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Economic lot scheduling problem in a remanufacturing system with returns at different quality grades

机译:具有不同质量等级退货的再制造系统中的经济批量计划问题

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An increasing number of companies and researchers have realized the value of quality grading in the remanufacturing process. In this research, we consider a lot scheduling problem for remanufacturing with returns divided into different quality grades. The remanufacturing rate increases as the quality grade increases and holding costs for serviceable products are higher than returns. The objective is to minimize the average total cost by optimizing the acquisition lot size and scheduling the remanufacturing sequence. We first schedule the remanufacturing sequence for an independent remanufacturing system, and we subsequently extend the model to a hybrid manufacturing and remanufacturing system. It is demonstrated that the given models can be applied not only to deterministic situations, where the proportion of each quality grade is constant, but also to stochastic situations, where the proportion of each quality grade is uncertain. Finally, we confirm the value of the scheduling remanufacturing sequence and analyse the sensitivity of the relevant parameters through numerical examples. The results show that the benefit of scheduling the remanufacturing sequence is to take advantage of the low holding cost for storing inexpensive returns and postponing the remanufacturing process to the time when they are needed. The value of scheduling a (re)manufacturing sequence is prominent when the quality and production rate of returns are scattered and the difference in the holding cost of products and returns is relatively large. In the hybrid manufacturing and remanufacturing system, the greater the recovery rate is, the more obvious the value of scheduling is. (C) 2017 Elsevier Ltd. All rights reserved.
机译:越来越多的公司和研究人员已经意识到在再制造过程中质量分级的价值。在这项研究中,我们考虑了将再生产分成不同质量等级的大量再制造调度问题。随着质量等级的提高和可维修产品的持有成本高于退货,再制造率也随之提高。目的是通过优化采购批量和安排再制造顺序来使平均总成本最小化。我们首先为独立的再制造系统安排再制造顺序,然后将模型扩展到混合制造和再制造系统。证明了给定的模型不仅可以应用于确定性情况,其中每个质量等级的比例是恒定的,而且可以应用于随机情况,其中每个质量等级的比例是不确定的。最后,我们确定了调度再制造序列的值,并通过数值示例分析了相关参数的敏感性。结果表明,安排再制造顺序的好处是利用低持有成本来存储廉价的退货并将再制造过程推迟到需要它们的时间。当退货的质量和生产率分散并且产品和退货的持有成本差异较大时,安排(再)制造顺序的价值非常重要。在混合制造和再制造系统中,回收率越高,调度的价值就越明显。 (C)2017 Elsevier Ltd.保留所有权利。

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