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Lightning-Induced Surge in Transmission Towers Calculated Using Full-Wave Electromagnetic Analysis and the Method of Moments

机译:全波电磁分析和矩量法计算的输电塔雷电浪涌

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Lightning-induced surges can cause backflashovers in transmission lines which lead to outages in power systems. In this context, the tower-footing grounding impedance and tower surge impedance play fundamental roles in reducing the lightning-induced surges. The tower footing grounding impedance and tower surge impedance have been evaluated by many models and numerical methods in the frequency and the time domain. The tower-footing grounding system is represented by lumped or distributed parameter models and the tower surge impedance is calculated by geometric solid models or lumped circuits. In this article, the full-wave solution of Maxwell's equations using the method of moments is used for calculating the tower-footing grounding impedance of counterpoise electrodes in the frequency domain for various values of soil resistivity. Then, the admittance of two different transmission towers is calculated for various soils by the same method. Once the admittance of the combined tower and the footing is obtained, a lumped circuit model is developed that will enable the lightning-induced surge calculation directly in time domain.
机译:雷电引起的电涌可能会导致传输线中的回闪,从而导致电力系统中断。在这种情况下,塔底接地阻抗和塔架浪涌阻抗在减少雷电感应浪涌方面起着基本作用。通过许多模型和数值方法,在频域和时域中评估了塔底接地阻抗和塔架浪涌阻抗。塔架接地系统由集总或分布式参数模型表示,塔电涌阻抗由几何实体模型或集总电路计算。在本文中,使用矩量法的麦克斯韦方程的全波解被用于计算土壤电阻率各种值在频率域中平衡电极的塔脚接地阻抗。然后,使用相同的方法针对各种土壤计算两个不同输电塔的导纳。一旦获得了组合塔架和基础的导纳,便建立了集总电路模型,该模型将能够直接在时域中计算雷电引起的浪涌。

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