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Design of delayed reconfigurable manufacturing system based on part family grouping and machine selection

机译:基于零件族分组和机器选择的延迟可重构制造系统设计

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摘要

To improve the convertibility of reconfigurable manufacturing system (RMS), the concept of delayed reconfigurable manufacturing system (D-RMS) was proposed. RMS and D-RMS are both constructed around part family. However, D-RMS may suffer from ultra-long system problem with unacceptable idle machines using generic RMS part families. Besides, considering the complex basic system structure of D-RMS, machine selection of D-RMS should be addressed, including dedicated machine, flexible machine, and reconfigurable machine. Therefore, a system design method for D-RMS based on part family grouping and machine selection is proposed. Firstly, a part family grouping method is proposed for D-RMS that groups the parts with more former common operations into the same part family. The concept of longest relative position common operation subsequence (LPCS) is proposed. The similarity coefficient among the parts is calculated based on LPCS. The reciprocal value of the operation position of LPCS is adopted as the characteristic value. The average linkage clustering (ALC) algorithm is used to cluster the parts. Secondly, a machine selection method is proposed to complete the system design of D-RMS, including machine selection rules and the dividing point decision model. Finally, a case study is given to implement and verify the proposed system design method for D-RMS. The results show that the proposed system design method is effective, which can group parts with more former common operations into the same part family and select appropriate machine types.
机译:为了提高可重新配置制造系统(RMS)的可转换,提出了延迟可重构制造系统(D-RMS)的概念。 rms和d-rms均围绕部分家庭构建。然而,D-RMS可能与使用通用RMS部件系列的不可接受的空闲机器遭受超长系统问题。此外,考虑到D-RMS的复杂基本系统结构,应解决D-RMS的机器选择,包括专用机,柔性机器和可重新配置的机器。因此,提出了一种基于零件族分组和机器选择的D-RMS的系统设计方法。首先,为D-RMS提出了一种零件族分组方法,该方法将具有更多以前的常见操作组成的D-RMS进入同一部件系列。提出了最长相对位置常见操作随后(LPC)的概念。基于LPC计算部分中的相似系数。通过LPC的操作位置的倒数值作为特征值。平均链接聚类(ALC)算法用于聚类零件。其次,提出了一种机器选择方法来完成D-RMS的系统设计,包括机器选择规则和分界点决策模型。最后,提供了一种案例研究来实现和验证D-RMS的提出的系统设计方法。结果表明,该系统设计方法有效,可以将具有更多前一个常见操作的零件分组到同一部件系列中,并选择合适的机器类型。

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