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A hybrid model for remanufacturing facility location problem in a closed-loop supply chain

机译:闭环供应链中再制造设施选址问题的混合模型

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摘要

Traditional supply chain design is merely based on the open loop or forward flow of materials, neglecting reverse flow for recovery of materials despite the recent concerns of customers and governments about environmental and production cost reductions. New supply chain design should be closed loop which implements traditional supply chain concepts with reverse flow or a material recovery system to reduce production cost and enhance customer satisfaction about environmental consciousness and to meet legal requirements. In our research, we designed a closed-loop supply chain which consists of recovery options such as collection centres and remanufacturing plants (reverse flow) in addition to traditional supply chain tiers (forward flow), and tried to find the best location for these facilities in a discrete space based on decision makers' opinions. Since there are uncertainties about decision parameters in an uncapacitated facility location problem, we implemented the fuzzy TOPSIS method to solve the location decision problem and find the best place to locate a remanufacturing facility.
机译:传统的供应链设计仅基于材料的开环或正向流动,尽管客户和政府最近对降低环境和生产成本感到担忧,却忽略了反向流动来回收材料。新的供应链设计应该是闭环的,该闭环实施带有逆流的传统供应链概念或材料回收系统,以降低生产成本并提高客户对环境意识的满意度并满足法律要求。在我们的研究中,我们设计了一个闭环供应链,除了传统的供应链层(正向流)外,它还包括回收选项,例如收集中心和再制造工厂(逆向流),并尝试找到这些设施的最佳位置根据决策者的意见在离散的空间中。由于在无能力的设施选址问题中决策参数存在不确定性,因此我们实施了模糊TOPSIS方法来解决选址决策问题,并找到最佳位置来定位再制造工厂。

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