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The effect of manufacturing response time on mitigating the demand risk and facility disruption

机译:制造响应时间对减轻需求风险和设施中断的影响

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Nowadays, supply chains are exposed to various risks such as natural disasters and demand uncertainty which cause the flow of the materials and information to be disrupted. The objective of this paper is to investigate the role of Reconfigurable Manufacturing System (RMS) responsiveness in harnessing supply chain disruptions and changes in demand. We consider a two echelon supply chain consisting of production and warehouse stage. A multi period mixed integer programming tool is developed to generate supply chain configurations defining the capacities and inventory levels for a predetermined planning horizon. The resulting supply chain configuration is then simulated with subject to random demand and disruption scenarios resulting in the need for production capacity increase. The performance of different supply chain configurations is compared to identify supply chain design strategies. The results show that there is an optimum mix of RMS and Dedicated Manufacturing System (DMS) which minimizes total system costs. Allocating a small portion of Reconfigurable capacity results in an effective way for handling disruptions.
机译:如今,供应链暴露在各种风险,如自然灾害,需求的不确定性造成的材料和信息的流动被打乱。本文的目的是研究可重构制造系统的作用(RMS)在利用供应链中断和需求变化的响应能力。我们认为,包括生产和仓储阶段两个梯队的供应链。一种多周期混合整数规划工具被显影以产生限定用于在预定规划水平的能力和库存水平的供应链配置。产生的供应链配置,然后用受随机需求,导致需要进行产能提升的破坏场景模拟。不同的供应链配置的性能比较,以确定供应链设计策略。结果表明,有RMS和专用制造系统(DMS)的最佳组合,其总系统成本最小化。在用于处理中断的有效方式分配的可重构容量结果一小部分。

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