A Domain Decomposition Approach for Assessment of Decoupling Capacitors in Practical PDNs

Ihsan Erdin;Ramachandra Achar
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Abstract

A domain decomposition method is proposed to evaluate the effectiveness of decoupling capacitors in practical power delivery networks (PDNs). The proposed method is based on the separation of a PDN into its local and nonlocal domains. The local domain is constituted by circuit components with the highest impact on the impedance of a specified power pin on a planar PDN. The rest of the PDN makes up the nonlocal domain, which could be of any planar shape. The nonlocal domain is characterized as a distributed circuit, preferably using a numerical electromagnetic (EM) simulator. The self-impedance of the pin depends on the placement configuration of capacitors in its surroundings. Using the pin impedance as a figure of merit, the optimal placement configuration is then sought in the local domain. The impact of the stationary domain is included in calculations as an indefinite impedance and the optimal placement configuration of capacitors is computed using an iterative approach. The proposed method avoids the use of a computationally intensive EM simulation at each iteration step, which significantly speeds up the analysis process.
一种用于评估实际PDN中去耦电容器的域分解方法
提出了一种域分解方法来评估实际电力输送网络中去耦电容器的有效性。所提出的方法是基于将PDN分为局部域和非局部域。局部域由对平面PDN上指定电源引脚的阻抗影响最大的电路组件构成。PDN的其余部分组成了非局部域,它可以是任何平面形状。非局部域被表征为分布式电路,优选地使用数值电磁(EM)模拟器。引脚的自阻抗取决于电容器在其周围环境中的放置配置。使用引脚阻抗作为优值,然后在局部域中寻求最佳布局配置。静止域的影响作为不确定阻抗包含在计算中,并且使用迭代方法计算电容器的最佳布置配置。所提出的方法避免了在每个迭代步骤使用计算密集型EM模拟,这显著加快了分析过程。
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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