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Time-domain analysis of lossy multiconductor transmission lines based on the Lax–Wendroff technique

机译:基于Lax–Wendroff技术的有损多导体传输线的时域分析

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Taking advantage of the hyperbolic characteristics of the telegrapher equations, this paper applies the Lax–Wendroff technique, usually used in fluid dynamics, to transmission line analysis. A second-order-accurate Lax–Wendroff difference scheme for the telegrapher equations for both uniform and nonuniform transmission lines is derived. Based on this scheme, a new method for analyzing lossy multiconductor transmission lines which do not need to be decoupled is presented by combining with matrix operations. Using numerical experiments, the proposed method is compared with the characteristic method, the fast Fourier transform (FFT) approach, and the Lax–Friedrichs technique. With the presented method, a circuit including lossy multiconductor transmission lines is analyzed and the results are consistent with those of PSPICE. The nonlinear circuit including nonuniform lossy multiconductor transmission lines is also computed and the results are verified by HSPICE. The proposed method can be conveniently applied to either linear or nonlinear circuits which include general transmission lines, and is proved to be efficient.
机译:利用电报方程的双曲线特性,本文将通常用于流体动力学的Lax–Wendroff技术应用于传输线分析。推导了用于均匀和非均匀传输线的电报方程的二阶精确Lax-Wendroff差分方案。在此方案的基础上,结合矩阵运算,提出了一种无需去耦的有损多导体传输线分析新方法。通过数值实验,将该方法与特征方法,快速傅里叶变换(FFT)方法和Lax–Friedrichs技术进行了比较。利用所提出的方法,分析了包括有损多导体传输线的电路,其结果与PSPICE的结果一致。还计算了包含非均匀有损多导体传输线的非线性电路,并通过HSPICE验证了结果。所提出的方法可以方便地应用于包括一般传输线的线性或非线性电路,并且被证明是有效的。

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