Parallel simulated annealing: an adaptive approach

J. Knopman, J. S. Aude
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引用次数: 11

Abstract

This paper analyses alternatives for the parallelization of the Simulated Annealing algorithm when applied to the placement of modules in a VLSI circuit considering the use of PVM on an Ethernet cluster of workstations. It is shown that different parallelization approaches have to be used for high and low temperature values of the annealing process. The algorithm used for low temperatures is an adaptive version of the speculative algorithm proposed in the literature. Within this adaptive algorithm, the number of processors allocated to the solution of the placement problem and the number of moves evaluated per processor between synchronization points change with the temperature. At high temperatures, an algorithm based on the parallel evaluation of independent chains of moves has been adopted. It is shown that results with the same quality of those produced by the serial version can be obtained when shorter length chains are used in the parallel implementation.
并行模拟退火:一种自适应方法
本文分析了当模拟退火算法应用于VLSI电路中模块放置时,考虑到在以太网工作站集群上使用PVM时的并行化替代方案。结果表明,对于退火过程的高低温值,必须采用不同的并行化方法。用于低温的算法是文献中提出的推测算法的自适应版本。在这种自适应算法中,分配给放置问题解决方案的处理器数量和每个处理器在同步点之间评估的移动次数随着温度的变化而变化。在高温下,采用了一种基于独立步法链并行求值的算法。结果表明,采用较短的链进行并行实现,可以获得与串行版本相同质量的结果。
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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