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Petri net decomposition approach to deadlock-free scheduling for dual-armed cluster tools

机译:Petri网分解方法用于双臂集群工具的无死锁调度

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Semiconductor cluster tools are used to process a variety of silicon wafers for the fabrication of microelectronic components. The cluster tool system consists of several loadlock modules, processing devices, and material handling armed robots for transferring wafers between them. In order to improve total throughput of cluster tools, a deadlock-free scheduling is highly required for various types of wafer flow patterns or various equipment configurations. In this paper, we propose a Petri net decomposition approach to the optimization of scheduling of dual-armed cluster tools for semiconductor manufacturing. A timed Petri net model is introduced to represent scheduling problems for dual-armed cluster tools. In order to obtain a deadlock-free schedule, we develop a deadlock avoidance control policy that restricts the marking to prevent unmarked siphons. The developed control policy is combined with the Petri net decomposition approach to generate a feasible solution. Computational results show the effectiveness of the proposed method combined with deadlock avoidance policy.
机译:半导体集群工具用于处理各种用于制造微电子元件的硅晶片。集群工具系统由几个装载锁定模块,处理设备和用于在它们之间转移晶片的物料搬运武装机器人组成。为了提高群集工具的总吞吐量,对于各种类型的晶圆流模式或各种设备配置,都非常需要无死锁的调度。在本文中,我们提出了一种Petri网分解方法来优化用于半导体制造的双臂集群工具的调度。引入了定时Petri网模型来表示双臂集群工具的调度问题。为了获得无死锁的时间表,我们开发了避免死锁的控制策略,该策略限制了标记以防止未标记的虹吸。所开发的控制策略与Petri网分解方法相结合以生成可行的解决方案。计算结果表明,该方法结合死锁避免策略是有效的。

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