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Fast fab scheduling rule selection by ordinal comparison-based simulation

机译:基于序数比较的模拟的快速FAB调度规则选择

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In this paper, an ordinal comparison (OC)-based simulation tool is designed and applied to achieve fast selection of wafer release and lot dispatching rule combination for fab operations. By comparing relative orders of performance among scheduling rules to a specified level of confidence, the OC approach reduces simulation time significantly. The tool consists of (1) a discrete event simulator, (2) a fab model database, (3) a library of scheduling rules, (4) a library of performance indices, (5) an ordinal comparator, and (6) a computation budget allocation. Rule selections from a set of prominent fab scheduling rules under frequently considered fab performance indices such as mean and variance of cycle time and smoothness are studied over various time horizons by using a benchmark fab model. Results demonstrate a potential improvement in efficiency over traditional simulation by two orders of magnitude. In addition to insights about static selection of rules over various objectives and time horizons, our simulation studies also indicate the necessity of dynamic selection.
机译:在本文中,设计和应用了序数比较(OC)的基础仿真工具,以实现FAB操作的快速选择晶片释放和批量调度规则组合。通过将调度规则之间的性能与指定级别的相对顺序进行比较,OC方法显着降低了模拟时间。该工具由(1)离散事件模拟器,(2)FAB模型数据库,(3)调度规则库,(4)性能指数库,(5)序数比较器,(6)a计算预算分配。通过使用基准Fab模型在各种时间范围内研究了经常考虑的FAB性能指标(例如循环时间和平滑度的平均值和平滑等均值和方差)的规则选择。结果表明,在传统模拟中的效率提高了两个数量级。除了在各种目标和时间视野上有关静态选择规则的静态选择外,我们的仿真研究还表明了动态选择的必要性。

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