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A profit-maximizing supply network design model with vendor managed inventory

机译:具有供应商管理的库存的最大化利润的供应网络设计模型

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In this paper, we study a logistics network design problem with vendor managed inventory in which the company is in charge of managing inventory for its downstream warehouses and retailers, and can choose whether to satisfy each retailer's demand. The problem incorporates location, transportation, pricing, and warehouse-retailer echelon inventory replenishment decisions. Traditionally, these decisions are optimized separately. We formulate the problem as a set-packing model and solve it using branch-and-price. The pricing problem that arises from each iteration of the column generation procedure is an interesting nonlinear IP problem. We show the pricing problem can be solved in 0(n2 log n) time for each warehouse, where n is the number of retailers. The computational results shed insights on the benefits that the integrated approach can achieve significant cost savings. The computational results also highlight the efficiency of the solution algorithm.
机译:在本文中,我们研究了由供应商管理的库存的物流网络设计问题,该公司负责管理其下游仓库和零售商的库存,并可以选择是否满足每个零售商的需求。问题包括位置,运输,定价和仓库零售商梯队库存补充决策。传统上,这些决策是单独优化的。我们将问题表述为集合打包模型,并使用分支价格来解决。由列生成过程的每次迭代引起的定价问题是一个有趣的非线性IP问题。我们显示每个仓库的定价问题可以在0(n 2 log n)的时间内解决,其中n是零售商的数量。计算结果使人对集成方法可以节省大量成本的好处有深刻的了解。计算结果也突出了求解算法的效率。

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