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首页> 外文期刊>IEEE Transactions on Semiconductor Manufacturing >Noncyclic Scheduling of Multi-Cluster Tools With Residency Constraints Based on Pareto Optimization
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Noncyclic Scheduling of Multi-Cluster Tools With Residency Constraints Based on Pareto Optimization

机译:基于Pareto优化的居住限制的多簇工具的非群集调度

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摘要

Multi-cluster tools are widely used in semiconductor manufacturing. When the lot size of wafers tends to be quite small, a cyclic scheduling strategy is not suitable. However, the noncyclic scheduling of multi-cluster tools is much more challenging due to multi-robot coordination and the increasing number of chambers. This paper focuses on the noncyclic scheduling problem of multi-cluster tools with residency constraints. We construct a universal model to describe such problem to fit both single-armed and dual-armed robots, where serial flow, parallel flow and reentrant flow are all considered. Correspondingly, an improved dynamic programming algorithm is proposed. Specifically, a sequential constraint is first added to deal with the chronological conflicts brought by multi-robot coordination together with a normalization rule to improve searching efficiency. Meanwhile, considering the residency constraints, a path deleting method is also introduced to remove the infeasible solutions. Besides, the theoretical analysis of computation efficiency is also discussed. Numerical experiments demonstrate that the proposed algorithm can meet various practical scheduling requirements, while achieving distinctive improvements in efficiency.
机译:多簇工具广泛用于半导体制造。当晶片的批量倾向于相当小时,循环调度策略不合适。然而,由于多机器人协调和越来越多的腔室,多簇工具的非环状调度更具挑战性。本文重点介绍了具有居住限制的多群工具的非环Cnstenting问题。我们构建一个通用模型,以描述适合单臂和双臂机器人的这种问题,其中串行流量,并行流动和重入速度都是考虑的。相应地,提出了一种改进的动态编程算法。具体地,首先增加顺序约束以处理多机器人协调所带来的按时间冲突以及归一化规则来提高搜索效率。同时,考虑到居住限制,还引入了路径删除方法以消除不可行的解决方案。此外,还讨论了计算效率的理论分析。数值实验表明,所提出的算法可以满足各种实际调度要求,同时实现效率的独特改进。

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