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Configuration design in scalable reconfigurable manufacturing systems (RMS); a case of single-product flow line (SPFL)

机译:可扩展可重配置制造系统(RMS)中的配置设计;单产品流水线(SPFL)的情况

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摘要

The dynamic nature of today's manufacturing industry, which is caused by the intense global competition and constant technological advancements, requires systems that are highly adaptive and responsive to demand fluctuations. Reconfigurable manufacturing systems (RMS) enable such responsiveness through their main characteristics. This paper addresses the problem of RMS configuration design, where the demand of a single product varies throughout its production life cycle, and the system configuration must change accordingly to satisfy the required demand with minimum cost. A two-phased method is developed to handle the primary system configuration design and the necessary system reconfigurations according to demand rate changes. This method takes advantage of Reconfigurable Machine Tools in RMS. In fact, by adding/removing modules to/from a specific modular reconfigurable machine, its production capability could be increased, with lower cost. A novel mixed integer linear programming formulation is presented in the second phase of the method to optimise the process of selecting the best possible transformation for the existing machine configurations. Two different cases are designed and solved by implementing the established method. The results of these cases in terms of capital cost, capacity expansion cost, unused capacity and number of transformations, are compared with two hypothetical scenarios. Analyses of the obtained results indicate the efficiency of the proposed approach and offer a promising outlook for further research.
机译:由激烈的全球竞争和持续的技术进步引起的当今制造业的动态性质,要求系统具有高度适应性并能应对需求波动。可重构制造系统(RMS)通过其主要特征实现了这种响应能力。本文解决了RMS配置设计的问题,在该配置中,单个产品的需求在其整个生产生命周期中都在变化,并且系统配置必须相应地进行更改,以便以最低的成本满足所需的需求。开发了一种两阶段方法来处理主要系统配置设计和根据需求率变化进行必要的系统重新配置。此方法利用RMS中的可重新配置机床。实际上,通过向/从特定的模块化可重构机器添加/移除模块,可以以较低的成本提高其生产能力。该方法的第二阶段提出了一种新颖的混合整数线性规划公式,以优化为现有机器配置选择最佳转换的过程。通过实施已建立的方法,设计并解决了两种不同的情况。将这些案例在资本成本,容量扩展成本,未使用容量和转换数量方面的结果与两个假设方案进行了比较。对所获得结果的分析表明了所提出方法的有效性,并为进一步研究提供了有希望的前景。

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