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Optimal One-Wafer Cyclic Scheduling of Time-Constrained Hybrid Multicluster Tools via Petri Nets

机译:时间受限的混合多集群工具的单晶圆循环最优调度

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Scheduling a multicluster tool with wafer residency time constraints is highly challenging yet important in ensuring high productivity of wafer fabrication. This paper presents a method to find an optimal one-wafer cyclic schedule for it. A Petri net is developed to model the dynamic behavior of the tool. By this model, a schedule of the system is analytically expressed as a function of robots’ waiting time. Based on this model, this paper presents the necessary and sufficient conditions under which a feasible one-wafer cyclic schedule exists. Then, it gives efficient algorithms to find such a schedule that is optimal. These algorithms require determining the robots’ waiting time via simple calculation and thus are efficient. Examples are given to show the application and effectiveness of the proposed method.
机译:计划具有晶圆驻留时间限制的多集群工具非常具有挑战性,但对于确保晶圆制造的高生产率很重要。本文提出了一种寻找最佳单晶圆循环计划的方法。开发了Petri网络以对工具的动态行为进行建模。通过这种模型,系统的时间表可以解析为机器人等待时间的函数。在此模型的基础上,本文提出了可行的单晶圆循环计划的必要条件和充分条件。然后,它提供了有效的算法来找到最佳计划。这些算法需要通过简单的计算来确定机器人的等待时间,因此效率很高。实例说明了该方法的应用和有效性。

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