Optimal Clock Skew Scheduling And Topology Design Tolerant To Delay Uncertainty Using Genetic Algorithms

Seyed Saeed Hashemi, Nasser Masoumi, Carrie L. Lucas · 2006

This paper presents an optimal clock skew scheduling tolerant to delay uncertainty by using genetic algorithms. In using genetic algorithm two optimization problems are aimed: 1) clock period minimization and 2) tolerance maximization to the delay uncertainty due to the process and environmental parameters variations (PEPV). Application of the proposed clock skew scheduling and topology design on the test circuits demonstrates clock distribution networks with noticeably improved tolerance to delay uncertainty, up to plusmn20% tolerance to power supply variations is reached and the most critical datapath sensitivity to PEPV is improved by a factor of 7, while the system performance degradation is small

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