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Optimizing a bi-objective multi-product multi-period three echelon supply chain network with warehouse reliability

机译:具有仓库可靠性的双目标多产品多周期三梯级供应链网络优化

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摘要

Bi-objective optimization of a multi-product multi-period three-echelon supply chain network consisting of manufacturing plants, distribution centers (DCs) each with uncertain services, and customer nodes is aimed in this paper. The two objectives are minimization of the total cost while maximizing the average number of products dispatched to customers. The decision variables are: (1) the number and the locations of reliable DCs in the network, (2) the optimum number of items produced by plants, (3) the optimum quantity of transported products, (4) the optimum inventory of products at DCs and plants, and (5) the optimum shortage quantity of the customer nodes. The problem is first formulated into the framework of a constrained bi-objective mixed integer linear programming model. Then, to solve the problem using the GAMS software, six multi-objective decision-making (MODM) methods are investigated in order to select the best in terms of total supply chain cost, total expected number of products dispatched to customers, and their required CPU time, simultaneously. At the end, some numerical illustrations are provided to show the applicability of the proposed methodology. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文针对多产品,多周期,三阶段的供应链网络的双目标优化,该网络由制造工厂,服务不确定的配送中心(DC)和客户节点组成。这两个目标是最大程度地降低总成本,同时最大程度地提高发给客户的平均产品数量。决策变量是:(1)网络中可靠DC的数量和位置,(2)工厂生产的物品的最佳数量,(3)运输产品的最佳数量,(4)产品的最佳库存在DC和工厂,以及(5)客户节点的最佳短缺量。首先将该问题表述为约束双目标混合整数线性规划模型的框架。然后,为了使用GAMS软件解决此问题,研究了六种多目标决策(MODM)方法,以便从总供应链成本,向客户发送的总预期产品数量及其要求方面选择最佳方法。同时使用CPU时间。最后,提供了一些数字图示以显示所提出方法的适用性。 (C)2014 Elsevier Ltd.保留所有权利。

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