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A Mathematical Programming Formulation for Cost-oriented Multi-manned Assembly Line Balancing Problem

机译:用于成本导向的多载程序装配线平衡问题的数学规划配方

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Multi-manned assembly line balancing problems are usually occurred in plants producing large-sized high-volume products such as automobiles and trucks. In this paper, a cost-oriented objective function is presented for a multi-manned assembly line balancing problem. This kind of objective function may be used to balance final assembly lines of products in which manufacturing process is very labor intensive. A mixed-integer mathematical programming model is proposed to solve the problem optimally. The proposed formulation has been used to solve some small size problems by considering both time-oriented and cost-oriented objective functions. The experiments show that, given the same precedence graph of multi-manned assembly line with a same cycle time, two different optimal solutions can be actually found when switching from time-oriented to cost-oriented objective functions, and vice versa. This difficulty increases the complexity of the cost-oriented multi-manned assembly line balancing problems with respect to the multi-manned assembly line balancing problems addressed in the literature.
机译:多载人装配线平衡通常发生在生产大尺寸的大批量产品,如汽车和卡车工厂的问题。在本文中,一个成本导向目标函数被呈现用于多载人装配线平衡问题。这种目标函数可以被用于平衡的,其中制造过程是非常劳动密集的产品最终组装线。提出了一种混合整数数学规划模型,以最佳解决问题。建议的配方已被用于通过考虑和面向时间的成本为导向的目标函数来解决一些小规模的问题。实验结果表明,给定具有相同的周期时间多载人装配线的相同优先级的曲线图中,两个不同的最优解可以从时间为导向,以成本导向目标函数切换时被实际发现,反之亦然。这种困难增加了成本导向多载人装配线平衡问题相对于所述多载人装配线平衡问题在文献中解决的复杂性。

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