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Simulation Model of Lightning Stroke to a Transmission Line Considering the Leader Propagation Randomicity

机译:考虑领导繁殖随机性的传输线闪电冲程模型

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In recent years, with the increase of voltage grade of transmission line, the proportion of outages because of shielding failure also increases. Therefore, exactly evaluating lightning-withstanding level of transmission line is especially important for system service and stable operation. Considering the randomicity of leader propagation, a lightning stroke simulation model on lightning shielding performance of transmission line was presented, in which the simulation charge method had been applied. Simulation results of this model reflected the general rules of lightning stroke: with the direction of downward leader changing from close to the transmission line to far away from it, the lightning strike aim changed gradually from ground wire to conducting wire, finally the earth. Shielding failure probability and stroke distance to earth, which were calculated by the simulation model, were in accordance with the results of lightning simulation experiment and the stroke distance equation recommended by IEEE. So, the simulation model is reasonable.
机译:近年来,随着输电线路电压等级的提高,因为屏蔽故障停运的比重也增加了。因此,传输线的精确分析闪电承受水平是系统的服务和稳定运行尤为重要。考虑前导传播的随机性,对闪电屏蔽传输线的性能雷击仿真模型提出,其中已经应用了模拟充电方法。该模型的模拟结果反映雷击的一般规则:与下行先导的方向上从靠近所述传输线到远离它改变,雷击目的从地线逐渐改变为导线,终于大地。屏蔽失效概率与行程距离接地,这是由仿真模型计算出的,分别按照闪电模拟实验的结果,并通过IEEE建议的行程距离方程。因此,仿真模型是合理的。

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