A Method for the Improvement of the Stability in FDTD-Based Numerical Codes Evaluating Lightning-Induced Voltages

D. Mestriner, M. Brignone, R. Procopio, F. Rachidi, A. Piantini
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引用次数: 1

Abstract

Dealing with realistic networks, the solution of lightning electromagnetic field coupling to transmission lines is generally obtained through a Finite-Difference Time-Domain (FDTD) algorithm interfaced with an electromagnetic simulator. As well known, the stability of the FDTD scheme is determined by the Courant stability condition. In this contribution, it is shown that a second stability condition that limits the ratio between the space step and the line length appears when spatial extrapolation is used to obtain the values of the currents at the line extremities to be interfaced with a transient electromagnetic simulator. Finally, this work aims at solving the aforementioned problem by using a different approach to obtain the currents at the line extremities.
一种改进基于fdtd的雷电感应电压数值编码稳定性的方法
对于现实网络,雷电电磁场对传输线耦合的求解一般采用时域有限差分(FDTD)算法与电磁模拟器相结合的方法。众所周知,FDTD格式的稳定性是由Courant稳定性条件决定的。在此贡献中,表明了当使用空间外推来获得与瞬变电磁模拟器接口的线端电流值时,出现第二个限制空间步长与线长之间比率的稳定性条件。最后,本工作旨在通过使用不同的方法来获得线端电流来解决上述问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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