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Multi-objective optimization for Work-In-Process balancing and throughput maximization in global fab scheduling

机译:全球晶圆厂调度中的在制品平衡和吞吐量最大化的多目标优化

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This paper presents a multi-objective optimization approach for global fab scheduling, based on a mathematical model that determines production targets, i.e. product quantities to complete in each operation and each period on a scheduling horizon. The multi-objective approach balances product mix variability minimization and throughput maximization using an ε-constraint approach. For evaluation purposes, the global fab scheduling model is coupled with a generic multi-method simulation model. Numerical experiments conducted on industrial data illustrate the effectiveness of the approach.
机译:本文基于确定生产目标的数学模型,提出了一种用于全球晶圆厂调度的多目标优化方法,该模型确定了生产目标,即在调度范围内每个操作和每个周期要完成的产品数量。多目标方法使用ε约束方法平衡了产品组合的可变性最小化和吞吐量最大化。为了进行评估,将全局fab调度模型与通用的多方法仿真模型结合在一起。对工业数据进行的数值实验说明了该方法的有效性。

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