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Performance comparison of virtual cellular manufacturing with functional and cellular layouts in DRC settings

机译:在DRC设置中使用功能和蜂窝布局进行虚拟蜂窝制造的性能比较

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摘要

This study investigates the performance of virtual cellular manufacturing (VCM) systems, comparing them with functional layouts (FL) and traditional, physical cellular layout (CL), in a dual-resource-constrained (DRC) system context. VCM systems employ logical cells, retaining the process layouts of job shops. Part family-based scheduling rules are applied to exploit the benefits of group technology while retaining the flexibility and functional synergies of the job shop. Past studies of VCM have been based entirely on single-resource-constrained (SRC) systems, i.e. as purely machine-limited systems, assuming that resources such as labour and tooling do not restrict the output. However, given the fact that labour forms a second major constraining resource, and many of the advantages associated with cellular manufacturing are derived from labour flexibility, it becomes necessary to extend the research to DRC systems. In this study, we assume several levels of labour flexibility in all three systems, in addition to other relevant factors such as lot size, set-up reduction, and labour assignment rules. It is shown that VCM can outperform efficiently operated FL and CL in certain parameter ranges, as preliminary research has shown so far. However, it is shown that CL tends to outperform both VCM and FL in the parameter ranges customarily advocated for CL, namely, low lot sizes, adequate levels of set-up reduction, cross training of workers, and worker mobility within cells.
机译:这项研究调查了虚拟蜂窝制造(VCM)系统的性能,并将其与功能布局(FL)和传统的物理蜂窝布局(CL)在双资源受限(DRC)系统环境中进行了比较。 VCM系统采用逻辑单元,保留了作业车间的流程布局。基于零件族的调度规则适用于利用组技术的好处,同时保留了车间的灵活性和功能协同作用。过去对VCM的研究完全基于单一资源受限(SRC)系统,即作为纯机器限制的系统,假设诸如劳动力和工具之类的资源不会限制输出。但是,鉴于劳动力是第二个主要约束资源,并且与蜂窝制造相关的许多优势都来自劳动力的灵活性,因此有必要将研究扩展到DRC系统。在这项研究中,除了其他相关因素(例如手数,裁员和劳动力分配规则)外,我们在所有三个系统中都假设了几个级别的劳动力灵活性。正如到目前为止的初步研究表明,在某些参数范围内,VCM的性能要优于FL和CL。但是,已显示出CL倾向于在CL惯常提倡的参数范围内胜过VCM和FL,即低批量,适当的减少安装水平,对工人进行交叉训练以及工人在小区内的流动性。

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