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OPTIMAL SCHEDULING OF TWO-STAGE REENTRANT HYBRID FLOW SHOP FOR HEAT TREATMENT PROCESS

机译:两阶段重圈混合液流厂进行热处理过程的优化调度

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The reentrant hybrid flow shop for a heat treatment process is considered in this study. We consider job scheduling in a reentrant hybrid flow shop problem that consists of two statges in series. The first stage is washing, followed by heat treating in the second stage. Each job passes through the first and second stages, respectively, and then re-enter the first stage one more time. Since the first stage must process the jobs twice (with different processing times depending upon the type of the jobs), it becomes the bottleneck in this flow shop problem. To resolve this problem, the jobs needed to be better sequenced to balance the load among the first and the second stages. The objective is to minimize makespan of a set of jobs and increase the utilization of the both stages. This problem was formulated as a mixed integer program (MIP). The results from the data set show that the utilization of the second stage (heat treating) increased from 79.5% to their full capacity at 100%, exceeding the target set by the company at 95%.
机译:在本研究中考虑了用于热处理过程的重圈混合流量店。我们考虑在克莱特混合流店问题中调度,其中由串联的两个识别组成。第一阶段正在洗涤,然后在第二阶段进行热处理。每个作业分别通过第一和第二阶段,然后再次重新进入第一阶段。由于第一阶段必须两次处理作业(根据作业类型的处理时间),因此它成为该流量店问题中的瓶颈。为了解决这个问题,需要更好地测序的作业,以平衡第一阶段和第二个阶段之间的负载。目标是最大限度地减少一组工作的Mapspan,并增加两个阶段的利用率。将此问题称为混合整数程序(MIP)。数据集的结果表明,第二阶段(热处理)的利用率从79.5%增加到其全部产能以100%,超过公司设定的95%。

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