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Optimizing Lot Priority Rules in Semiconductor Production Systems

机译:在半导体生产系统中优化批次优先级规则

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摘要

Production processes in the semiconductor industry (e.g. wafer production) are very complex. They are characterized by a high product variety, low-volume production, high cycle time variability and diversity in lot priorities. Low prices and low profit margins lead to immense competitive pressure and semiconductor manufacturers have to bring their products to the market with short lead times according to their contractual agreements. To meet customer requirements in terms of quantity, cost and lead time, high priority lots are pushed through the factory as quickly as possible. This prioritization of certain lots affects the other lots in the line. This results in longer lead times for the non-priority lots and may require additional setup operations. We build a queueing network model to model the manufacturing system under study and develop a hybrid decomposition method to analyse it. We optimize diverse configurations of the system under different contractual agreements regarding lead times/penalty costs.
机译:半导体工业中的生产过程(例如晶片生产)非常复杂。它们的特点是产品种类繁多,产量低,周期时间可变性高以及批次优先级高。低价格和低利润率导致巨大的竞争压力,半导体制造商必须根据他们的合同协议,以较短的交货时间将产品推向市场。为了满足客户在数量,成本和交货时间方面的要求,高优先级批次将尽快通过工厂。某些批次的优先顺序会影响生产线中的其他批次。这样会导致非优先批次的交货时间更长,并且可能需要其他设置操作。我们建立了一个排队网络模型来对正在研究的制造系统进行建模,并开发了一种混合分解方法对其进行分析。我们根据有关交货时间/罚款成本的不同合同协议优化系统的各种配置。

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