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Joint optimization of flowshop sequence-dependent manufacturing cell scheduling and preventive maintenance

机译:流程序列依赖性制造细胞调度的联合优化,预防性维护

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Considering the effects of machine breakdown and preventative maintenance (PM)on production scheduling in flowshop manufacturing cells, this paper focuses on investigating the joint optimization problem of flowshop sequence-dependent manufacturing cell scheduling and PM. A joint model is proposed and it aims to find the optimal production sequence of job families and individual jobs within each family and the optimal PM decisions before each job such that the sum of tardiness cost of jobs, PM and minimal repair cost of machines is minimized. A genetic algorithm-based approach is developed to solve the joint problem. Elitism strategy and local search are applied. The numerical results reveal the potential benefits of the consideration of PM and the integration of production scheduling and PM. Further experiments show elitism strategy and local search are important for improving the performance of the proposed approach.
机译:考虑到机器故障和预防性维护(PM)对流动制造电池生产调度的影响,本文侧重于调查流程序列依赖性制造细胞调度和PM的联合优化问题。提出了一个联合模型,它旨在找到每个家庭内的职位家庭和个人工作的最佳生产序列和每项工作前的最佳下午决定,使得工作,PM和机器的最小修复成本的迟到成本的总和最小化。开发了一种基于遗传算法的方法来解决联合问题。申请豁免策略和本地搜索。数值结果揭示了PM考虑的潜在好处和生产调度和PM的整合。进一步的实验表明精英战略,本地搜索对于提高提出的方法的性能很重要。

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