多功率域分层电网综合设计

Chieh-Jui Lee, Shih-Ying Liu, Chuan-Chia Huang, Hung-Ming Chen, Chang-Tzu Lin, Chia-Hsin Lee
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引用次数: 4

摘要

本文提出了一种综合优化多功率域电网设计的方法。提出了一种具有休眠晶体管的电网结构。采用修正节点分析方法将电网数值模拟为RC网络,并采用共轭梯度法求解。针对红外下降效应,提出了一种基于模拟退火的优化技术,在满足给定红外下降约束的情况下,使总功率条面积最小。考虑到多个功率域,将给定的功率域用树状结构表示,并递归地对每个功率域的电网进行分层综合和优化。将该方法与商业设计工具相结合,并在实际设计案例中进行了实验验证。为了确保我们方法的实用性,对最新的数字设计商业工具进行了评估。设计数据和参数提取使用开放获取。我们的算法的结果被反馈到最新的商业工具进行最终的IR和EM分析。我们的算法在工业测试用例和学术MCNC基准上进行了测试。与传统的P/G网络相比,使用我们的电网综合可以在满足最大10% ir下降约束的情况下,使总P/G面积减少31%-35%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hierarchical power network synthesis for multiple power domain designs
In this paper, we propose a methodology that synthesize and optimize the power network for design with multiple power domains. An architecture is presented to represent the power network with presence of sleep transistors. The power network is numerically modeled to RC network using Modified Nodal Analysis and solved using Conjugate Gradient Method. Regarding to IR drop effect mitigation, an optimization technique is proposed based on Simulated Annealing that minimize total power stripe area while satisfying a given IR drop constraint. In consideration of multiple power domains, the given power domains are represented in tree-like structure and our algorithm is recursively applied to synthesize and optimize the power network for each power domain in a hierarchical fashion. The proposed methodology is integrated to commercial design tool and experimented on real design case for evaluation. To ensure practical aspect of our approach, evaluation is performed on latest digital design commercial tool. Design data and parameters are extracted using Open Access. The result of our algorithm is fed back to latest commercial tool for final IR and EM analysis. Our algorithm is tested on both industrial testcase and academic MCNC benchmark. Comparing to conventional P/G network, using our power network synthesis can achieve 31%-35% reduction in total P/G area while satisfying maximum 10% IR-drop constraint.
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