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Method, system and equipment for detecting coupling model of new energy transformer substation and medium

A technology of coupled models and detection methods, applied in transmission systems, electrical components, etc., can solve problems such as lack of operation and maintenance personnel, complex correlations, and complex software functions

Pending Publication Date: 2022-03-01
CHINA ELECTRIC POWER RES INST +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The new energy substation has the characteristics of more concentrated data and higher intelligence. Its acquisition and execution unit integrates various data such as safety control system, multi-functional measurement and control, intelligent fault recording, broadband sampling, network record analysis and secondary equipment status monitoring. Acquisition device, with many types of data collection and a large amount of collected information, its own software functions are complex and involve data interaction with multiple types of secondary equipment, and the secondary equipment of autonomous controllable smart substations is all required to be developed based on domestically produced chips. Some of the original The test method and test means are facing huge applicability challenges; at the same time, the new energy substation has a lightweight network structure and multi-level device integration to solve the problem of complex network at the process layer, irregular SCD (Substation Configuration Description) files, and data Issues such as unclear application positioning; this has also led to new requirements for secondary system model file configuration requirements, deployment methods, configuration completeness, file reliability, and user friendliness in new energy substations.
[0003] The SCD file is used as a new energy substation system configuration description file. At this stage, relevant industry standards and enterprise standards have been formulated for the primary equipment and secondary equipment system description model files; however, the SCD file is a comprehensive configuration file model, and the primary equipment The model and the secondary equipment model are organically coupled and related together; for the detection of this type of coupled model, some provincial companies, scientific research institutes and universities have also carried out related research, but because the primary and secondary correlations are quite Complicated, for this type of coupling model, at present, many provincial and municipal power supply companies in the company, the SCD file transfer and verification in the station are carried out manually or offline, resulting in the lack of effective technical means for the operation and maintenance personnel to carry out equipment configuration detection

Method used

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  • Method, system and equipment for detecting coupling model of new energy transformer substation and medium

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Embodiment 1

[0043] see figure 1A method for detecting a coupling model of a new energy substation provided by an embodiment of the present invention includes the following steps: performing static detection on a coupling model that combines primary equipment model information and secondary equipment model information of the new energy substation to be detected, After static detection, dynamic detection is carried out to obtain the detection result;

[0044] Wherein, the static detection includes: performing a normative detection on the coupling model through the unit model detection method; performing a systematic model detection on the coupling model through the system model detection method; detection;

[0045] The dynamic detection includes: importing the coupling model through static detection into the pre-built new energy coupling model to detect the dynamic operation of the cloud platform, simulating the operation of the preset smart device and performing logical detection on the p...

Embodiment 2

[0050] A detection method for a new energy substation coupling model according to an embodiment of the present invention includes the following steps:

[0051] Step 1. According to the characteristics of the equipment information model of the new energy substation, the coupling model that combines the primary equipment model information and the secondary equipment model information is checked for syntax standardization, function standardization, data structure standardization, network Information standardization testing;

[0052] Step 2: Carry out systemic model detection such as difference detection, standard detection, model training, and model service on the coupling model through the system model detection method;

[0053] Step 3: Carry out normative detection on the coupling model primary and secondary equipment associated graphic element structure, primary system topology, functional topology, communication topology and complete description of the geographic area locatio...

Embodiment 3

[0062] In the technical solution provided by the embodiment of the present invention, a new energy substation model cloud platform is constructed according to the characteristics of the new energy substation equipment information model, and the new energy substation is extracted from the actual business needs of the production and operation management of the new energy substation. Based on the characteristics of power supply, energy storage power supply, and energy storage power supply, based on the characteristics of the primary equipment and secondary equipment business requirements of new energy substations, a new energy substation tested model library is established. The platform can realize model difference detection, standard detection, model training, model services, etc. The function realizes the overall detection of the new energy substation coupling model, and provides online support for business applications through model services. The detection method of the embodim...

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Abstract

The invention discloses a method, a system, equipment and a medium for detecting a coupling model of a new energy transformer substation, and the method comprises the following steps: carrying out the static detection of the coupling model which combines the information of a primary equipment model and the information of a secondary equipment model of the new energy transformer substation to be detected, and then carrying out the dynamic detection after the static detection, and obtaining a detection result. According to the detection method provided by the invention, standardized detection of the new energy transformer substation coupling model can be realized based on static detection and dynamic detection, and the purpose of model detection is achieved; according to the detection method provided by the invention, the detection requirements on the stability and robustness of the detected equipment on site can be met to a great extent.

Description

technical field [0001] The invention belongs to the technical field of substation coupling model detection, and in particular relates to a detection method, system, equipment and medium of a new energy substation coupling model. Background technique [0002] The new energy substation has the characteristics of more concentrated data and higher intelligence. Its acquisition and execution unit integrates various data such as safety control system, multi-functional measurement and control, intelligent fault recording, broadband sampling, network record analysis and secondary equipment status monitoring. Acquisition device, with many types of data collection and a large amount of collected information, its own software functions are complex and involve data interaction with multiple types of secondary equipment, and the secondary equipment of autonomous controllable smart substations is all required to be developed based on domestically produced chips. Some of the original The t...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04L43/12H04L43/50
CPCH04L43/12H04L43/50
Inventor 王化鹏李劲松张金虎
Owner CHINA ELECTRIC POWER RES INST
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