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Rule based workload control in semiconductor manufacturing revisited

机译:重新定义半导体制造中的规则基于工作负载控制

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摘要

An essential task in manufacturing planning and control is to determine when to release orders to the shop floor. A prominent approach is the workload control (WLC) concept which originated from the idea of controlling flow times by controlling order releases. Despite recent advances in rule based WLC models, the recent semiconductor literature has neglected them, although it has been shown that they outperform most other periodic and continuous order release models. Therefore, we adapt the most successful rule based WLC model, the LUMS-COR approach and compare it with two approaches from the semiconductor manufacturing literature: Starvation Avoidance (SA) and ConLOAD approach. We include three pool sequencing rules, namely First-Come First-Served (FCFS), Earliest Due Date (EDD) and Critical Ratio (CR). We analyse their performance using a simulation model of a scaled-down wafer fabrication facility. The results show that, in comparison to the other two order release approaches, the LUMS-COR model yields lower total costs due to a more balanced shop and better timing performance which is robust across different settings. This suggests that the adapted LUMS-COR model has high potential to become a viable alternative to the rule based order release mechanisms used in semiconductor industry to date.
机译:制造规划和控制中的重要任务是确定何时释放订单到车间。一个突出的方法是通过控制订单释放来源自控制流时间的想法的工作负载控制(WLC)概念。尽管基于统治的WLC模型,但最近的半导体文献已经忽略了它们,尽管已经表明它们优于大多数其他周期性和连续订单释放模型。因此,我们适应基于规则的最成功的WLC模型,LUMS-COR方法并将其与来自半导体制造文献的两种方法进行比较:饥饿避免(SA)和持载方法。我们包括三个池排序规则,即首先第一次服务(FCF),最早的截止日期(EDD)和临界比(CR)。我们使用缩小晶片制造设施的仿真模型来分析它们的性能。结果表明,与其他两个订单释放方法相比,LUMS-COR模型由于更平衡的商店和更好的时序性能,因此较低的总成本和更好的时序性能。这表明,适应的LUMS-COR模型具有高潜力,成为迄今为止半导体工业中使用的基于规则的订单释放机制的可行替代品。

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