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Overvoltage Analysis Considering Transmission Tower Models Based on Impedances and Inductances

机译:基于阻抗和电感的传输塔模型考虑过电压分析

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It is clear that lightning strokes produce overvoltages on Transmission Lines (TLs), which can be higher that the Basic Insulator Level (BIL), generating a fault or short circuit. Thus, in order to adequately analyze when a lightning hits on a TL, it is necessary to simulate different elements corresponding to Electric Power Systems (EPSs) as real as possible. In this context, transmission towers are considered crucial parameters in lightning studies, which must be correctly selected and simulated in order to consider reflected voltage waveforms from cross arms. Based on the above said, this paper presents a comparative study corresponding to the transmission tower simulation using two models. The first uses inductances, and the second uses distributed parameters impedances characterized by their impedance and travel time. This paper presents voltage variations that exist in each phase, using different lightning features. Alternative Transients Program (ATP) is used to simulate the TL model considering different lightning currents and the two tower models. Results show that the impedance model analyze reflected waveforms, while that the inductance model does not analyze this issue.
机译:很明显,闪电冲程在传输线(TLS)上产生过电压,这可以更高,这可以更高,基本绝缘体水平(BIL),产生故障或短路。因此,为了充分分析TL上的闪电时,需要模拟与电力系统(EPS)相对应的不同元件尽可能真实。在这种情况下,传输塔被认为是闪电研究中的关键参数,必须正确选择和模拟,以便考虑来自交叉臂的反射电压波形。基于上述说法,本文介绍了使用两种模型的传输塔仿真对应的比较研究。第一个使用电感,第二个使用分布式参数阻抗,其阻抗和行程时间。本文呈现了使用不同的闪电功能的每个阶段存在的电压变化。替代瞬态程序(ATP)用于模拟考虑不同的闪电电流和两个塔式模型的TL模型。结果表明,阻抗模型分析了反射波形,而电感模型不会分析此问题。

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