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BIM-based verification method for linkage logic of auxiliary equipment of transformer substation

A technology of auxiliary equipment and verification methods, applied in 3D modeling, instruments, geometric CAD, etc., can solve the problems of irregular linkage logic acceptance link, incomplete functional verification, and difficulty in real-time monitoring and control of substation auxiliary equipment. Achieve the effect of improving rationality and verifying linkage logic

Active Publication Date: 2022-02-25
JIANGSU ELECTRIC POWER CO
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AI Technical Summary

Problems solved by technology

[0004] With the construction of a new generation of auxiliary equipment intelligent monitoring system, the linkage logic of auxiliary equipment has been clearly stipulated, but there is no effective reference basis for the linkage logic of auxiliary equipment, resulting in non-standard linkage logic acceptance before operation and functional verification. Not comprehensive, it is difficult to realize real-time monitoring and control of substation auxiliary equipment, and cannot meet the development needs of smart substations

Method used

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  • BIM-based verification method for linkage logic of auxiliary equipment of transformer substation
  • BIM-based verification method for linkage logic of auxiliary equipment of transformer substation

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[0024] specific implementation plan

[0025] The present invention provides a BIM model-based verification method and system for substation auxiliary equipment linkage logic, such as figure 1 As shown, the verification process includes the following steps:

[0026] 1) Load the substation BIM model, identify the identification bits of the functional areas (main control room, etc.) attached to the substation BIM model, and form a list of substation functional areas; identify the auxiliary equipment identification bits attached to the substation BIM model, and form an auxiliary equipment list.

[0027] The BIM model of the substation contains the data information of each functional area and auxiliary equipment of the substation. Through the BIM model that has completed the three-dimensional design, the key identification information of the functional areas and auxiliary equipment in the BIM model can be directly obtained.

[0028] Smart substations are divided into functional ar...

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Abstract

The invention discloses a BIM-based verification method for linkage logic of auxiliary equipment of a transformer substation. The method comprises the following steps: 1) loading a substation BIM model; 2) reading information of a functional area and auxiliary equipment of the transformer substation; 3) matching a linkage scene in a functional area; 4) calling a linkage logic rule base; 5) verifying auxiliary equipment; 6) generating a linkage logic diagram. During work, according to related standard requirements of a new generation of substation auxiliary equipment intelligent monitoring system, a linkage logic verification method suitable for stages of design, construction, acceptance and the like is provided, and a safe and stable operation environment of a substation is guaranteed.

Description

technical field [0001] The invention relates to the design technical field of a new generation of auxiliary equipment intelligent monitoring system of a substation, in particular to a BIM model-based verification method for linkage logic of substation auxiliary equipment. Background technique [0002] The auxiliary equipment intelligent monitoring system is a system for monitoring and controlling the auxiliary equipment in the substation. The system adopts an integrated design, unifies the equipment model, and unifies the communication protocol and interface standard of the front-end equipment; the system includes the primary equipment online monitoring subsystem, the fire protection subsystem System, security defense subsystem, dynamic ring subsystem, intelligent lock control subsystem and intelligent inspection subsystem, etc., and auxiliary equipment belongs to the above subsystems. [0003] As an important device for unattended smart substations and all-weather monitorin...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G06F30/13G06T17/00
CPCG06F30/13G06T17/00
Inventor 夏睿汤昊张春燕王振邱慧王维川姬慧任嘉晨余秋衡谭小龙
Owner JIANGSU ELECTRIC POWER CO
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