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A Novel Mathematical Formulation for the Strategic Planning of a Reverse Supply Chain Network Theoretical and Computational Results

机译:反向供应链网络战略规划的新数学制定理论和计算结果

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In the last decade, literature on strategic planning of a supply chain network grew rapidly. In this paper we address a classical three-layer remanufacturing supply chain network design problem that covers sourcing, reprocessing and remanufacturing activities, in which strategic decisions regarding the number, location of reprocessing units and the flow of returns through the logistics network are made. First, we propose an alternative mixed-integer mathematical programming (MILP) formulation for this problem and provide theoretical proof of equivalence between the classical and the proposed mathematical formulation. Second, the goodness of both formulations is compared by means of a computational study, and the results for large instances of the problem are discussed. We empirically prove that the proposed formulation provides tighter linear relaxation lower bounds and obtains the integer solutions several times faster than the classical formulation.
机译:在过去十年中,供应链网络战略规划的文献迅速增长。在本文中,我们解决了一种经典的三层再制造供应链网络设计问题,包括采购,再处理和再制造活动,其中制定了关于编辑单位的数量,后勤位置的战略决定和通过物流网络的回报流。首先,我们提出了一种替代混合整数的数学编程(MILP)制定,用于这个问题,并提供经典和提出的数学制定之间的等效性的理论证明。其次,通过计算研究比较了两种配方的良好,并讨论了大型问题的结果。我们经验证明,所提出的配方提供更严格的线性松弛下限,并比经典配方快几倍的整数溶液。

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