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Publishing Language: Chinese | Open Access

The impact of substation secondary equipotential grounding grid connection methods on grounding grid characteristics

Zhiwei CAO1Wenda JIA2Jihao WANG1Qing YAN1Jinjun HUANG3Jun GUO2
State Grid Shandong Electric Power Research Institute, Jinan 250003, China
School of Electrical Engineering, Xi'an Jiaotong University, Xi'an 710049, China
DC Technical Center of State Grid Corporation of China, Beijing 100052, China
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Abstract

The impact of electromagnetic interference on secondary systems in substations can be reduced by the installation of secondary equipotential grounding grid. A simplified grounding grid model based on CDEGS is established to study the effects of the connection mode between the secondary equipotential grounding grid and the main grounding grid on ground potential rise and current in the secondary equipotential grounding grid. By considering soil resistivity and current injection points, the characteristics of the grounding grid under power frequency current, lightning current, and high-frequency damped oscillation current are simulated and analyzed. It is found that when the injection current frequency is low, the ground potential difference and current inside the secondary equipotential grounding grid close to the fault point can be effectively reduced by the single-point grounding connection mode. When the injection current frequency is high, the multi-point grounding connection mode can effectively reduce ground potential rise and current. Besides, the ground potential rise and current of grounding conductors at different locations increase with increasing soil resistivity. When the current injection point is at the corner of the grounding grid, the ground potential difference and current inside the secondary equipotential grounding grid is significantly increased.

CLC number: TM774 Document code: A

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Electric Power Engineering Technology
Pages 101-109

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Cite this article:
CAO Z, JIA W, WANG J, et al. The impact of substation secondary equipotential grounding grid connection methods on grounding grid characteristics. Electric Power Engineering Technology, 2026, 45(2): 101-109. https://doi.org/10.12158/j.2096-3203.2026.02.011

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Received: 20 August 2025
Revised: 02 November 2025
Published: 28 February 2026
© After publication of the article, the authors shall own the right of signature. 2026.

The authors can use or share the published article under the Attribution-Non Commercial 4.0 International (CC BY-NC 4.0) license.