Computational Intelligence Based Selection and Placement of Decoupling Capacitors: A Comparative Study

Surendra Hemaram, J. N. Tripathi
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引用次数: 1

Abstract

In high-speed VLSI systems, decoupling capacitors are the key components to minimize power supply noise in power delivery networks. For efficiently maintaining power integrity in these systems, optimal selection and placement of decoupling capacitors is necessary. This paper presents a computational intelligence based generic framework to solve the industrial problem of decoupling capacitor optimization in a practical power delivery network using metaheuristic algorithms. The cumulative impedance of a power delivery network is minimized below the target impedance by optimal selection and placement of decoupling capacitors using the state-of-the-art metaheuristic algorithms. A comparative analysis of the performance of these algorithms is presented with the insights of practical implementation.
基于计算智能的去耦电容选择与放置的比较研究
在高速VLSI系统中,去耦电容器是电力输送网络中最大限度降低电源噪声的关键部件。为了在这些系统中有效地保持功率完整性,去耦电容器的最佳选择和放置是必要的。本文提出了一种基于计算智能的通用框架,利用元启发式算法解决实际输电网络中电容解耦优化的工业问题。通过使用最先进的元启发式算法优化选择和放置去耦电容器,使输电网络的累积阻抗降至目标阻抗以下。对这些算法的性能进行了比较分析,并给出了实际实现的见解。
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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