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Efficient DC analysis of RVJ circuits for moment and derivative computations of interconnect networks

机译:RVJ电路的有效DC分析,用于互连网络的矩和导数计算

摘要

In this article we present a method for analysis of electrical networks containing positive resistors, voltage sources and current sources. We lay emphasis on computational aspects like size and positive definiteness of the resulting matrix. Currently the most popular method for analysis of such circuits is modified nodal analysis, which always yields a nonpositive definite matrix whenever voltage sources are present in the circuit. Our method constructs two minors of the underlying graph of the network and then uses these for writing KCE and KVE, thereby resulting in a symmetric positive definite system of equations of smaller size. We exploit the presence of voltage sources, and hence usually get a block diagonal structure in the matrix to be factored. Though our method is general enough and performs better than MNA for all DC circuits, it is specifically aimed towards solving DC circuits encountered during interconnect analysis.
机译:在本文中,我们提出了一种用于分析包含正电阻器,电压源和电流源的电网的方法。我们将重点放在计算方面,例如所得矩阵的大小和正定性。当前,用于此类电路分析的最流行方法是改进的节点分析,只要电路中存在电压源,该方法总是会生成一个非正定矩阵。我们的方法构造了网络基础图的两个次要部分,然后使用它们来编写KCE和KVE,从而产生了一个对称的正定方程组,其尺寸较小。我们利用电压源的存在,因此通常在矩阵中得到要分解的块对角线结构。尽管我们的方法足够通用,并且在所有直流电路中的性能都优于MNA,但它的目的是解决互连分析过程中遇到的直流电路。

著录项

  • 作者

    BATTERYWALA SH; NARAYANAN H;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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