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Work-in-Process Balancing Control in Global Fab Scheduling for Semiconductor Manufacturing

机译:半导体制造中的全局FAB调度中的过程平衡控制

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This paper addresses the problem of controlling the Work-In-Process (WIP) in semiconductor manufacturing by using a global scheduling approach. Global fab scheduling steers scheduling decisions at work-center level by providing objective in terms of production targets, i.e. product quantities to complete for each operation and at each period on a scheduling horizon. A WIP balancing strategy is proposed to minimize the product mix variability in terms of throughput and cycle time. This strategy is enforced using a global scheduling optimization model which is formulated as a linear programming model. The global scheduling model is coupled with a generic multi-method simulation model for evaluation purpose. Computational results on industrial data show that the WIP balancing strategy provides a better control of the WIP in the system and helps to minimize product mix variability while maintaining high throughput.
机译:本文通过使用全局调度方法解决了通过控制半导体制造中的过程(WIP)的问题。全球FAB调度Steers通过在生产目标方面提供目标,即在调度地平线上完成每个操作的产品数量和每个时期的产品数量。提出了一种WIP平衡策略,以尽量减少产品混合变异性和循环时间。使用作为线性编程模型的全局调度优化模型强制执行该策略。全局调度模型与用于评估目的的通用多方法模拟模型耦合。工业数据的计算结果表明,WIP平衡策略提供了更好地控制系统中的WIP,并有助于最小化产品混合可变性,同时保持高吞吐量。

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