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Behavior of MV Insulators Under Lightning-Induced Overvoltages: Experimental Results and Reproduction of Volt–Time Characteristics by Disruptive Effect Models

机译:雷击感应过电压下中压绝缘子的行为:实验结果和干扰特性模型的伏时特性再现

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摘要

This paper presents the results of experimental tests performed with an impulse voltage of short tail (STLI: 1.2/4 ¿s), similar to lightning-induced overvoltages, on composite insulators used in the electric traction lines. The characteristics of volt-time breakdown under STLI waves are shown and compared with the characteristics obtained under standard lightning impulse (LI:1.2/50 ¿s). Models based on the disruptive effect, as proposed by Kind and Chowdhuri, are considered and applied in order to reproduce the volt-time characteristics under standard and nonstandard lightning voltages. The application viability of these models to tested insulators is considered and discussed and the accuracy in their reproduction is evaluated. It is demonstrated that the Kind model, calibrated with a suitable selection of the parameters using standard flashover data (LI), is able to estimate the response of the insulators to the short tail lightning impulses (STLI) with satisfactory accuracy.
机译:本文介绍了在短尾脉冲电压(STLI:1.2 / 4Âs)上执行的实验测试的结果,类似于在电牵引线上使用的复合绝缘子上的雷电感应过电压。显示了STLI波下的伏时击穿特性,并将其与标准雷电冲击(LI:1.2 / 50 s)下获得的特性进行了比较。考虑并应用了Kind和Chowdhuri提出的基于干扰效应的模型,以便在标准和非标准雷电电压下重现电压时间特性。考虑并讨论了这些模型在测试绝缘子上的应用可行性,并评估了其复制的准确性。结果表明,使用标准闪络数据(LI)对参数进行适当选择后进行校准的Kind模型能够以令人满意的精度估算绝缘子对短尾闪电脉冲(STLI)的响应。

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