Flexible job-shop scheduling with extended route flexibility for semiconductor manufacturing

Sebastian Knopp, S. Dauzére-Pérés, C. Yugma
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引用次数: 12

Abstract

Scheduling decisions have an important impact on the overall performance of a semiconductor manufacturing facility (fab). To account for machines that consist of several interdependent components, we generalize the flexible job-shop scheduling problem. We introduce the concept of route graphs to describe resource dependencies. Beside specifying feasible routes, route graphs can, for example, prescribe two different operations in the route of a job to use the very same resource. To solve the problem, we introduce an adapted disjunctive graph representation and propose a heuristic method that iteratively inserts jobs to construct an initial solution. This solution is then improved using a simulated annealing meta-heuristic. Several numerical experiments are performed. First, improved results for a real-world instance justify the increased complexity of our model. Second, a comparison to results of dedicated methods for the flexible job-shop scheduling problem shows that our approach obtains good results.
具有扩展路线灵活性的半导体制造柔性作业车间调度
调度决策对半导体制造工厂(fab)的整体性能有重要影响。为了考虑由几个相互依赖的部件组成的机器,我们推广了柔性作业车间调度问题。我们引入路由图的概念来描述资源依赖关系。除了指定可行的路由,路由图还可以,例如,在作业的路由中规定使用相同资源的两种不同操作。为了解决这个问题,我们引入了一种自适应析取图表示,并提出了一种迭代插入作业来构造初始解的启发式方法。然后使用模拟退火元启发式改进该解决方案。进行了数值实验。首先,现实世界实例的改进结果证明了模型复杂性的增加是合理的。其次,与柔性作业车间调度问题的专用方法的结果进行了比较,表明本文方法取得了较好的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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