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首页> 外文期刊>IEEE Transactions on Semiconductor Manufacturing >Optimal preventive maintenance scheduling in semiconductor manufacturing
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Optimal preventive maintenance scheduling in semiconductor manufacturing

机译:半导体制造中的最佳预防性维护计划

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摘要

Preventive maintenance (PM) scheduling is a very challenging task in semiconductor manufacturing due to the complexity of highly integrated fab tools and systems, the interdependence between PM tasks, and the balancing of work-in-process (WIP) with demand/throughput requirements. In this paper, we propose a two-level hierarchical modeling framework. At the higher level is a model for long-term planning, and at the lower level is a model for short-term PM scheduling. Solving the lower level problem is the focus of this paper. We develop mixed-integer programming (MIP) models for scheduling all due PM tasks for a group of tools, over a planning horizon. Interdependence among different PM tasks, production planning data such as projected WIP levels, manpower constraints, and associated PM time windows and costs, are incorporated in the model. Results of a simulation study comparing the performance of the model-based PM schedule with that of a baseline reference schedule are also presented.
机译:由于高度集成的晶圆厂工具和系统的复杂性,PM任务之间的相互依赖性以及在制品(WIP)与需求/吞吐量需求之间的平衡,预防性维护(PM)调度在半导体制造中是一项非常具有挑战性的任务。在本文中,我们提出了一个两级分层建模框架。较高的级别是用于长期计划的模型,较低的级别是用于短期PM调度的模型。解决下层问题是本文的重点。我们开发了混合整数编程(MIP)模型,用于在计划范围内为一组工具安排所有应有的PM任务。该模型中包含了不同PM任务,生产计划数据(例如,预计在制品水平,人力约束以及相关的PM时间窗口和成本)之间的相互依赖性。还提供了将基于模型的PM计划与基准参考计划的性能进行比较的仿真研究结果。

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