Statistical Characterization of Lightning Induced Overvoltage Waveforms in Overhead Lines

F. Napolitano, F. Tossani, A. Borghetti, C. Nucci, G. Podporkin
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引用次数: 3

Abstract

The proper insulation coordination of power apparatuses requires the knowledge of the withstand capability of the insulation against overvoltages stressing the given apparatus. By using a multivariate Monte Carlo procedure and the parameter probability distributions of the Cigré waveforms of the lightning current at the channel base, we provide a characterization of the parameter distributions of the induced voltage waveforms in a single conductor overhead line. A simplified formula is proposed to reproduce the curve that represents the expected annual number of lightning that induce voltages larger than the insulation level of the line in case insulators flashovers are not considered in the appraisal. The results for the case of an ideal insulation level are compared to those obtained by considering the flashovers in medium voltage insulators represented by means of the disruptive effect (DE) criterion. The parameters of the DE model are estimated by using the voltage-time-to-breakdown curve inferred from laboratory test results.
架空线路雷电感应过电压波形的统计特性
电力设备的适当绝缘协调要求了解对给定设备施加过电压的绝缘承受能力。利用多变量蒙特卡罗方法和通道基处雷电电流cigr波形的参数概率分布,给出了单导线架空线路中感应电压波形的参数分布特征。在评估中不考虑绝缘子闪络的情况下,提出了一个简化公式来再现表示感应电压大于线路绝缘等级的雷电年预期次数的曲线。将理想绝缘水平下的结果与用破坏效应(DE)准则表示的考虑中压绝缘子内闪络的结果进行了比较。利用实验室试验结果推导出的电压-击穿时间曲线来估计DE模型的参数。
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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