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A novel integrated condition-based maintenance and stochastic flexible job shop scheduling problem: simulation-based optimization approach

机译:一种新的基于状态的集成维护和随机柔性作业车间调度问题:基于仿真的优化方法

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摘要

Integrated consideration of production planning and maintenance processes is a real world assumption. Specifically, by improving the monitoring equipment such as various sensors or product-embedded information devices in recent years, joint assessment of these processes is inevitable for enhancing the level of the system optimization. By means of this equipment, managers can benefit from a condition-based maintenance (CBM) for monitoring and managing their system. The chief aim of the paper is to develop a stochastic maintenance problem based on CBM activities engaged with a complex applied production problem called flexible job shop scheduling problem (FJSP). This integrated problem considers two maintenance scenarios in terms of corrective maintenance (CM) and preventive maintenance (PM). The activation of scenario is done by monitoring the degradation condition of the system and comparing the associated value by predetermined PM and CM levels. Moreover, to make it more realistic, the developed problem allows breakdown of the system between inspection intervals. The event time and duration of performing the maintenance activities are also considered stochastic. The developed methodology copes with high stochastic complexity of proposed problem through simulation-based optimization (SBO) approach, which works based on harmony search optimization algorithm. The developed items of SBO are discussed on different generated test problems and assessed through statistical methods and new visualization approach. Numerical example shows that the proposed method is practical for proposed integrated CBM and FJSP problem. It also offers a basis for any implementation of CBM on production problems.
机译:对生产计划和维护过程的综合考虑是现实世界的假设。具体而言,通过近年来改进诸如各种传感器或产品嵌入式信息设备之类的监视设备,对这些过程进行联合评估对于提高系统优化水平是不可避免的。通过此设备,管理人员可以从基于状态的维护(CBM)中受益,以监视和管理他们的系统。本文的主要目的是基于CBM活动开发与复杂的应用生产问题(称为柔性作业车间调度问题(FJSP))有关的随机维护问题。此综合问题考虑了两种维护方案:纠正性维护(CM)和预防性维护(PM)。通过监视系统的降级条件并通过预定的PM和CM水平比较关联的值来完成方案的激活。而且,为了使其更加现实,所开发的问题使得检查间隔之间的系统崩溃。维护活动的发生时间和持续时间也被认为是随机的。所开发的方法通过基于和声搜索优化算法的基于仿真的优化(SBO)方法来解决所提出问题的高随机性。 SBO的已开发项目针对不同的生成测试问题进行了讨论,并通过统计方法和新的可视化方法进行了评估。数值算例表明,该方法对于提出的煤层气和FJSP综合问题是可行的。它还为在生产问题上实施煤层气提供了基础。

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