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Circuit Model of Vertical Double-Circuit Transmission Tower and Line for Lightning Surge Analysis Considering TEM-mode Formation

机译:考虑TEM模式形成的雷电涌流的垂直双回路输电塔和线路的电路模型

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The electromagnetic fields, which are produced by lightning currents flowing into a transmission tower and into overhead ground wires, spherically expand with time, and propagate as non-transverse electromagnetic (TEM) waves at least within the round trip time of the traveling wave along the tower. In this paper, a distributed-parameter line model of a vertical double-circuit transmission tower with an overhead line struck by lightning is composed considering the non-TEM characteristics. The surge impedances of the tower, ground wires, and phase conductors increase with time and reach their TEM-mode or steady state values with time constants determined from the configuration. In addition, the significant wave attenuation along the tower is included in the circuit model according to the propagation characteristic determined by the tower configuration. The virtual inductive grounding impedance or damping circuits for approximately representing the wave attenuation is no longer needed. The proposed model is applied to four types of transmission towers. Waveforms of voltages across insulator strings computed by the finite-difference time-domain method, which are regarded as the reference, are well reproduced by the proposed model. Computation efficiency is drastically improved by the proposed model comparing to the numerical electromagnetic field analysis.
机译:由流入输电塔和架空接地线的雷电流产生的电磁场会随时间球形扩展,并至少在行进波的往返时间内沿非横向电磁波(TEM)传播。塔。考虑非TEM特性,建立了架空线被雷击的立式双回输电塔分布参数线模型。塔架,地线和相线导体的浪涌阻抗会随着时间增加,并达到其TEM模式或稳态值,并具有根据配置确定的时间常数。另外,根据由塔架配置确定的传播特性,电路模型中包括沿塔架的显着波衰减。不再需要用于近似表示波衰减的虚拟电感接地阻抗或阻尼电路。所提出的模型适用于四种类型的输电塔。通过有限差分时域法计算的绝缘子串两端的电压波形被视为参考,该模型很好地再现了该波形。与数值电磁场分析相比,该模型大大提高了计算效率。

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