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Experimental assessment of the productivity improvement when using U-shaped production cells with variable takt time

机译:使用可变节拍时间的U形生产单元提高生产率的实验评估

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Purpose - The aim of this research is to discuss the benefits of U-shaped layout for production cell operating in variable takt time. Different experiments were conducted using benchmarks to highlight the performance gap between a linear cell and a U-Cell. Design/methodology/approach - The implementation of the production cell, either in a U-shaped or in a straight line layout, is optimized through linear programming based on the number of operators. The two corresponding programs, in Mosel language, use the same approach to not introduce bias in the comparison of results. The study used the authors' own datasets and other well-known academic benchmarks. Findings - A comparison was conducted between the obtained takt times, with equivalent operating conditions, in both U-Cell and linear cell. A significant increase of the production rate was observed This increase has often exceeded 10 per cent, reaching 32 per cent. All the experiments show that, with the same number of operators, a cell in a U-shaped layout is always at least as efficient, in terms of attainable production rates, than an equivalent linear cell. Ninety-six per cent of the studied cases give an improvement of production rate. Moreover, the dispersion of the U-Cell results is weaker, which suggests that the U-shaped layout gives better performances in more robust manner. Research limitations/implications - Results were obtained through a study of various academic benchmarks. The results must be validated on industrial situations. Practical implications - This paper will be very useful for researchers and practitioners to understand lean implementations and their derived benefits. This paper will allow them to evaluate and analyze the expected benefits of the implementation of the production cell in the U-shaped layout (operating in variable takt time). Originality/value - U-Cells constitute an appropriate solution for a layout of any kind of production cells with a variable structure (variability of the number of operators, of the organization of the cell, of the takt time [...]). When facing a significant variation in the demand, the response consists of adjusting the number of operators assigned to the cell. This study jointly addresses the problem of the U-shaped layout and the operation in variable takt time.
机译:目的-这项研究的目的是讨论U型布局对于生产节拍时间可变的生产单元的好处。使用基准测试进行了不同的实验,以突出线性电池和U型电池之间的性能差距。设计/方法/方法-生产单元的实施(呈U形或直线布局)通过基于操作员数量的线性编程进行了优化。用Mosel语言编写的两个相应程序使用相同的方法,不会在比较结果时引入偏差。该研究使用了作者自己的数据集和其他知名的学术基准。结果-在U型电池和线性电池中,在相同的工作条件下,对获得的节拍时间进行了比较。观察到生产率的显着提高。该增长率通常超过10%,达到32%。所有实验表明,在具有相同数量的运算符的情况下,就可达到的生产率而言,呈U形布局的单元始终至少比等效的线性单元具有更高的效率。在百分之九十六的研究案例中,生产率得到了提高。此外,U单元结果的分散性较弱,这表明U形布局以更鲁棒的方式提供了更好的性能。研究局限性/含义-通过各种学术基准研究获得的结果。结果必须在工业情况下进行验证。实际意义-本文对于研究人员和从业人员了解精益实现及其带来的好处非常有用。本文将使他们能够评估和分析以U形布局(以可变节拍时间运行)实施生产单元的预期收益。原创性/价值-U型单元构成一种适用于任何类型的具有可变结构(操作员数量,单元组织,节拍时间[...]可变性)的生产单元的布局的解决方案。当需求面临重大变化时,响应包括调整分配给该单元的操作员数量。这项研究共同解决了U型布局和可变节拍时间操作的问题。

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