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首页> 外文期刊>Annals of Operations Research >A multi-objective evolutionary optimization approach for an integrated location-inventory distribution network problem under vendor-managed inventory systems
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A multi-objective evolutionary optimization approach for an integrated location-inventory distribution network problem under vendor-managed inventory systems

机译:供应商管理库存系统下集成库存-库存配送网络问题的多目标进化优化方法

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In this paper, we propose an integrated model to incorporate inventory control decisions-such as economic order quantity, safety stock and inventory replenishment decisions-into typical facility location models, which are used to solve the distribution network design problem. A simultaneous model is developed considering a stochastic demand, modeling also the risk poling phenomenon. Multi-objective decision analysis is adopted to allow use of a performance measurement system that includes cost, customer service le»-els (fill rates), and flexibility (responsive level). This measurement system provides more comprehensive measurement of supply chain system performance than do traditional, single measure approaches. A multi-objective location-inventory model which permits a comprehensive trade-off evaluation for multi-objective optimization is initially presented. More specifically, a multiobjective evolutionary algorithm is developed to determine the optimal facility location portfolio and inventory control parameters in order to reach best compromise of these conflicting criteria. An experimental study using practical data was then illustrated for the possibility of the proposed approach. Computational results have presented promising solutions in solving a practical-size problem with 50 buyers and 15 potential DCs and proved to be an innovative and efficient approach for so called difficult-to-solve problems.
机译:在本文中,我们提出了一个集成模型,将诸如经济订单数量,安全库存和库存补充决策之类的库存控制决策纳入典型的设施选址模型中,用于解决配电网设计问题。考虑到随机需求,开发了同时模型,还对风险极化现象进行了建模。采用多目标决策分析以允许使用包括成本,客户服务水平(填充率)和灵活性(响应水平)的绩效评估系统。与传统的单一度量方法相比,此度量系统提供了对供应链系统性能的更全面的度量。首先提出了一个多目标位置-库存模型,该模型允许对多目标优化进行综合权衡评估。更具体地说,开发了一种多目标进化算法,以确定最佳的设施位置组合和库存控制参数,以便对这些冲突的标准做出最佳折衷。然后说明了使用实际数据进行的实验研究,证明了该方法的可行性。计算结果已提出了解决有50个购买者和15个潜在DC的实际规模问题的有希望的解决方案,并被证明是解决所谓的难以解决的问题的一种创新而有效的方法。

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