Simulation analysis on magnetic core loss characteristic of valve reactor in UHVDC system

Author:

Wang Yifan1ORCID,Yuan Jiaxin1,Mo Zuoquan2ORCID,Tan Jiefu1,Li Xuzhe1ORCID,Zhou Hang1ORCID,Chen Tie3ORCID

Affiliation:

1. State Key Laboratory of Power Grid Environmental Protection, School of Electrical Engineering and Automation, Wuhan University 1 , Wuhan 430072, China

2. Guangzhou Power Supply Section of Guangzhou Shenzhen Railway Co., Ltd. 2 , Guangzhou 510180, China

3. Hubei Provincial Key Laboratory for Operation and Control of Cascaded Hydropower Station, China Three Gorges University 3 , Yichang 443002, China

Abstract

Valve reactors (VR) with multiple magnetic cores are important electrical components in ultra-high voltage direct current systems. The impact current and high-order harmonics during their operation can lead to additional losses and temperature rise in the valve reactors, posing a threat to insulation aging, and even causing serious incidents such as combustion and explosions. Therefore, it is necessary to accurately quantify and analyze the loss characteristics of valve reactors under different magnetic materials. This article first theoretically analyzes the electromagnetic and temperature characteristics during the actual operation of VR; then, it analyzes and calculates the magnetic field distribution and electromagnetic losses of a single magnetic core. Finally, it establishes a three-dimensional equivalent model of VR and conducts transient electromagnetic-thermal coupled finite element simulation to reveal the magnitude and spatial distribution of VR temperature changes.

Funder

National Natural Science Foundation of China - State Grid Corporation Joint Fund for Smart Grid

Publisher

AIP Publishing

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1. Valve reactor for HVDC system: Electrical, thermal and vibrational properties;International Journal of Electrical Power & Energy Systems;2024-10

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