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A COUPLED ITERATIVE/DIRECT METHOD FOR EFFICIENT TIME-DOMAIN SIMULATION OF NONLINEAR CIRCUITS WITH POWER/GROUND NETWORKS

机译:一种耦合迭代/直接方法,用于功率/地网络的非线性电路有效时域模拟

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摘要

A coupled iterative/direct circuit analysis method is proposed for efficient SPICE-accurate time-domain simulation of nonlinear circuits with large-scale power/ground networks. The system under study is partitioned into a linear part including power/ground networks, a nonlinear part, and an interface between them. The part of power/ground networks is formulated by nodal analysis based on RCLK elements, and solved by an efficient conjugate gradient iterative method with an incomplete Cholesky decomposition preconditioner. The nonlinear circuit part is formulated by modified nodal analysis, and solved by the direct method as in SPICE. The iterative method and the direct method are coupled by a Gauss-Seidel like relaxation scheme with SPICE built-in varying time step-size numerical integration. How the condition number of a circuit matrix changes with time step-sizes is further studied. Experimental results on digital circuits with power/ground networks demonstrate that the proposed coupled iterative/direct method yields SPICE-like accuracy with orders of magnitude speedup for circuits with tens of thousands elements.
机译:提出了一种耦合迭代/直接电路分析方法,用于大型功率/地面网络的非线性电路的有效增量准确时域模拟。正在研究的系统被划分为包括电源/地网络,非线性部分和它们之间的接口的线性部分。功率/地面网络的一部分由基于RCLK元素的节点分析制定,并通过具有不完整的Cholesky分解前提者的有效共轭梯度迭代方法解决。非线性电路部分通过改性节点分析配制,并通过如香料中的直接方法解决。迭代方法和直接方法通过高斯-Seidel耦合,如松弛方案,其具有Spice内置变化的变化时间梯度数值积分。进一步研究了如何随着时间阶梯大小改变电路矩阵的条件数。具有电力/地面网络的数字电路的实验结果表明,所提出的耦合迭代/直接方法产生香料状精度,其数量级加速器,用于数万个元件的电路。

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