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Lightning Performance of Transmission Lines: Impact of Current Waveform and Front-Time on Backflashover Occurrence

机译:传输线的闪电性能:电流波形的影响和正面时间对反射发生的影响

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The influence of the return-stroke current waveform and front-time on the occurrence of transmission-line backflashover was assessed via numerical simulation, using the data of two real lines as examples. The overvoltages resulting from distinct lightning current representations (triangular, CIGRE-concave, and double-peaked waveforms) were calculated using an electromagnetic model. The occurrence of backflashover was assessed applying different flashover criteria. Using robust criteria, in particular, the disruptive effect and leader progression models, leads to similar backflashover probabilities for all waveforms; although the probability resulting from these criteria could be different. Also, it leads to practically the same probability obtained using the median current front-time (3.8 μs) or by varying this parameter within realistic range (1.5–10 μs). This still holds true when a correlation between the front-time and peak current is considered. The conclusions are not valid when applying the voltage–time curve method, as the results yielded by this flashover criterion are affected both by the current waveform and the front-time.
机译:通过数值模拟评估返回行程电流波形和前时间对传输线反射的发生的影响,通过数值模拟来评估作为示例的两个实线的数据。使用电磁模型计算由不同的雷电电流表示(三角形,CIGRE-凹入和双峰值波形)产生的过电压。评估反向从而应用于不同的闪络标准。特别是使用稳健的标准,特别是破坏性效应和领导者进展模型,导致所有波形的类似反向概率;虽然由这些标准产生的概率可能是不同的。此外,它导致实际上使用中值前时间(3.8μs)或通过改变现实范围(1.5-10μs)的该参数获得相同的概率。当考虑前时间和峰值电流之间的相关性时,这仍然保持为真。在施加电压 - 时曲线方法时,结论无效,因为该闪络标准产生的结果受电流波形和前一次的影响。

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