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Lightning Response of Multi-Port Grids Buried in Dispersive Soils: An Approximation versus Full-wave Methods and Experiment

机译:在分散土中埋藏的多端口网格的避雷响应:近似与全波方法和实验

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摘要

In this paper, application of multi-conductor transmission line model (MTL) in transient analysis of grounding grids buried in soils with frequency-dependent electrical parameters (dispersive soil) is investigated. In this modeling approach, each set of parallel conductors in the grounding grid is considered as a multi-conductor transmission line (MTL). Then, a two-port network for each set of parallel conductors in the grid is then defined. Finally, the two-port networks are interconnected depending upon the pattern of connections in the grid and its representative equations are then reduced. Via solving these simplified equations, the transient analyses of grounding grids is efficiently carried out. With the aim of validity, a number of examples previously published in literature are selected. The comparison of simulation results based on the MTL shows good agreement with numerical and experimental results. Moreover, in despite of numerical methods computational efficiency is considerably increased.
机译:本文研究了多导体传输线模型(MTL)在跨频依赖性电参数(分散土壤)埋藏的接地网瞬态分析中的应用。在该建模方法中,接地网格中的每组并联导体被认为是多导体传输线(MTL)。然后,然后定义网格中的每组并联导体的双端口网络。最后,根据网格中的连接模式及其代表性方程,双端口网络互连。通过解决这些简化方程,有效地进行接地网格的瞬态分析。凭借有效性,选择了先前在文献中发表的许多例子。基于MTL的仿真结果的比较显示了与数值和实验结果的良好一致性。此外,尽管有数值方法,计算效率显着增加。

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