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A MPI-Based Parallel FDTD-TL Method for the EMI Analysis of Transmission Lines in Cavity Excited by Ambient Wave

机译:一种基于MPI的平行FDTD-TL方法,用于环境波激发腔内传输线的EMI分析

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摘要

At present, the existing electromagnetic interference (EMI) analysis methods for the cavity with transmission lines (TLs) often need a large number of meshes to satisfy certain accuracy, which would seriously affect the calculation time, memory, and efficiency. Therefore, this paper presents a time-domain parallel method consisting of finite-difference time-domain method, TL equations, and message passing interface library. This method has two obvious advantages: one is that it does not need to mesh the TLs, which can reduce a lot of computational memory; and the other is that it can run on multiple processors or computers to save a lot of computational time. In order to verify the accuracy and validity of this method, the intracavity transmission of multiconductor TLs and coaxial cable under ambient wave excitation is simulated numerically and compared with the traditional method. The results show that the method can be well applied for the EMI analysis of the TLs in cavity under ambient excitation.
机译:目前,具有传输线(TLS)的现有电磁干扰(EMI)分析方法通常需要大量网格来满足某些准确性,这会严重影响计算时间,存储器和效率。因此,本文介绍了由有限差分时间域方法,TL方程和消息传递接口库组成的时域并行方法。这种方法具有两个明显的优势:一个是它不需要网格来筛选,这可以减少大量的计算内存;另一方面,它可以在多个处理器或计算机上运行,​​以节省大量的计算时间。为了验证该方法的准确性和有效性,在数值上模拟了在环境波激励下的多导体TLS和同轴电缆的腔内传输,并与传统方法进行比较。结果表明,在环境激发下,该方法可以很好地应用于腔内TLS的EMI分析。

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