Variability Specific to a Closed-Loop Supply Chain with Product Deterioration

Jundai Koketsu, A. Ishigaki, Hiromasa Ijuin, Tetsuo Yamada
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引用次数: 1

Abstract

Environmental issues and increasing global demand have led to calls for sustainable production and consumption. Products deemed insufficiently environmentally friendly are beginning to be removed from the market, and manufacturers must achieve social responsibility and economic benefits. However, in a conventional linear supply chain, an increase in sales volume directly leads to an increase in waste and resource consumption, resulting in a trade-off between the environment and the economy. Closed-loop supply chains resolve trade-offs, achieve corporate social responsibility, and enhance competitiveness. Closed-loop supply chains must recover used products with a high degree of uncertainty. Uncertainty in the quantity, quality, and timing of used products can cause serious problems such as the bullwhip effect in the dynamic behavior of the supply chain. This study aims to analyze the dynamic impact of used product uncertainty on a closed-loop supply chain and propose ways to deal with it. Products deteriorate with their use and eventually become worthless for recovery and remanufacturing. This study confirms that, even when there is no demand variability and lead time, the uncertainty of used products, especially qualitative uncertainty, causes large variability in the closed-loop supply chain. The results of the numerical example using the model proposed in this study show that the policy of limiting the quantity of remanufacturing can mitigate the variability. Furthermore, the appropriate limits vary depending on the characteristics of the product, such as its lifetime. This suggests the need to control the amount of remanufacturing for the sustainability of the closed-loop supply chain rather than remanufacturing as much as possible, to reduce environmental impact.
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含产品劣化的闭环供应链特有的可变性
环境问题和日益增长的全球需求促使人们呼吁可持续的生产和消费。被认为不够环保的产品开始退出市场,制造商必须实现社会责任和经济效益。然而,在传统的线性供应链中,销量的增加直接导致浪费和资源消耗的增加,导致环境和经济之间的权衡。闭环供应链解决了权衡,实现了企业社会责任,增强了竞争力。闭环供应链必须以高度不确定性回收使用过的产品。使用产品的数量、质量和时间的不确定性会导致供应链动态行为中的牛鞭效应等严重问题。本研究旨在分析二手产品不确定性对闭环供应链的动态影响,并提出应对方法。产品在使用过程中会变质,最终在回收和再制造时变得毫无价值。本研究证实,即使在不存在需求可变性和交货期的情况下,二手产品的不确定性,特别是质量的不确定性,也会导致闭环供应链中的巨大可变性。应用该模型的数值算例结果表明,限制再制造数量的策略可以缓解这种可变性。此外,适当的限制取决于产品的特性,例如其寿命。这表明,为了闭环供应链的可持续性,需要控制再制造的数量,而不是尽可能多地再制造,以减少对环境的影响。
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