Analysis of grounding system transient with consideration of soil ionization and mutual coupling effect

Kaushal Pratap Sengar, Kandasamy Chandrasekaran
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Abstract

Abstract The grounding system of an electrical substation provides safety to both operator and equipment. The lightning current waveform has a major influence on the dynamic performance of ground electrodes. If lightning current is large enough, soil will be ionized, which will have a great effect on the transient performance of the grounding system. Many numerical models have been developed to evaluate the transient performance of grounding system, still it is a challenging task to analyze the impulse behavior of grounding system efficiently. In this paper, the transient behavior of grounding systems with consideration of nonlinear and dynamic effects of soil ionization is presented. Grounding systems such as vertical rod, horizontal conductor and grounding grid buried in the homogeneous soil are considered as case study. Proposed model is the combination of circuit theory approach and method of moment with consideration of frequency-dependent impedance and mutual coupling effect between the conductor segments. Self and mutual component of inductance and resistance are considered in the analysis. Initially, transient performance of grounding system is analyzed for single vertical rod, horizontal and square grounding electrodes, further it is extended for vertical rod (more than one), horizontal conductor and grounding grids with different configurations. The analysis of grounding system with the consideration of mutual coupling effect is compared with devoid of mutual coupling, and differences between them are evaluated. For validating the developed method, simulated results are compared with the results reported in the literature, and good agreements are found. Analysis shows that the grounding impulse impedance decreased with increasing the magnitude of injected current. Developed method will help to improve the modeling of simple as well as complex grounding system buried in homogeneous soil.
考虑土壤电离和互耦效应的接地系统暂态分析
变电站接地系统为操作人员和设备提供了安全保障。雷电电流波形对地电极的动态性能有重要影响。如果雷电电流足够大,土壤就会被电离,对接地系统的暂态性能有很大的影响。虽然已经建立了许多评估接地系统暂态性能的数值模型,但如何有效地分析接地系统的冲击特性仍然是一项具有挑战性的任务。本文研究了考虑土壤电离非线性和动力效应的接地系统的瞬态特性。以埋设在均质土中的垂直棒、水平导体和接地网等接地系统为例进行了研究。该模型将电路理论方法与矩量法相结合,考虑了频率相关阻抗和导线段间的相互耦合效应。在分析中考虑了电感和电阻的自分量和互分量。首先分析了单垂直棒、水平接地极和方形接地极的接地系统暂态性能,并进一步扩展到垂直棒(多个)、水平导体和不同配置的接地网。将考虑互耦效应的接地系统分析与不考虑互耦效应的接地系统分析进行了比较,并对两者的差异进行了评价。为了验证所开发的方法,将模拟结果与文献报道的结果进行了比较,发现了很好的一致性。分析表明,接地冲击阻抗随注入电流的增大而减小。所开发的方法将有助于改进均质土壤中简单和复杂接地系统的建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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