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首页> 外文期刊>Semiconductor Manufacturing, IEEE Transactions on >Optimization of Re-Entrant Hybrid Flows With Multiple Queue Time Constraints in Batch Processes of Semiconductor Manufacturing
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Optimization of Re-Entrant Hybrid Flows With Multiple Queue Time Constraints in Batch Processes of Semiconductor Manufacturing

机译:半导体制造批处理中具有多个排队时间约束的可重入混合流的优化

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摘要

This paper proposes optimization methods of re-entrant hybrid flows with multiple queue time constraints in batch processes of semiconductor manufacturing. A smoothing flow concept and a dispatching rule for the re-entrant flows called “re-entrant flow smoothing” [REFS(X)] and a loading rule for the processes with multiple queue time constraints called “synchronized control of kanban and buffer sizes” (SCKB) were developed and evaluated. These optimization methods aimed to both maximize the throughput ratio of quality products and minimize the lead time of work-in-process. A three-view modeling to combine the objective functions was created to respond to an actual problem scale. For a manufacturing process consisting of five flows and four re-entrant flows with seven queue time constraints, SCKB–REFS(X) improved the throughput ratio of the quality products by 20.0% compared with first-come first-served (FCFS)–conditional time in 40 days. The mean lead time was also shortened by 60.1% because SCKB–REFS(X) could reduce the setup rate by 83.1% and improve the overall equipment effectiveness by 41.9%, though the performance of minimum inventory variability scheduler application rules is almost the same as that of basic FCFS. REFS–SCKB(X) computed the problem in 4 s or less.
机译:本文提出了一种在半导体制造批处理中具有多个排队时间约束的可重入混合流的优化方法。用于重入流的平滑流概念和调度规则称为“重入流平滑” [REFS(X)],具有多个队列时间约束的进程的加载规则称为“看板和缓冲区大小的同步控制” (SCKB)的开发和评估。这些优化方法旨在最大程度地提高优质产品的吞吐率,并最大程度地缩短在制品时间。创建了一个三视图模型来结合目标函数,以响应实际的问题规模。对于由五个流程和四个折返流程组成且具有七个排队时间限制的制造过程,与先来先得(FCFS)-有条件的相比,SCKB-REFS(X)将优质产品的吞吐率提高了20.0%时间在40天之内。尽管最小库存可变性调度程序应用规则的性能几乎与SCKB–REFS(X)可以将设置率降低83.1%,并将整体设备效率提高41.9%,但平均交货时间也缩短了60.1%。基本的FCFS。 REFS–SCKB(X)在4 s或更短的时间内即可计算出问题。

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