首页> 外文期刊>International journal of flexible manufacturing systems: Design, Analysis and Operation of Manufacturing and Assembly Systems >Dissimilarity Maximization Method for Real-time Routing of Parts in Random Flexible Manufacturing Systems
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Dissimilarity Maximization Method for Real-time Routing of Parts in Random Flexible Manufacturing Systems

机译:随机柔性制造系统中零件实时布线的相异性最大化方法

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摘要

This paper presents a dissimilarity maximization method (DMM) for real-time routing selection and compares it via simulation with typical priority rules commonly used in scheduling and control of flexible manufacturing systems (FMSs), DMM aims to reduce the congestion in the system by selecting a routing for each part among its alternative routings such that the overall dissimilarity among the selected routings is maximized In order to evaluate the performance of DMM, a random FMS, where the product mix is not known prior to production and off-line scheduling is not possible, is selected for the simulation study. A software environment that consists of a computer simulation model, which mimics a physical system, a C++ module, and a linear program solver is used to implement the DMM concept, In addition to DMM, the simulation study uses two priority rules for routing (i.e.., machine) selection and seven priority rules for selecting parts awaiting service at machine buffers The results show (1) DMM outperforms the other two routing selection rules on production rate regardless of the part selection rule used, and (2) its performance is highly dependent on the part selection rules it is combined with.
机译:本文提出了一种用于实时路由选择的相异性最大化方法(DMM),并将其通过仿真与柔性制造系统(FMS)的调度和控制中常用的典型优先级规则进行了比较,DMM旨在通过选择来减少系统中的拥塞为每个零件在其替代路线中进行路线选择,以使所选路线之间的总体差异最大化。为了评估DMM的性能,采用了随机FMS,其中在生产之前不了解产品组合,并且不进行离线计划选择可能的模拟研究。一个软件环境由一个模拟物理系统的计算机仿真模型,一个C ++模块和一个线性程序求解器组成,用于实现DMM概念。除DMM之外,仿真研究还使用两个优先级规则进行布线(即。,机器)选择和在机器缓冲区中选择要等待服务的零件的七个优先级规则结果显示(1)无论使用什么零件选择规则,DMM的生产率都优于其他两个工艺选择规则,并且(2)其性能很高取决于零件选择规则。

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