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首页> 外文期刊>Automation Science and Engineering, IEEE Transactions on >Real-Time Scheduling of Single-Arm Cluster Tools Subject to Residency Time Constraints and Bounded Activity Time Variation
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Real-Time Scheduling of Single-Arm Cluster Tools Subject to Residency Time Constraints and Bounded Activity Time Variation

机译:单臂群集工具的实时调度受驻留时间约束和活动时间有限制的约束

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摘要

It is very challenging to schedule cluster tools subject to wafer residency time constraints and activity time variation. This work develops a Petri net model to describe the system and proposes a two-level real-time scheduling architecture. At the lower level, a real-time control policy is used to offset the activity time variation as much as possible. At the upper level, a periodical off-line schedule is derived under the normal condition. This work presents the schedulability conditions and scheduling algorithms for an off-line schedule. The schedulability conditions can be analytically checked. If they are satisfied, an off-line schedule can be analytically found. The off-line schedule together with a real-time control policy forms the real-time schedule for the system. It is optimal in terms of cycle time minimization. Illustrative examples are given to show the application of the proposed approach.
机译:调度群集工具受到晶圆驻留时间限制和活动时间变化的挑战非常艰巨。这项工作开发了描述系统的Petri网络模型,并提出了两级实时调度体系结构。在较低级别上,实时控制策略用于尽可能地抵消活动时间的变化。在较高级别上,在正常情况下会得出定期的离线计划。这项工作介绍了离线计划的可计划性条件和计划算法。可调度性条件可以通过分析检查。如果他们满意,可以通过分析找到离线时间表。离线时间表与实时控制策略一起构成了系统的实时时间表。就最小化周期时间而言,它是最佳的。给出了说明性示例以说明所提出方法的应用。

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