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Multi-criteria fuzzy optimization for locating warehouses and distribution centers in a supply chain network

机译:供应链网络中仓库和配送中心的多准则模糊优化

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This study considers the planning of a multi-product, multi-period, and multi-echelon supply chain network that consists of several existing plants at fixed places, some warehouses and distribution centers at undetermined locations, and a number of given custorner zones. Unsure market demands are taken into account and modeled as a number of discrete scenarios with known probabilities. The supply chain planning model is constructed as a multi-objective mixed-integer linear program (MILP) to satisfy several conflict objectives, such as minimizing the total cost, raising the decision robustness in various product demand scenarios, lifting the local incentives, and reducing the total transport time. For the purpose of creating a compensatory solution among all participants of the supply chain, a two-phase fuzzy decision-making method is presented and, by means of application of it to a numerical example, is proven effective in providing a compromised solution in an uncertain multi-echelon supply chain network. (C) 2007 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:这项研究考虑了一个多产品,多期限,多级的供应链网络的规划,该网络由固定地点的多个现有工厂,未确定位置的一些仓库和分销中心以及多个给定的客户区域组成。考虑到不确定的市场需求,并将其建模为多个具有已知概率的离散方案。供应链计划模型构建为多目标混合整数线性程序(MILP),以满足多个冲突目标,例如最小化总成本,提高各种产品需求场景中的决策稳健性,解除本地激励并减少总运输时间。为了在供应链的所有参与者之间创建补偿性解决方案,提出了一种两阶段模糊决策方法,并将其应用于数值示例,被证明可有效地在供应链中提供折衷解决方案。不确定的多级供应链网络。 (C)2007台湾化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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