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The throughput rate of serial production lines with deterministic process times and random setups: Markovian models and applications to semiconductor manufacturing

机译:确定性工艺时间和随机设置的串行生产线的吞吐率:马尔可夫模型及其在半导体制造中的应用

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We conduct exact analysis of serial production lines with deterministic service durations and various classes of random state-dependent setups between customers. Our focus is on assessing the production rate, or just-in-time (JIT) throughput We demonstrate that such systems can be modeled as a Markov chain and consider various types of setups inspired by clustered photolithography tools in semiconductor manufacturing. We deduce when exact closed form expressions for the production rate are possible and when a numeric solution to the Markov chain balance equations are required. As these systems have shown promise for modeling process bound clustered photolithography tools, we study their accuracy versus detailed simulation for predicting the tool throughput. Various practical features such as the capacity of a pre-scan buffer and batch customers (to model wafer lots) are investigated.
机译:我们对具有确定性服务期限的串行生产线以及客户​​之间各种取决于状态的随机设置进行精确分析。我们的重点是评估生产率或即时(JIT)吞吐量。我们证明了可以将此类系统建模为马尔可夫链,并考虑半导体制造中群集光刻工具所启发的各种类型的设置。我们推断出何时可以使用精确的封闭式表达式表示生产率,以及何时需要对Markov链平衡方程进行数值求解。由于这些系统已显示出对建模过程约束的群集光刻工具进行建模的希望,因此,我们将研究其准确性与详细的仿真方法之间的关系,以预测工具的吞吐量。研究了各种实用功能,例如预扫描缓冲区的容量和批量客户(用于模拟晶圆批次)。

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