基于拉格朗日松弛的半导体晶圆制造分层生产调度环境设计

T.-K. Hwang, Shi-Chung Chang
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引用次数: 37

摘要

本文描述了一个两级分层生产调度引擎的设计,该引擎捕捉了大规模生产半导体制造工厂(fab)的工业实践。这两个层次由中期调度器和短期调度器组成,目的是实现整个工厂目标和当地车间业务之间的协调。中期调度员通过适当设置每日生产目标数量和参考在制品(WIP)水平来确保按时交货,从而最大化加权生产流程,减少整个晶圆厂的周期时间。中期调度结果由短期调度程序进一步分解为更详细的调度。除了在中期调度中具有相同的一组操作约束外,短期调度还考虑了批处理效应。在跟踪每日生产目标和中期调度指定的参考在制品水平的同时,使加权生产流量最大化。调度器采用一种解决方案方法,其中包含三个成分;拉格朗日松弛法、网络流优化和Frank-Wolfe方法。调度工具的计算效率相当高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a Lagrangian relaxation-based hierarchical production scheduling environment for semiconductor wafer fabrication
This paper describes the design of a two-level hierarchical production scheduling engine, which captures the industrial practice of mass production semiconductor fabrication factories (fabs). The two levels of the hierarchy consist of a mid-term scheduler and a short-term scheduler, and are aimed at achieving coordination between the fab-wide objectives and local shop-floor operations. The mid-term scheduler maximizes weighted production flow to reduce the fab-wide cycle time and ensure on-time delivery by properly setting daily production target volumes and reference work-in-process (WIP) levels for individual part types and stages. Mid-term scheduling results are further broken down into more detailed schedules by the short-term scheduler. In addition to the same set of operational constraints in mid-term scheduling, the short-term scheduler includes the consideration of batching effects. It maximizes weighted production flow while tracking the daily production targets and the reference WIP levels specified by mid-term scheduling. The schedulers adopt a solution methodology with three ingredients; the Lagrange relaxation approach, network flow optimization, and Frank-Wolfe method. The scheduling tool is reasonably efficient in computation.
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