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Optimizing makespan and stability risks in job shop scheduling

机译:优化作业商店调度中的Makespan和稳定性风险

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In real-world manufacturing environments, the execution of a schedule often encounters uncertain events, which will bring the risks of performance deterioration and production system instability. This study addresses the optimization of risks both in performance and stability for the job shop scheduling under random machine breakdowns, in which three objectives: makespan, makespan risk and stability risk are considered at the same time. The buffering approach under the limited predictive makespan will be proposed and used to generate predictive schedules, which allows inserting additional idle time to control the risks. By utilizing the available information about the relationship between the risks and the random machine breakdowns, we have developed two kinds of operation-block based buffering strategies. In order to meet the decision makers with different risk preferences, a multi-objective predictive scheduling algorithm with the proposed buffering strategies is developed to generate a Pareto solution set. Extensive experimental results indicate that, compared with the existing methods, the proposed method can provide a better Pareto solution set in terms of both the diversity and the convergence. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在现实世界制造环境中,执行时间表经常遇到不确定事件,这将带来性能恶化和生产系统不稳定的风险。本研究解决了在随机机器故障下的作业商店调度的性能和稳定性的情况下的风险的优化,其中三个目标:MakEspan,Makespan风险和稳定性风险在同一时间考虑。将提出有限预测性MakEsp的缓冲方法,并用于生成预测计划,允许插入额外的空闲时间来控制风险。通过利用有关风险与随机机器故障之间关系的可用信息,我们开发了基于两种的操作块的缓冲策略。为了满足具有不同风险偏好的决策者,开发了一种具有所提出的缓冲策略的多目标预测调度算法以产生帕累托解决方案集。广泛的实验结果表明,与现有方法相比,所提出的方法可以在多样性和收敛方面提供更好的帕累托解决方案。 (c)2020 elestvier有限公司保留所有权利。

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