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Modeling Relief Demands in an Emergency Supply Chain System under Large-Scale Disasters Based on a Queuing Network

机译:基于排队网络的大规模灾害下应急供应链系统建模浮雕需求

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摘要

This paper presents a multiple-rescue model for an emergency supply chain system under uncertainties in large-scale affected area of disasters. The proposed methodology takes into consideration that the rescue demands caused by a large-scale disaster are scattered in several locations; the servers are arranged in multiple echelons (resource depots, distribution centers, and rescue center sites) located in different places but are coordinated within one emergency supply chain system; depending on the types of rescue demands, one or more distinct servers dispatch emergency resources in different vehicle routes, and emergency rescue services queue in multiple rescue-demand locations. This emergency system is modeled as a minimal queuing response time model of location and allocation. A solution to this complex mathematical problem is developed based on genetic algorithm. Finally, a case study of an emergency supply chain system operating in Shanghai is discussed. The results demonstrate the robustness and applicability of the proposed model.
机译:本文提出了一种在大规模受影响区域的不确定因素下应急供应链系统的多救援模型。提出的方法考虑到大规模灾难引起的救援需求分散在几个地点;服务器布置在位于不同地方的多个梯度(资源仓库,配送中心和救援中心站点)中,但在一个紧急供应链系统内协调;根据救援需求的类型,一个或多个不同的服务器在不同车辆路线中调度紧急资源,以及多个救援需求位置的紧急救援服务队列。该紧急系统被建模为位置和分配的最小排队响应时间模型。基于遗传算法开发了对该复杂数学问题的解决方案。最后,讨论了对上海运营的紧急供应链系统的案例研究。结果证明了所提出的模型的稳健性和适用性。

著录项

  • 作者

    Xinhua He; Wenfa Hu;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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