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Minimizing total earliness and tardiness on re-entrant batch processing machine with time windows

机译:在带有时间窗口的可重入批处理机上最大程度地减少早期和拖延

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The time window (TW) generalizes the concept of due date. The semiconductor wafer fabrication system is currently one of the most complex production processes, which has typical re-entrant batch processing machine (RBPM). RBPM is a bottleneck. This paper addresses a scheduling of RBPM with job-dependent TWs. According to a general modelling, an improved and new job-family-oriented modelling of the decomposition method that is based on the slack mixed integer linear programming is proposed. First, the complicated scheduling problem of RBPM is divided into sub-problems, which are executed circularly. Then, each one consists of updating, sequencing and dispatching. The objective is to minimize the total earliness and tardiness for job-dependent TWs. In order to evaluate the proposed modelling, the experiments are implemented on the real-time scheduling simulation platform and optimization toolkit ILOG CPLEX. The results show that the improved modelling obtains better solutions in less computation time.
机译:时间窗口(TW)概括了到期日的概念。半导体晶片制造系统是当前最复杂的生产过程之一,其具有典型的可重入批处理机(RBPM)。 RBPM是一个瓶颈。本文讨论了与作业相关的TW的RBPM调度。根据一般建模,提出了一种基于松弛混合整数线性规划的分解方法的改进的,面向作业族的新建模方法。首先,RBPM的复杂调度问题分为子问题,这些子问题循环执行。然后,每个步骤都包括更新,排序和调度。目的是最大程度地减少依赖工作的TW的总早期性和拖延性。为了评估提出的建模,在实时调度仿真平台和优化工具包ILOG CPLEX上进行了实验。结果表明,改进后的模型可以在更少的计算时间内获得更好的解决方案。

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