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The relationship between yield and flow time in a production system under inspection

机译:检验中的生产系统中产量与流动时间之间的关系

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This work studies the relationship between Yield and Flow Time (FT) in a production system monitored by in-line inspection. It originates in the known semiconductors Yield vs. FT trade-off premise, but can be adapted to other industries. We challenge the common premise, and suggest an alternate analytical model to demonstrate this relationship. The model relies on a simplified production system that represents a repetitive segment in a production line. It illustrates that rising inspection rate increases both Yield and FT while exhibiting a trade-off. However with further growing inspection rate the Yield reaches a maximum and then starts to decline, while FT continues to increase. The Yield decline is explained by longer delay of inspection results which trigger the repair of an out-of-control machine. Clearly, lower Yield performance and higher FT are undesired. Our work defines this relationship with the analytical model and validates it with simulation. The model can be embedded in a decision support tool to pre-determine the inspection policy, while simultaneously considering Yield and FT.
机译:这项工作研究了通过在线检查监控的生产系统中的产量与流动时间(FT)之间的关系。它起源于已知的半导体良率与FT折衷的前提,但可以适用于其他行业。我们对共同的前提提出了挑战,并提出了另一种分析模型来证明这种关系。该模型依赖于简化的生产系统,该系统代表生产线中的重复段。它说明了检查率的提高同时提高了良率和FT,同时又表现出了权衡。但是,随着检查率的进一步提高,收益率达到最大值,然后开始下降,而FT则继续增加。产量下降的原因是检查结果的延迟时间较长,这会触发维修失控的机器。显然,不希望有较低的产率性能和较高的FT。我们的工作定义了这种与分析模型的关系,并通过仿真对其进行了验证。该模型可以嵌入到决策支持工具中以预先确定检查策略,同时考虑良率和FT。

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