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Article

Corrosion and Fracture Localization in Grounding Grids and State Evaluation Based on Analysis of the Evolution of Magnetic Field Distributions

1
China Shenhua Energy Company Limited Shenshuo Railway, Yulin 719399, China
2
School of Electrical Engineering, Beijing Jiaotong University, Beijing 100044, China
*
Author to whom correspondence should be addressed.
Appl. Sci. 2025, 15(22), 12079; https://doi.org/10.3390/app152212079
Submission received: 16 October 2025 / Revised: 7 November 2025 / Accepted: 10 November 2025 / Published: 13 November 2025
(This article belongs to the Section Electrical, Electronics and Communications Engineering)

Abstract

The grounding grid of a substation is a crucial component for ensuring normal operation. However, since it is buried underground for long periods, it is highly susceptible to electrochemical corrosion. This corrosion leads to a reduction in its grounding performance, and severe corrosion may endanger the reliable operation of high-voltage equipment and secondary relay-protection equipment, as well as the safety of personnel. In this paper, the electromagnetic field analysis method is used to conduct simulation modeling of the grounding grid. A different-frequency current is injected into the grounding grid to study the variation law of the surface magnetic field distribution when corrosion occurs to different degrees at different positions in the grounding grid. Through the analysis of the evolutionary characteristics of the magnetic field distribution, the corrosion-induced breakages in the grounding grid are located and a comprehensive state evaluation is carried out. The results show that when a fault occurs in a conductor at the same position, the variation amplitude of the surface magnetic field gradually increases with increased corrosion. Based on this finding, an online monitoring algorithm for the location of corrosion-induced breakages and state evaluation of the grounding grid is proposed. A comprehensive evaluation model is constructed by combining the grounding resistance value and corrosion characteristic value to accurately locate the fault.
Keywords: substation grounding grid; location of corrosion fracture; grounding grid state evaluation; evolution characteristics of magnetic field distribution substation grounding grid; location of corrosion fracture; grounding grid state evaluation; evolution characteristics of magnetic field distribution

Share and Cite

MDPI and ACS Style

Xue, J.; Gao, F.; Li, Z.; Li, X.; Yin, Y.; Tian, F. Corrosion and Fracture Localization in Grounding Grids and State Evaluation Based on Analysis of the Evolution of Magnetic Field Distributions. Appl. Sci. 2025, 15, 12079. https://doi.org/10.3390/app152212079

AMA Style

Xue J, Gao F, Li Z, Li X, Yin Y, Tian F. Corrosion and Fracture Localization in Grounding Grids and State Evaluation Based on Analysis of the Evolution of Magnetic Field Distributions. Applied Sciences. 2025; 15(22):12079. https://doi.org/10.3390/app152212079

Chicago/Turabian Style

Xue, Jiao, Fei Gao, Zhen Li, Xiaoming Li, Yufeng Yin, and Fuqiang Tian. 2025. "Corrosion and Fracture Localization in Grounding Grids and State Evaluation Based on Analysis of the Evolution of Magnetic Field Distributions" Applied Sciences 15, no. 22: 12079. https://doi.org/10.3390/app152212079

APA Style

Xue, J., Gao, F., Li, Z., Li, X., Yin, Y., & Tian, F. (2025). Corrosion and Fracture Localization in Grounding Grids and State Evaluation Based on Analysis of the Evolution of Magnetic Field Distributions. Applied Sciences, 15(22), 12079. https://doi.org/10.3390/app152212079

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