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Calculation of Lightning Flashover Rates of Overhead Distribution Lines Considering Direct and Indirect Strokes

机译:考虑直接和间接行程的架空配电线路雷击闪率的计算

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This paper presents a procedure for evaluation of lightning performance of overhead distribution lines. Because both voltages from direct strokes and nearby strokes may cause flashovers in distribution lines, flashover rates due to them need to be analyzed. The procedure is implemented in electromagnetic transient program, and the Monte Carlo method is used to take into account the random nature of lightning parameters. The lightning-induced voltages are calculated with an equivalent circuit derived from Agrawal formula. The influence of insulation level and spacing between surge arresters on lightning flashover rates is analyzed with the procedure. For a line with low-insulation level about 150 kV above high conductivity ground or with high-insulation level about 300 kV above low conductivity ground, the spacing between arresters is best less than 400 m. But for a line with low-insulation level above low conductivity ground, it is better to reduce the spacing to 200 m.
机译:本文提出了一种评估架空配电线路雷电性能的程序。由于来自直接冲程和附近冲程的电压都可能导致配电线路中的闪络,因此需要分析由于它们引起的闪络率。该程序在电磁瞬态程序中实现,并且使用蒙特卡洛方法考虑雷电参数的随机性。雷电感应电压是使用从Agrawal公式得出的等效电路计算得出的。通过该程序分析了绝缘水平和避雷器之间的间距对雷击闪络率的影响。对于在高电导率地面以上约150 kV的低绝缘水平或在低电导率地面以上约300 kV的高绝缘水平的线路,避雷器之间的间距最好小于400 m。但是对于在低电导率地面以上具有低绝缘水平的线路,最好将间距减小到200 m。

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