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Network Design and Optimization for Multi-product, Multi-time, Multi-echelon Closed-loop Supply Chain under Uncertainty

机译:不确定条件下多产品,多时间,多级闭环供应链的网络设计与优化

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This paper proposes the network design and optimization of a multi-product, multi-time, multi-echelon capacitated closed-loop supply chain in an uncertain environment. The uncertainty related to ill-known parameters like product demand, return volume, fraction of parts recovered for different product recovery processes, purchasing cost, transportation cost, inventory cost, processing, and set-up cost at facility centers is handled with fuzzy numbers. A fuzzy mixed-integer linear programming model is proposed to decide optimally the location and allocation of products/parts at each facility, number of products to be remanufactured, number of parts to be purchased from external suppliers and inventory level of products/parts in order to maximize the profit to the organization. The proposed solution methodology is able to generate a balanced solution between the feasibility degree and the degree of satisfaction of the decision maker. The proposed model has been tested with an illustrative example.
机译:本文提出了不确定环境下多产品,多时间,多层次的带功能闭环供应链的网络设计和优化。与模糊参数相关的不确定性与不确定性参数有关,例如产品需求,退货量,针对不同产品回收流程回收的零件比例,采购成本,运输成本,库存成本,加工和设施中心的设置成本。提出了一种模糊混合整数线性规划模型,以最优地确定每个设施中产品/零件的位置和分配,要再制造的产品数量,从外部供应商处购买的零件数量以及产品/零件的库存水平。使组织获得最大利润。所提出的解决方案方法能够在可行性程度和决策者的满意程度之间产生平衡的解决方案。所提出的模型已通过示例进行了测试。

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