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A Markovian approach to determining optimum process target levels for a multi-stage serial production system

机译:确定多阶段批量生产系统的最佳过程目标水平的马尔可夫方法

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摘要

Consider a production system where products are produced continuously and screened for conformance with their specification limits. When product performance falls below a lower specification limit or above an upper limit, a decision is made to rework or scrap the product. The majority of the process target models in the literature deal with a single-stage production system. In the real-world industrial settings, however, products are often processed through multi-stage production systems. If the probabilities associated with its recurrent, transient and absorbing states are known, we can better understand the nature of a production system and thus better capture the optimum target for a process. This paper first discusses the roles of a Markovian approach and then develops the general form of a Markovian model for optimum process target levels within the framework of a multi-stage serial production system. Numerical examples and sensitivity analysis are performed.
机译:考虑一个生产系统,在该系统中连续生产产品并进行筛选以符合其规格限制。当产品性能低于规格下限或高于上限时,将决定返工或报废产品。文献中的大多数过程目标模型都涉及单阶段生产系统。但是,在现实世界的工业环境中,产品通常是通过多阶段生产系统进行加工的。如果知道与其重复,瞬态和吸收状态相关的概率,我们可以更好地了解生产系统的性质,从而更好地捕获过程的最佳目标。本文首先讨论了马尔可夫方法的作用,然后在多阶段批量生产系统的框架内为最佳过程目标水平开发了马尔可夫模型的一般形式。进行了数值示例和灵敏度分析。

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