A Parallel P2P Branch-and-Bound Algorithm for Computational Grids

A. Bendjoudi, N. Melab, E. Talbi
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引用次数: 7

Abstract

Solving exactly Combinatorial Optimization Problems (COPs) using a Branch-and-Bound algorithm requires a huge amount of computational resources. The efficiency of such algorithm can be improved by distributing at large scale the computation required by the exploration of the search tree. In this paper, we propose ParallelBB, which is a P2P-based parallelization of the Branch-and-Bound algorithm for the computational Grid. The algorithm has been implemented using the ProActive distributed object Grid middleware. The algorithm has been applied to a mono- criterion permutation flow-shop problem and promisingly experimented on the Grid5000 computational Grid.
计算网格的并行P2P分支定界算法
利用分支定界算法精确求解组合优化问题需要大量的计算资源。通过大规模地分配搜索树的搜索量,可以提高算法的效率。本文提出了一种基于p2p的并行化计算网格分支定界算法ParallelBB。该算法采用主动分布式对象网格中间件实现。该算法已应用于单准则置换流车间问题,并在Grid5000计算网格上进行了有希望的实验。
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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