基于总松弛传递图的机械故障柔性作业车间调度鲁棒调度

IF 12.2 1区 工程技术 Q1 ENGINEERING, INDUSTRIAL
Lingling Lv , Wenbing Song , Weiming Shen
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引用次数: 0

摘要

在实际的制造系统中,由于不同类型的故障,机器故障是间歇性发生的。因此,生成一个健壮的时间表是很重要的。研究了机械故障下的柔性作业车间调度问题,该问题需要考虑最大完工时间和调度的鲁棒性。定义了总松弛传递图的概念,以描述各工序间松弛消耗的连锁反应。提出了一种全松弛传输算法,用于更新图中节点和边的值。在此基础上,推导了质量稳健性替代测度和解性替代测度,引入了稳健性目标。采用两阶段混合遗传算法,结合鲁棒性替代测度生成鲁棒调度。现有文献中的六个稳健性替代措施用于与拟议的替代措施进行比较。实验结果表明,所提出的鲁棒性替代度量在重调度方案和预调度方案之间的最大完工时间偏差和操作完成时间方面具有优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Total slack transmission graph-based robust scheduling for flexible job shop scheduling under machine breakdowns
In actual manufacturing systems, machine failures happen intermittently due to different types of faults. Therefore, it is important to generate a robust schedule. This paper investigates a flexible job shop scheduling problem under machine breakdowns whereby makespan and the robustness of a schedule have to be considered. The concept of a total slack transmission graph is defined to describe the chain reactions of slack consumption between operations. A total slack transmission algorithm is proposed to update the values of the nodes and edges in the graph. Accordingly, a quality robustness surrogate measure and a solution surrogate measure are derived to introduce the objective of robustness. A two-stage hybrid genetic algorithm is adopted by combining the proposed robustness surrogate measures to generate robust schedules. Six robustness surrogate measures in the existing literature are used for comparisons against the proposed surrogate measures. The experimental results show the superiority of the proposed robustness surrogate measure concerning the deviation of makespan and the completion times of operations between the rescheduled solution and preschedule.
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来源期刊
Journal of Manufacturing Systems
Journal of Manufacturing Systems 工程技术-工程:工业
CiteScore
23.30
自引率
13.20%
发文量
216
审稿时长
25 days
期刊介绍: The Journal of Manufacturing Systems is dedicated to showcasing cutting-edge fundamental and applied research in manufacturing at the systems level. Encompassing products, equipment, people, information, control, and support functions, manufacturing systems play a pivotal role in the economical and competitive development, production, delivery, and total lifecycle of products, meeting market and societal needs. With a commitment to publishing archival scholarly literature, the journal strives to advance the state of the art in manufacturing systems and foster innovation in crafting efficient, robust, and sustainable manufacturing systems. The focus extends from equipment-level considerations to the broader scope of the extended enterprise. The Journal welcomes research addressing challenges across various scales, including nano, micro, and macro-scale manufacturing, and spanning diverse sectors such as aerospace, automotive, energy, and medical device manufacturing.
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