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首页> 外文期刊>International Journal of Production Research >Design of dedicated, shared and remainder cells in a probabilistic demand environment
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Design of dedicated, shared and remainder cells in a probabilistic demand environment

机译:概率需求环境中专用,共享和剩余单元的设计

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摘要

In this paper, a new layered cellular manufacturing system is proposed to form dedicated, shared and remainder cells to deal with the probabilistic demand, and later its performance is compared with the classical cellular manufacturing system. In the layered cellular design, each family may need more than one cell to cover capacity requirements. The proposed approach for layered cellular design involves five stages: (1) product clustering, (2) identifying number of cells and demand coverage probabilities, (3) determining cell types using the proposed heuristic procedure, (4) performing simulation to determine operating conditions and (5) statistical analysis to pick the best design configuration among layered cellular designs. Simulation and statistical analysis are performed to help identify the best design within and among both layered cellular design and classical cellular design. It was observed that as the number of part families increased, the number of machines needed to process the parts decreased first. Then the number of machines started to increase once again as the number of part families continued to increase. Another observation was that the average flow time and total WIP were not always the lowest when additional machines were used by the system. The last and the most important observation was that the layered cellular system provided much better results than the classical cellular system when high demand fluctuation was observed.
机译:本文提出了一种新的分层蜂窝制造系统,以形成专用的,共享的和剩余的单元来应对概率需求,然后将其性能与经典蜂窝制造系统进行比较。在分层蜂窝设计中,每个家庭可能需要一个以上的蜂窝来满足容量需求。提出的用于分层蜂窝设计的方法涉及五个阶段:(1)产品聚类;(2)识别单元数和需求覆盖概率;(3)使用提议的启发式程序确定单元类型;(4)执行仿真以确定操作条件(5)统计分析以选择分层蜂窝设计中的最佳设计配置。进行仿真和统计分析以帮助确定分层蜂窝设计和经典蜂窝设计内部和之中的最佳设计。可以观察到,随着零件系列数量的增加,处理零件所需的机器数量首先减少。然后,随着零件系列数量的继续增加,机器的数量又开始增加。另一个观察结果是,当系统使用其他机器时,平均流动时间和总WIP并不总是最低的。最后也是最重要的观察结果是,当观察到高需求波动时,分层蜂窝系统提供了比传统蜂窝系统更好的结果。

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