Nonlinear block-type leapfrog scheme for the fast simulation of multiconductor transmission lines with nonlinear drivers and terminations

T. Sekine, H. Asai
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引用次数: 2

Abstract

This paper describes a fast transient simulation technique based on a block-type leapfrog scheme for general nonlinear circuits. In existing leapfrog-based techniques, there is a restriction on dealing with nonlinear elements in the circuit. On the other hand, the block-type leapfrog scheme is suitable for the simulation of tightly coupled networks such as the equivalent circuit of multiconductor transmission lines (MTLs). In this work, we extend the block-type leapfrog scheme to incorporate generalized nonlinear elements, which have two or more terminals such as MOSFETs. The proposed method partitions the circuit into some kinds of local blocks, and locally dense and nonlinear calculations are effectively confined within each relatively-small block. Example simulations of MTLs with nonlinear drivers and terminations show that the leapfrog-based nonlinear solver is much more efficient than HSPICE.
具有非线性驱动器和终端的多导体传输线的非线性块型跨越式快速仿真方案
针对一般非线性电路,提出了一种基于分块跳越方案的快速瞬态仿真技术。在现有的基于跨越式的技术中,在处理电路中的非线性元件方面存在限制。另一方面,分块式跳越方案适用于多导体传输线等效电路等紧密耦合网络的仿真。在这项工作中,我们扩展了块型跨越式方案,以纳入具有两个或多个终端的广义非线性元件,如mosfet。该方法将电路划分为若干类型的局部块,将局部密集和非线性计算有效地限制在每个相对较小的块内。具有非线性驱动和终端的mtl仿真实例表明,基于跨越式的非线性解算器比HSPICE要高效得多。
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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