to identify problem data of an error level and problem data of a warning level.

[0015] Further, the semantic verification submodule is used for displaying an object list of repeated RdfIDs in a current single-line diagram according to a power distribution single-line diagram model verification result.

[0016] Further, the data integrity verification submodule is used for classifying and displaying an object list related to missing and error in a current single-line diagram according to a power distribution single-line diagram model verification result.

[0017] Further, the diagram model consistency verification submodule is used for classifying and displaying an object list of a model without a diagram and a diagram without a model in a current single-line diagram according to a power distribution single-line diagram model verification result.

[0018] Further, the topology connectivity verification submodule is used for classifying and displaying an object list of a main topology island, a secondary topology island, an isolated device, an isolated non-operating device, an isolated automation terminal and an isolated user generator in a current single-line diagram according to a power distribution single-line diagram model verification result.

[0019] The present application has the following beneficial effects:

[0020] The present application provides a visual tool for intuitively displaying diagram model verification results, and can reversely locate specific objects in a single-line diagram through the results, so as to avoid consuming a large amount of manpower for analyzing and troubleshooting problems according to a problem list, and realizes efficient and accurate single-line diagram repair.

[0021] Other advantages, objects and features of the present application will be clarified to some extent in the following description, and will be apparent to those skilled in the art to some extent based on the following description, or can be taught from the practice of the present application. The objects and other advantages of the present application can be achieved and obtained by the following description and the preceding claims. BRIEF DESCRIPTION OF DRAWINGS

[0022] In order to make the objects, technical solutions and advantages of the present application clearer, the following will further describe the present application in detail with reference to the accompanying drawings, in which:

[0023] Figure 1 A schematic diagram of the method of the present application is shown in the figure.

[0024] Figure 2 A schematic diagram of the tool architecture of the present application is shown in the figure. DETAILED DESCRIPTION

[0025] The preferred embodiments of the present application will be described in detail below with reference to the accompanying drawings. It should be understood that the preferred embodiments are only for illustrating the present application, and are not intended to limit the protection scope of the present application.

[0026] As shown in the figure, the present application provides a comprehensive display method for checking a distribution network single-line diagram model, comprising the following steps: Figure 1

[0027] Step S1: opening the single-line diagram to visually display the area, which can be browsed through the single-line diagram in a roaming, zooming and other ways;

[0028] Step S2: displaying the diagram model checking result, according to the checking result list fed back by the diagram model checking background service, displaying the list according to the semantic checking, data integrity checking, diagram model consistency checking, topological connectivity checking and non-examined equipment list;

[0029] Step S3: checking result auxiliary data repair: according to the diagram model checking result, clicking the result list to reversely locate the object in the single-line diagram and highlight it, repairing the problem single-line diagram, and restarting the diagram model checking result display after the repair is completed.

[0030] As shown in the figure, based on the design idea of the above-mentioned application, the present application further provides a comprehensive display tool for checking a distribution network single-line diagram model, comprising a single-line diagram list module, a single-line diagram display module and a diagram model checking result module, the diagram model checking result module comprising five sub-modules of semantic checking, data integrity checking, diagram model consistency checking, topological connectivity checking and non-examined equipment list. Among them, Figure 2 The single-line diagram list module displays all the distribution network single-line diagrams in a tree list, and provides single-line diagram opening and viewing functions through interactive methods (such as right-click operation through a mouse, etc.).

[0031]

[0032] ​​The single-line diagram display module is used to display a single-line diagram full view and provide functions of viewing device attribute parameters in the diagram through interaction. It includes but is not limited to supporting roaming, zooming, and clicking to view device attribute parameters in the diagram, highlighting objects in the single-line diagram positioned reversely from the diagram model checking result, providing fine-tuning functions, and positioning to the layout function to assist in repairing problem single-line diagrams.

[0033] The diagram model checking result module classifies diagram model data with errors when performing diagram model checking, and displays the diagram model checking result object data in a tree form. For tree node device objects, it supports single-line diagram positioning, supports fuzzy query according to device names, supports query according to device DevIDs, and supports adding problem devices to a "non-assessed device list".

[0034] In the tree node objects of each checking category, different colors are used to identify problem data of error levels and problem data of warning levels. In this embodiment, red is used to identify problem data of error levels, and blue is used to identify problem data of warning levels.

[0035] The functions of the five sub-modules of semantic checking, data integrity checking, diagram model consistency checking, topology connectivity checking, and non-assessed device list are as follows:

[0036] (1) The semantic checking sub-module is used to display a list of RdfID repeated objects in the current single-line diagram according to the model checking result of the distribution network single-line diagram.

[0037] (2) The data integrity checking sub-module is used to display a list of objects related to missing and errors in the current single-line diagram according to the model checking result of the distribution network single-line diagram. The missing and errors include but are not limited to missing of source transformer substation, missing of outgoing switch, error of outgoing switch voltage level, error of feeder geographic area, same connection node at the head and tail of a line segment, error of connection devices on both sides of a distribution transformer, invalid IP address value, device name with line break, empty value error of device operating state, empty value error of device belonging container, empty value error of switch operating number, and empty value error of feeder operating number.

[0038] (3) The diagram model consistency checking sub-module is used to display a list of objects with model but without graphics and objects with graphics but without model in the current single-line diagram according to the model checking result of the distribution network single-line diagram.

[0039] (4) The topology connectivity checking sub-module is used to display a list of objects of main topology island, secondary topology island, isolated device, isolated non-operating device, isolated automation terminal, and isolated user generator in the current single-line diagram according to the model checking result of the distribution network single-line diagram.

[0040] (5) the non-inspected equipment list sub-module is configured to select and add the non-inspected equipment list from the checking results of the semantic checking, data integrity checking, graph-model consistency checking and topological connectivity checking sub-modules.

[0041] The application can locate specific objects in the single-line diagram through the results, thereby avoiding consuming a large amount of manpower to analyze and troubleshoot problems according to the problem list, and realizing efficient and accurate single-line diagram repair.

[0042] It should be appreciated that embodiments of the application can be realized or implemented by computer hardware, a combination of hardware and software, or through computer instructions stored in a non-transitory computer-readable memory. The method can be implemented in a computer program configured with a non-transitory computer-readable storage medium, using standard programming techniques - including the configuration of the storage medium with the computer program, wherein the storage medium thus configured causes the computer to operate in a specific and predefined manner according to the method described in the specific embodiments and the accompanying drawings. Each program can be implemented in a high-level procedural or object-oriented programming language to communicate with the computer system. However, if necessary, the program can be implemented in assembly or machine language. In any case, the language can be a compiled or interpreted language. Furthermore, for this purpose, the program can be run on a programmed special-purpose integrated circuit.

[0043] In addition, the operations of the processes described herein can be performed in any suitable order unless otherwise indicated herein or otherwise clearly contradicted by context. The processes described herein (or variations and / or combinations thereof) can be performed under the control of one or more computer systems configured with executable instructions (e.g., computer programs, one or more computer programs, or one or more applications) to perform operations, and can be implemented as code (e.g., executable instructions, one or more computer programs, or one or more applications) executing collectively on one or more processors, by hardware, or combinations thereof. The computer programs include a plurality of instructions executable by one or more processors.

[0044] Further, the methods can be implemented in any type of computing platform operatively coupled to a suitable computing platform, including but not limited to a personal computer, mini-computer, mainframe, workstation, network or distributed computing environment, separate or integrated computer platforms, or in communication with charged particle tools or other imaging devices, and the like. Aspects of the present application can be implemented in machine readable code stored on a non-transitory storage medium or device, whether removable or integrated into a computing platform, such as a hard disk, optical read and / or write storage media, RAM, ROM, and the like, such that it can be read by a programmable computer to configure and operate the computer to perform the processes described herein when the storage medium or device is read by the computer. In addition, the machine readable code, or portions thereof, can be transmitted over wired or wireless networks. The present application described herein includes these and other different types of non-transitory computer readable storage media when such media include instructions or programs that implement the steps described above in conjunction with a microprocessor or other data processor. The present application also includes the computer itself when programmed according to the methods and techniques described in the present application

[0045] Finally, it is to be understood that the above-described embodiments are merely exemplary of the application and that a myriad of modifications, e.g., to details of structure, can be made to the disclosed technology and that all such modifications are intended to be included within the scope of the application. Accordingly, other embodiments are within the scope of the following claims.

Claims

1. A method for verifying and comprehensively displaying a single-line diagram model of a distribution network, characterized in that: The method comprises Step S1: opening the single-line diagram and displaying in a visual manner; Step S2: displaying the diagram model checking result, according to the checking result list fed back by the diagram model checking background service, displaying in categories according to semantic checking, data integrity checking, diagram model consistency checking, topological connectivity checking and non-examination equipment list; Step S3: checking result auxiliary data repair: according to the diagram model checking result, clicking the result list to reversely locate the object in the single-line diagram and display, repairing the problem single-line diagram, and after repair, restarting the diagram model checking result display; The method is realized by a power distribution single-line diagram model checking comprehensive display tool, the tool comprises a single-line diagram list module, a single-line diagram display module and a diagram model checking result module, the diagram model checking result module comprises five sub-modules of semantic checking, data integrity checking, diagram model consistency checking, topological connectivity checking and non-examination equipment list, the non-examination equipment list sub-module is used for selecting and adding the non-examination equipment list from the checking results of the four checking sub-modules of semantic checking, data integrity checking, diagram model consistency checking and topological connectivity checking; the single-line diagram list module displays all power distribution single-line diagrams in a tree list, and provides single-line diagram opening and viewing functions through an interactive mode; the single-line diagram display module is used for displaying the single-line diagram and providing a function of viewing the device attribute parameters in the diagram through an interactive mode; when the diagram model checking result module performs diagram model checking, the diagram model data with errors is classified, and the diagram model checking result object data is displayed in a tree form, for the tree node device object, single-line diagram positioning is supported, fuzzy query according to the device name is supported, query according to the device DevID is supported, and the problem device is supported to be added to the "non-examination equipment list"; the semantic checking sub-module is used for displaying the object list with repeated RdfID in the current single-line diagram according to the power distribution single-line diagram model checking result; the data integrity checking sub-module is used for displaying the object list involving missing and errors in the current single-line diagram according to the power distribution single-line diagram model checking result; the diagram model consistency checking sub-module is used for displaying the object list with model but without diagram and with diagram but without model in the current single-line diagram according to the power distribution single-line diagram model checking result; in the tree node object of each checking category, different colors are adopted to identify the problem data of error level and the problem data of warning level.

2. The method of claim 1, wherein the method further comprises: determining a plurality of paths between the first node and the second node; and determining a plurality of paths between the third node and the fourth node. The topological connectivity checking sub-module is used for displaying the object list of main topological island, secondary topological island, isolated device, isolated non-operating device, isolated automation terminal and isolated user generator in the current single-line diagram according to the power distribution single-line diagram model checking result.

Citation Information

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