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Design of a multi-product Kanban system based on bottleneck analysis

机译:基于瓶颈分析的多产品看板系统设计

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Kanban system is a novel philosophy, which plays a significant role in many production systems. The design of a Kanban system addresses the selection of two important parameters, i.e. the number of Kanbans and the lot size. In this paper, a simulation model of a single-card Kanban system capable of handling different types of products with different demand requirements has been developed and used for the performance analysis. The number of Kanbans and lot size can be different for different product types at each work station. A bi-criteria objective function comprising weighted tardiness and weighted work-in-process has been used for evaluation. The bottleneck analysis has been first used as a sensitivity analysis of the parameters in this field, which is very useful to guide the design procedure of the Kanban system to achieve the best performance. A modified simulated annealing algorithm is also given in which the neighborhood-generation is according to a probability based on the bottleneck analysis. It can find same or better solutions with obviously fewer iterations compared to a classical simulated annealing algorithm. Several case studies in different sizes have been tried out and showed relatively positive results.
机译:看板系统是一种新颖的哲学,它在许多生产系统中都起着重要的作用。看板系统的设计解决了两个重要参数的选择,即看板数量和手数。在本文中,已经开发了能够处理具有不同需求需求的不同类型产品的单卡看板系统的仿真模型,并将其用于性能分析。每个工作站上不同产品类型的看板数量和批量大小可以不同。包含加权拖延时间和加权在制品的双标准目标函数已用于评估。瓶颈分析已首先用作该领域中参数的敏感性分析,这对于指导看板系统的设计过程以实现最佳性能非常有用。还给出了一种改进的模拟退火算法,其中基于瓶颈分析,根据概率生成邻域。与经典的模拟退火算法相比,它可以找到迭代次数更少的相同或更好的解决方案。已经尝试了几种不同大小的案例研究,并显示出相对积极的结果。

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