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Integrated procedure of balancing and sequencing for mixed-model assembly lines: a multi-objective evolutionary approach

机译:混合模型装配线平衡与排序的集成过程:多目标进化方法

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摘要

A mixed-model assembly line is a type of production line which is used to assemble a variety of product models with a certain level of similarity in operational characteristics. This variety causes workload variance among other problems resulting in low efficiency and line stops. To cope with these problems, a hierarchical design procedure for line balancing and model sequencing is proposed. It is structured in terms of an amelioration procedure. On the basis of our evolutionary algorithm, a genetic encoding procedure entitled priority-based multi-chromosome (PMC) is proposed. It features a multi-functional chromosome and provides efficient representation of task assignment to workstations and model sequencing. The lean production perspective recognises the U-shape assembly line system as more advanced and beneficial compared to the traditional straight line system. To assure the effectiveness of the proposed procedure, both straight and U-shape assembly lines are examined under two major performance criteria, i.e., number of workstations (or line efficiency) as static criterion and variance of workload (line and models) as dynamic criterion. The results of simulation experiments suggest that the proposed procedure is an effective management tool of a mixed-model assembly line system.
机译:混合模型装配线是一种生产线,用于装配在操作特性上具有一定相似度的各种产品模型。这种多样性会导致工作负载差异以及其他问题,从而导致效率低下和生产线停顿。为了解决这些问题,提出了用于线路平衡和模型排序的分层设计程序。它是根据改善程序来构造的。在我们的进化算法的基础上,提出了一种基于优先级的多染色体(PMC)遗传编码程序。它具有多功能染色体,可有效代表任务分配给工作站和模型排序。精益生产的观点认为,与传统的直线系统相比,U形装配线系统更为先进和有益。为了确保所建议程序的有效性,在两个主要性能标准下检查直线和U形装配线,即以工作站数量(或生产线效率)为静态标准,工作量变化(生产线和模型)为动态标准。仿真实验结果表明,该程序是混合流水线系统的有效管理工具。

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