新计算方法中的细线表示

Y. Ma, Y. Shen, L. Wang, Y. Long, C. Yao
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引用次数: 1

摘要

由麦克斯韦方程组导出的方法可用于模拟具有特定几何结构的快速电涌情况并计算其电流分布。常用的方法有时域有限差分法(FDTD)、矩量法(MoM)等。本文提出了一种利用天线设计框架电磁卫星(ADF-EMS)软件基于MoM法的细线表示方法,该方法适用于三维浪涌仿真。该软件是天线周围电磁场和表面电流分布的标准数值分析工具,可用于分析极快的浪涌现象。几何边界问题可以用电场积分方程求解,减少了建模的复杂性和线段的数量,提高了精度。本文介绍了ADF-EMS的基本原理,以及如何利用快速傅立叶变换算法(FFT)和快速反傅立叶变换(IFFT)方法求解时域问题。并将本文的模拟结果与文献中的实测结果进行了比较,证明了该方法的有效性。这些方法可以综合考虑雷电通道、输电塔和输电线路的电磁场分布和电流分布,为雷电电流波形反演计算奠定了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thin wire representation in novel computational methods
The methods derived from Maxwell's equations can be applied to simulate very fast surge situation with specific geometry structure and compute its current distribution. The common methods are the finite difference time domain (FDTD) method, the method of moments (MoM) and so on. This paper shows a method of thin wire representation using the Antenna Design Framework Electromagnetic Satellite (ADF-EMS) software based on MoM method, which suits for the three-dimensional surge simulation. This software, as a standard numerical analysis tool on electromagnetic field around antennas and current distribution on the surface, can be applied to analyse the very fast surge phenomena. The geometry boundary problems can be solved with the electric-field integral equation, which reduces the complexity of modeling, numbers of segments and increases the accuracy. This paper indicates the basic theory of ADF-EMS and how to apply the software to solve time-domain problem with the methods of Fast Fourier Transform Algorithm (FFT) and Inverse Fast Fourier Transform (IFFT). Then the simulated in this paper and field results from literatures are compared to prove the availability of this method. These methods can be used to take a comprehensive consideration of electromagnetic field distribution and current distribution consisting of models of lightning channel, transmission tower and transmission line, which builds strong foundations for lightning current waveforms inversion calculation.
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