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Analytic Iterative Solution of Electromagnetic Pulse Coupling to Multiconductor Transmission Lines

机译:多导体传输线电磁脉冲耦合的解析迭代解

摘要

This paper provides an efficient iterative solution in the frequency domain for electromagnetic pulse (EMP) radiated field coupling to multiconductor transmission lines (MTLs) based on distributed analytical representation of the exciting sources and iterative technique originated from waveform relaxation. The method consists of two kinds of iterations, the first is that the incoming EMP wave couples to each conductor while the effects of neighboring conductors were neglected; the second is that each conductor will be not only subject to the illumination of the EMP wave, but also influenced by the virtual sources which are the induced voltages and currents of the neighboring conductors at the previous iteration. The key highlights of the proposed method are that the induced voltage and current at each iteration are considered as the virtual distributed exciting sources for next iteration, and the integrals were solved analytically by the Baum-Liu-Tesche equation, leading to a pretty good efficiency and quick convergence for most real cases. The validation results over a wide range show that the proposed method could efficiently handle EMP coupling to MTLs with a large number of conductors and the accuracy of the solutions is closely related to the number of iterations allowing the flexibility to choose between the accuracy and the time cost
机译:本文基于激励源的分布式解析表示和源自波形弛豫的迭代技术,为电磁脉冲(EMP)辐射场耦合至多导体传输线(MTL)的频域提供了一种有效的迭代解决方案。该方法由两种迭代组成,第一种是进入的EMP波耦合到每个导体,而忽略相邻导体的影响。第二个问题是,每个导体不仅会受到EMP波的照射,还会受到虚拟源的影响,这些虚拟源是先前迭代中相邻导体的感应电压和电流。该方法的主要亮点是将每次迭代的感应电压和电流视为下一次迭代的虚拟分布式激励源,并且通过Baum-Liu-Tesche方程对积分进行了解析求解,从而获得了相当不错的效率在大多数实际情况下都可以快速收敛。广泛的验证结果表明,该方法可以有效地处理EMP耦合到具有大量导体的MTL的问题,并且解决方案的精度与迭代次数密切相关,从而可以在精度和时间之间灵活选择成本

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