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MILP model and a genetic algorithm for the integrated cell formation, layout and worker assignment problem

机译:集成细胞形成,布局和工人分配问题的MILP模型和遗传算法

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To design a cellular manufacturing system, many decisions have to be taken into consideration; grouping machines into cells, determining the system and intracellular layouts, and dividing the resources between the cells. In this paper, a novel mixed integer linear programming (MILP) model is proposed for the integrated cell formation, cellular layout and worker assignment problem. The workers are assumed to have different skill levels, and worker load is based on manual workload and material handling tasks. A genetic algorithm (GA) is further proposed to solve the problem, where the GA chromosome represents locations of machines and assignment of workers to machines. A numerical study is finally conducted to evaluate the performance of the proposed GA with regards to solutions attained by solving the MILP model. Results demonstrate the efficiency of the proposed GA in solving the integrated problem, as well as the competence in the developed MILP model.
机译:设计蜂窝制造系统时,必须考虑许多决定。将机器分组为单元,确定系统和单元内布局,并在单元之间分配资源。在本文中,提出了一种新的混合整数线性规划(MILP)模型,用于解决集成单元形成,单元布局和工作人员分配问题。假定工人具有不同的技能水平,并且工人的工作量取决于人工工作量和物料搬运任务。为了解决该问题,提出了一种遗传算法(GA),其中GA染色体代表机器的位置以及工人对机器的分配。最后进行了数值研究,以评估提出的遗传算法在通过求解MILP模型获得的解决方案方面的性能。结果证明了拟议的遗传算法在解决集成问题方面的效率以及开发的MILP模型的能力。

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