Functional and distributed layouts and their effectiveness on capability-based Virtual Cellular Manufacturing systems performance

M. Hamedi, G. Esmaeilian
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引用次数: 8

Abstract

Although the formation of any Virtual Cellular Manufacturing System (VCMS), as a flexible layout, does not have any restriction regarding the current arrangement of machines, its performance is affected by different layout In this paper, Capability Based form of Virtual Cellular Manufacturing Systems (CBVCMSs) are generated through considering machines as the main constraining resource by a new multiobjective mathematical model and their effectiveness is evaluated over functional and distributed layouts. To find an optimum or near-to-optimum solution without any size-limitation of the problem, a multi-objective Tabu Search (TS) algorithm is proposed. The validity of the model and performance analyses of CBVCMSs over basic layouts is tested through benchmarking a numerical example. At the end, the efficacy of distributed layout for generating CBVCMS is illustrated because of its flexibility, minimizing the objective function of the developed mathematical model, less traveled distance by components of family groups, and acceptable capacity utilization. Moreover, the results illustrate the priority of CBVCMS in comparison to the original classical Cellular Manufacturing Systems (CMSs) from the capacity utilization point of view.
功能和分布式布局及其对基于能力的虚拟元胞制造系统性能的影响
任何虚拟元胞制造系统(VCMS)的形成作为一种柔性布局,虽然不受当前机器布局的限制,但其性能会受到不同布局的影响。将机器作为主要的约束资源,采用一种新的多目标数学模型,生成了基于能力的虚拟元胞制造系统(cbvcms)形式,并通过功能布局和分布式布局对其有效性进行了评价。为了在不受问题大小限制的情况下找到最优或接近最优解,提出了一种多目标禁忌搜索算法。通过对标算例验证了模型的有效性,并对cbvcms在基本布局下的性能分析进行了验证。最后,说明了分布式布局在生成CBVCMS中的有效性,因为它具有灵活性,使所建立的数学模型的目标函数最小,家庭群体组件的移动距离较小,容量利用率可接受。此外,从产能利用率的角度来看,CBVCMS与原始的经典元胞制造系统(cms)相比具有优先性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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