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A multi-objective mathematical programming for sustainable reverse logistics network design. Part I: Model formulation

机译:可持续逆向物流网络设计的多目标数学规划。第一部分:模型配方

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Reverse logistics has received more and more attention during the past decade due to the increasing public awareness of sustainable development. Because of the fluctuation in both quantity and quality of the reverse material flow, design and planning of reverse logistics network is much more complicated comparing with the forward ones. Therefore, it is important to develop decision support tools for designing reverse logistics network in an economically efficient and environment-friendly manner. This research proposes a novel multi-objective mixed integer programming model in order to justify the relationship between the cost and sustainability of reverse logistics system, and the weighted sum utility method is employed for combining the two objective functions. This research is presented in a series of two papers. Part I formulates the conceptual framework of reverse logistics network and the mathematical programming for the minimization of the overall system cost and environmental influence. Part II introduces the weighted sum utility method for combining the two objective functions, and the application and analysis are also given in this part.
机译:由于越来越多的可持续发展意识,过去十年来,逆向物流受到越来越多的关注。由于两种数量和质量的波动,与前方的反向物流网络的设计和规划更加复杂。因此,重要的是以经济高效和环境友好的方式制定决策支持工具来设计逆向物流网络。该研究提出了一种新型多目标混合整数编程模型,以证明逆向物流系统的成本和可持续性之间的关系,并且使用加权实用方法来组合两个目标函数。这项研究呈现在一系列两篇论文中。第一部分制定了反向物流网络的概念框架和最小化整体系统成本和环境影响的数学规划。第二部分II介绍了用于组合两个客观功能的加权uyility方法,以及本部分还给出了应用和分析。

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