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The Selection of the Best Control Rule for a Multiple-Load AGV System Using Simulation and Fuzzy MADM in a Flexible Manufacturing System

机译:柔性制造系统中基于仿真和模糊MADM的多负载AGV系统最佳控制规则的选择

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Pick up-dispatching problem together with delivery-dispatching problem of a multiple-load automated guided vehicle (AGV) system have been studied. By mixing different pick up-dispatching rules, several control strategies (alternatives) have been generated and the best control strategy has been determined considering some important criteria such as System Throughput (ST), Mean Flow Time of Parts (MFTP), Mean Tardiness of Parts (MFTP), AGV Idle Time (AGVIT), AGV Travel Full (AGVTF), AGV Travel Empty (AGVTE), AGV Load Time (AGVLT), AGV Unload Time (AGVUT), Mean Queue Length (MQL) and Mean Queue Waiting (MQW). For ranking the control strategies, a new framework based on MADM methods including fuzzy MADM and TOPSIS method were developed. Then several simulation experiments which had been based on a flow path layout to find the results were conducted. Finally, by using TOPSIS method, the control strategies were ranked. Furthermore, a similar approach was used for determining the optimal fleet size. The main contribution of this paper is developing a new approach combining the top managers' views in selecting the best control strategy for AGV systems while trying to optimize the fleet size at the mean time by combining MADM, MCDM and simulation methods.
机译:研究了多负载自动导引车(AGV)系统的提货配送问题和配送配送问题。通过混合不同的分拣调度规则,已生成了几种控制策略(替代方法),并考虑了一些重要标准(例如系统吞吐量(ST),零件平均流动时间(MFTP),平均时延)确定了最佳控制策略。零件(MFTP),AGV空闲时间(AGVIT),AGV行程满(AGVTF),AGV行程空(AGVTE),AGV加载时间(AGVLT),AGV卸载时间(AGVUT),平均队列长度(MQL)和平均队列等待(MQW)。为了对控制策略进行排序,开发了基于MADM方法的新框架,包括模糊MADM和TOPSIS方法。然后进行了一些基于流路布局的仿真实验,以找到结果。最后,采用TOPSIS方法对控制策略进行排序。此外,使用类似的方法来确定最佳机队规模。本文的主要贡献是开发一种新方法,该方法结合了高层管理人员的意见,为AGV系统选择最佳控制策略,同时尝试通过结合MADM,MCDM和仿真方法来优化车队规模。

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