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A Parallel Genetic Algorithm For Dynamic Cell Formation In Cellularmanufacturing Systems

机译:细胞制造系统中动态细胞形成的并行遗传算法

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摘要

Instead of using expensive multiprocessor supercomputers, parallel computing can be implemented on a cluster of inexpensive personal computers. Commercial accesses to high performance parallel computing are also available on the pay-per-use basis. However, literature on the use of parallel computing in production research is limited. In this paper, we present a dynamic cell formation problem in manufacturing systems solved by a parallel genetic algorithm approach. This method improves our previous work on the use of sequential genetic algorithm (GA). Six parallel GAs for the dynamic cell formation problem were developed and tested. The parallel GAs are all based on the island model using migration of individuals but are different in their connection topologies. The performance of the parallel GA approach was evaluated against a sequential GA as well as the off-shelf optimization software. The results are very encouraging. The considered dynamic manufacturing cell formation problem incorporates several design factors. They include dynamic cell configuration, alternative routings, sequence of operations, multiple units of identical machines, machine capacity, workload balancing, production cost and other practical constraints.
机译:代替使用昂贵的多处理器超级计算机,可以在廉价的个人计算机集群上实现并行计算。也可以按使用量付费获得对高性能并行计算的商业访问。但是,有关在生产研究中使用并行计算的文献有限。在本文中,我们提出了一种通过并行遗传算法解决的制造系统中动态细胞形成问题。这种方法改进了我们先前在使用顺序遗传算法(GA)方面的工作。开发并测试了用于动态细胞形成问题的六个并行GA。并行GA均基于使用个体迁移的孤岛模型,但它们的连接拓扑不同。针对顺序GA和现成的优化软件对并行GA方法的性能进行了评估。结果非常令人鼓舞。所考虑的动态制造单元形成问题包括几个设计因素。它们包括动态单元配置,替代路由,操作顺序,同一台机器的多个单元,机器容量,工作负载平衡,生产成本和其他实际限制。

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