Simulation and sensitivity analysis of transmission line circuits by the characteristics method

J. Mao, Janet Roveda, E. Kuh
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引用次数: 4

Abstract

In this paper we use the method of characteristics to derive a new simulation model of lossy transmission lines, and we present the sensitivity analysis in the time-domain. The simulation model is as fast as the recursive convolution model based on moment matching and Pade' approximation, but does not have the stability problem. The sensitivity analysis model is particularly useful for transmission line circuits containing nonlinear elements, and is believed to be the first time-domain model. Also we show that any nonlinear circuit element has a very simple linear model in sensitivity analysis. Furthermore, we demonstrate that for any circuits, the modified nodal admittance (MNA) matrices in simulation and in sensitivity analysis are the same, therefore no LU decomposition is needed in sensitivity analysis. The contributions in this paper have been implemented into a general-purpose program CSSC which shows excellent accuracy and efficiency in both simulation and sensitivity analysis of transmission line circuits.
传输线电路的特性法仿真及灵敏度分析
本文利用特性法推导了一种新的有耗传输线仿真模型,并在时域上进行了灵敏度分析。仿真模型的速度与基于矩匹配和Pade近似的递推卷积模型相当,但不存在稳定性问题。灵敏度分析模型对包含非线性元件的传输线电路特别有用,被认为是第一个时域模型。在灵敏度分析中,我们还证明了任何非线性电路元件都有一个非常简单的线性模型。此外,我们证明了对于任何电路,修正节点导纳(MNA)矩阵在模拟和灵敏度分析中是相同的,因此在灵敏度分析中不需要进行LU分解。本文的成果已在通用程序CSSC中实现,该程序在传输线电路的仿真和灵敏度分析方面都显示出优异的准确性和效率。
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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