具有作业时间链约束的晶圆厂多目标并行批调度

Semya Elaoud, Ruaridh Williamson, Begun Efeoglu Sanli, Dennis Xenos
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引用次数: 4

摘要

研究了半导体晶圆厂复杂柔性作业车间问题中的多目标批调度问题。批次有不同的操作成本,作业的连续步骤受到时间链的限制。我们还考虑了半导体晶圆制造设施中出现的其他几个过程方面,例如灵活的机器停机时间,不兼容的作业族,不同的作业大小和并行机器。其目标是最小化总加权批处理成本、排队时间和违反时间链约束的次数。结合混合整数线性规划(MILP)模型和启发式算法,提出了一种混合两阶段求解策略。在高层次上,建议的方法可以分解为“建设性”和“改进”步骤。在解决大型工业实例时,Flexciton在不确定情况下评估的时间表与工厂时间表的比较表明,我们的解决方案可以带来显着的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-Objective Parallel Batch Scheduling In Wafer Fabs With Job Timelink Constraints
We consider multi-objective batch scheduling in the complex flexible job shop problem applied to semi-conductor wafer fabs. Batches have different operating costs and consecutive steps of a job are constrained with timelinks. We also consider several other process aspects that arise in semiconductor wafer fabrication facilities such as flexible machine downtime, incompatible job families, different job sizes and parallel machines. The aim is to minimize the total weighted batching cost, queuing time, and the number of violations of timelink constraints. We present a hybrid two-stage solution strategy, combining Mixed Integer Linear Programming (MILP) models and heuristics. At a high level, the proposed approach can be broken down into “constructive” and “improvement” steps. The comparison of Flexciton schedules evaluated under uncertainty against factory schedules when solving large industrial instances shows the significant improvements that our solution can bring.
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