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Modeling and analysis of lightning effects in OPGW cables using the ADI-FDTD method

机译:使用ADI-FDTD方法对OPGW电缆闪电效应的建模与分析

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摘要

Current density distribution in optical ground wire cables hit by lightning strokes is numerically calculated and studied in time domain. For this analysis, two models for current source were considered, since atmospheric discharge has two major components which usually damage more severely the cable: the long and short duration current components. The analysis is performed by employing the Alternating Direction Implicit Finite-Difference Time-Domain (ADI-FDTD) method, which the presented formulation was especially developed by the authors to analyze this phenomenon. The convolutional perfectly matched layer (CPML) technique adapted for the ADI method, called ADI-CPML, is also developed in this work for truncating the ADI-FDTD computational domain.
机译:通过闪电冲程击中光学接地线缆中的电流密度分布在数域中进行了数量计算和研究。 对于此分析,考虑了两种用于电流源的型号,因为大气排放有两个主要部件,通常损坏电缆:长短持续时间电流分量。 通过采用交替方向隐含有限差时域(ADI-FDTD)方法来执行分析,该方法由作者特别开发出呈现的制剂来分析这种现象。 在这项工作中也开发了适用于ADI-CPML的ADI方法的卷积完美匹配的层(CPML)技术,用于截断ADI-FDTD计算域。

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