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Evaluating Parallel Simulated Evolution Strategies for VLSI Cell Placement

机译:评估VLSI单元放置的并行模拟演进策略

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Simulated Evolution (SimE) is an evolutionary metaheuristic that has produced results comparable to well established stochastic heuristics such as SA, TS and GA, with shorter runtimes. However, for optimization problems with a very large set of elements, such as in VLSI cell placement and routing, runtimes can still be very large and parallelization is an attractive option for reducing runtimes. Compared to other metaheuristics, parallelization of SimE has not been extensively explored. This paper presents a comprehensive set of parallelization approaches for SimE when applied to multiobjective VLSI cell placement problem. Each of these approaches are evaluated with respect to SimE characteristics and the constraints imposed by the problem instance. Conclusions drawn can be extended to parallelization of SimE when applied to other optimization problems.
机译:模拟进化(SimE)是一种进化的元启发式方法,其产生的结果可与运行良好的随机启发式方法(如SA,TS和GA)相媲美,并且运行时间较短。但是,对于具有大量元素的优化问题(例如在VLSI单元放置和布线中),运行时间仍然可能很大,并且并行化是减少运行时间的诱人选择。与其他元启发式方法相比,尚未广泛探讨SimE的并行化。当应用于多目标VLSI单元放置问题时,本文介绍了SimE的一套全面的并行化方法。针对SimE特性和问题实例施加的约束,评估了每种方法。当将其应用于其他优化问题时,得出的结论可以扩展到SimE的并行化。

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