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Simulation-based Performance of Assembly Cells with Real-time Distributed Arrival Time Control System

机译:实时分布式到达时间控制系统基于仿真的组装电池性能

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This paper presents the results of a simulation-based performance of assembly cells (AC) manufacturing systems with real-time distributed arrival time for JIT-oriented production environment. This research adds to the sparse body of the literature in this area. In this paper, the distributed arrival time control (DATC) systems are used to make assembly cells manufacturing systems scalable and practical in heterarchical manufacturing systems. The research includes four levels of the number of stations and four levels of assembly task time standard deviations. The results indicate that DATC used in assembly cells was effective for the orientation of JIT production. The ability of the assembly cells studied in this research to handle a wide range of variability with little change in mean squared deviation. The research also shows that distributed arrival time control system can provide the stability of the scheduling of manufacturing system.
机译:本文介绍了针对基于JIT的生产环境中具有实时分布式到达时间的装配单元(AC)制造系统基于仿真的性能结果。这项研究增加了该领域文献的稀疏性。在本文中,分布式到达时间控制(DATC)系统用于使装配单元制造系统在分层制造系统中具有可扩展性和实用性。该研究包括四个级别的工位数量和四个级别的装配任务时间标准偏差。结果表明,组装电池中使用的DATC对JIT生产的定向有效。在这项研究中研究的装配单元具有在不大的均方差变化的情况下处理各种可变性的能力。研究还表明,分布式到达时间控制系统可以为制造系统的调度提供稳定性。

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