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Design of Modern Supply Chain Networks Using Fuzzy Bargaining Game and Data Envelopment Analysis

机译:使用模糊议价游戏和数据包络分析设计现代供应链网络

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This article proposes a novel methodology for multistage, multiproduct, multi-item, and closed-loop Supply Chain Network (SCN) design under uncertainty. The method considers that multiple products are manufactured by the SCN, each composed by multiple items, and that some of the sold products may require repair, refurbishing, or remanufacturing activities. We solve the two main decisions that take place in the medium-/short-term planning horizon, namely partners' selection and allocation of the received orders among them. The partners' selection problem is solved by a cross-efficiency fuzzy Data Envelopment Analysis technique, which allows evaluating the efficiency of each SCN member and ranking them against multiple conflicting objectives under uncertain data on their performance. Then, according to the estimated customers' demand, the order allocation problem is solved by a fuzzy bargaining game problem, where each SCN actor behaves to simultaneously maximize both its own profit and the service level of the overall SCN in terms of efficiency, costs, and lead time. An illustrative example from the literature is finally presented. Note to Practitioners-We present a decision tool to address the optimal design, performance evaluation, and continuous improvement of modern cooperative SCNs. We propose an effective method to jointly solve the members' selection and the orders' allocation, considering the complex structure of modern SCNs, the multiobjective nature of the problems, and the uncertainty characterizing economic markets. Competition within SCNs stages and cooperation along the chain are considered, with the aim to improve both financial and environmental sustainability, while ensuring the highest service levels to customers.
机译:本文提出了一种新的多级,多程序,多项和闭环供应链网络(SCN)设计的新方法。该方法认为多个产品由SCN制造,每个产品由多个项目组成,其中一些销售产品可能需要修复,翻新或再制造活动。我们解决了在中/短期规划地平线中发生的两个主要决定,即合作伙伴的选择和分配所收到的订单。合作伙伴的选择问题通过跨效率模糊数据包络分析技术解决,这允许评估每个SCN成员的效率,并根据其性能的不确定数据对它们进行对多冲突目标的排序。然后,根据估计客户的需求,通过模糊讨价还价的游戏问题解决了订单分配问题,其中每个SCN演员在效率,成本方面同时最大化其自身利润和整体SCN的服务水平。和交付时间。终于呈现了来自文献的说明性示例。向我们提供的注意事项 - 我们提出了一个决策工具来解决现代合作SCN的最佳设计,性能评估和持续改进。我们提出了一种有效的方法,共同解决成员的选择和订单分配,考虑到现代SCNS的复杂结构,问题的多目标性质以及经济市场的不确定性。考虑了SCNS阶段和合作中的竞争,旨在提高金融和环境可持续性,同时确保客户最高的服务水平。

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