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首页> 外文期刊>Expert systems with applications >An effective multi-start iterated greedy algorithm to minimize makespan for the distributed permutation flowshop scheduling problem with preventive maintenance
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An effective multi-start iterated greedy algorithm to minimize makespan for the distributed permutation flowshop scheduling problem with preventive maintenance

机译:一种有效的多启动迭代贪婪算法,可将PEPESPAN最小化预防性维护的分布式置换流程调度问题

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摘要

In recent years, distributed scheduling problems have been well studied for their close connection with multi-factory production networks. However, the maintenance operations that are commonly carried out on a system to restore it to a specific state are seldom taken into consideration. In this paper, we study a distributed permutation flowshop scheduling problem with preventive maintenance operation (PM/DPFSP). A multi-start iterated greedy (MSIG) algorithm is proposed to minimize the makespan. An improved heuristic is presented for the initialization and re-initialization by adding a dropout operation to NEH2 to generate solutions with a high level of quality and disperstiveness. A destruction phase with the tournament selection and a construction phase with an enhanced strategy are introduced to avoid local optima. A local search based on three effective operators is integrated into the MSIG to reinforce local neighborhood solution exploitation. In addition, a restart strategy is adpoted if a solution has not been improved in a certain number of consecutive iterations. We conducted extensive experiments to test the performance of the presented MSIG. The computational results indicate that the presented MSIG has many promising advantages in solving the PM/DPFSP under consideration.
机译:近年来,与多工厂生产网络密切相关,已经很好地研究了分布式调度问题。但是,常用于系统恢复到特定状态的维护操作很少考虑。在本文中,我们研究了预防性维护操作(PM / DPFSP)的分布式置换流程调度问题。提出了一种多开始迭代贪婪(MSIG)算法以最小化Makespan。通过向NEH2添加辍学操作来产生改进的启发式,以初始化和重新初始化,以产生具有高质量和消除性的高度的解决方案。引入了具有锦标赛选择的破坏阶段和具有增强策略的施工阶段,以避免本地最佳。基于三次有效运算符的本地搜索集成到MSIG中,以加强本地邻域解决方案开发。此外,如果在一定数量的连续迭代中未提高解决方案,则会逐步进行重启策略。我们进行了广泛的实验,以测试所提出的MSIG的性能。计算结果表明,所呈现的MSIG在解决正在考虑的PM / DPFSP方面具有许多有前途的优势。

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