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An Efficient Parallel 3-D FDTD Method for Calculating Lightning-Induced Disturbances on Overhead Lines in the Presence of Surge Arresters

机译:计算避雷器时架空线路雷电干扰的高效并行3-D FDTD方法

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摘要

In this paper, we propose an efficient modeling technique for incorporating surge arresters in finite-difference time-domain (FDTD) simulations of lightning-induced disturbances in power networks. Instead of using piecewise linear approximations for the curve of an arrester, as usually done in the literature, we derive new updating equations for calculation of electric field components required at each FDTD time step. This is done in a semi-implicit manner where we first obtain a time-stepping relation of electric field based on the curves of the arresters. The time-stepping relation in each time step is solved by the Newton–Raphson method to update the electric field components. The proposed technique is implemented into a nonuniform parallel FDTD code, which is used to simulate a three-phase distribution line of about 800 m equipped with lightning arresters and a neutral wire, installed at the International Center for Lightning Research and Testing at Camp Blanding Florida. The results of FDTD numerical simulations are found to be in excellent agreement with experimental data associated with triggered lightning.
机译:在本文中,我们提出了一种有效的建模技术,用于将避雷器并入电网中雷电引起的扰动的有限差分时域(FDTD)模拟中。代替了通常在文献中所做的避雷器曲线的分段线性逼近,我们推导了新的更新方程,用于计算每个FDTD时间步长所需的电场分量。这是通过半隐式方式完成的,其中我们首先根据避雷器的曲线获得电场的时间步进关系。牛顿-拉夫森方法解决了每个时间步长中的时间步长关系,以更新电场分量。提议的技术被实现为非均匀并行FDTD代码,该代码用于模拟约800 m的三相配电线,该配电线装有避雷器和中性线,安装在佛罗里达州坎普兰德国际闪电研究与测试中心。发现FDTD数值模拟的结果与触发雷电相关的实验数据非常吻合。

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