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Robust production control policies considering WIP balance and setup time in a semiconductor fabrication line

机译:考虑半导体生产线中在制品平衡和准备时间的稳健生产控制策略

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This paper discusses the problem of determining workload in a semiconductor fabrication line for providing robust production control. A mathematical model is proposed to determine the amount of wafers to be processed on equipment in a photolithography process where the setup time is incurred if the type of wafers is changed on the equipment. The objective of the model is to control the fabrication line by maintaining the target work-in-process (WIP) level as close as possible for the purpose of short cycle time and by minimizing the setup time loss for maximal throughput. The proposed model is formulated using mixed integer programming (MIP) to minimize the weighted sum of two objective functions. A heuristic approach is suggested using linear relaxation and its adjustment. Performances are evaluated for the optimal solution with computational cost and for the heuristics. It is shown that the heuristics give good solutions which are 10% away, on average, from the optimal solution, but which can be obtained in a few seconds.
机译:本文讨论了确定半导体生产线中的工作量以提供可靠的生产控制的问题。提出了一种数学模型,以确定在光刻过程中要在设备上处理的晶片数量,如果在设备上改变了晶片的类型,则需要建立时间。该模型的目的是通过保持目标在制品(WIP)水平尽可能短的目的来控制生产线,以缩短周期时间,并最大程度地减少设置时间损失以实现最大的生产量。所提出的模型是使用混合整数规划(MIP)来制定的,以最小化两个目标函数的加权和。建议使用线性松弛及其调整的启发式方法。针对具有计算成本的最佳解决方案和启发式方法评估性能。结果表明,启发式方法给出的最佳解决方案与最佳解决方案的平均距离为10%,但可以在几秒钟内获得。

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