首页> 外文期刊>Proceedings of the Workshop on Principles of Advanced and Distributed Simulation >OPTIMIZATION VERSUS CONSTRUCTION OF TRANSPORT SCHEDULES TO REDUCE TRAVEL TIME VARIABILITY AND AVOID CONGESTIONS IN CONVEYOR-BASED AMHS FOR WAFER FABS
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OPTIMIZATION VERSUS CONSTRUCTION OF TRANSPORT SCHEDULES TO REDUCE TRAVEL TIME VARIABILITY AND AVOID CONGESTIONS IN CONVEYOR-BASED AMHS FOR WAFER FABS

机译:优化与运输时间表的建设,降低旅行时间可变性,避免基于输送机的AMHS的拥堵

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摘要

Advanced transport scheduling for conveyor-based automated material handling systems (AMHS) in semiconductor fabricating facilities (wafer fabs) can reduce transport times and thus cycle times. Commonly, transport operations of arriving wafer lots at conveyor junctions, such as rotary tables, are sequenced ad-hoc by myopic first-come-first-serve policies. In contrast, improved transport schedules for the transport operations can be produced ahead of the time in conjunction with the overall production schedule for process operations. More precisely, such a transport schedule can either be sequentially constructed by fixing one transport after another, or it can be optimized by simultaneously fixing several conflicting transports. Hence, two conceptually different transport scheduling methods, which both avoid congestions by enforcing a no-wait constraint, are compared with special regard to transport-related variability. Furthermore, three different AMHS models that exhibit the typical interbay-intrabay layout are used for computational experiments.
机译:半导体制造设施(晶片Fab)中的输送机的自动材料处理系统(AMHS)的高级传输调度可以减少运输时间,从而循环时间。通常,在输送带(如旋转桌)上到达晶圆批次的运输操作被近视第一 - 先到第一服务政策排序。相反,可以在与过程操作的整体生产计划结合使用的时间之前生产用于传输操作的改进的传输时间表。更确切地说,通过固定一个运输之后,可以通过同时修复几个冲突的传输来顺序地构造这种传输时间表。因此,两种概念上不同的传输调度方法,其避免了通过实施不等待的约束来拥塞,与特殊方面的传输相关的可变性进行比较。此外,三种不同的AMHS模型,其展示了典型的跨性间隔布局用于计算实验。

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