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Dynamics of deprivation cost in last mile distribution: The integrated resource allocation and vehicle routing problem.

机译:最后一公里分配中的剥夺成本动态:集成的资源分配和车辆路径问题。

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摘要

One of the most critical tasks after natural disaster is to organize and execute humanitarian relief operations effectively and efficiently while reaching an equitable outcome. However, due to limited resources in the initial stage of response, it becomes challenging for logistics planning authorities to target needed individuals. The concerns would be with providing an unbiased platform to make decisions about equitable distribution schedules. Therefore, developing an effective and efficient disaster relief plan that tries to treat individuals as equitable as possible was the main motivation in this research.;For this purpose, this dissertation studied a novel last mile distribution plan in the initial response phase where the key focus is the preservation of lives. An integrated vehicle routing and resource allocation problem was investigated and formulated in an allocation-routing model (RAP). The theoretical foundation of RAP is formulated as an egalitarian model where resources are to be distributed so as to maximize the welfare of the worst-off. The strategic goal is to alleviate human deprivation and suffering by minimizing the response time in regard to each beneficiary's needs fulfillment and delivery delay on the route. Equity is quantified with a min-max objective on a deprivation cost, which is a non-linear function of deprivation time. The objective function is set to minimize the maximum deprivation cost of the deliveries so that supplies arrive in a cyclical manner while all demand sites are treated equitably.
机译:自然灾害之后最重要的任务之一是在达到公平结果的同时,有效地组织和执行人道主义救济行动。但是,由于响应初期的资源有限,后勤计划主管部门很难针对需要的人员。担心的是提供一个公正的平台来制定公平的分配时间表。因此,制定一个有效且高效的救灾计划,力图使个人尽可能公平,是本研究的主要动机。为此,本文研究了一种新的在初始响应阶段的最后一英里分配计划,其中重点是是保存生命。研究了集成的车辆路径和资源分配问题,并在分配路径模型(RAP)中提出了问题。 RAP的理论基础被描述为一种平均主义的模型,在该模型中资源将被分配,以使最贫困者的福利最大化。战略目标是通过将对每个受益人的需求满足和运送延迟的响应时间减至最少,来减轻人类的匮乏和痛苦。用剥夺成本的最小-最大目标量化权益,剥夺成本是剥夺时间的非线性函数。设定目标函数是为了最大程度地减少交付的最大剥夺成本,以便在所有需求点均得到公平对待的同时,以周期性的方式到达供应。

著录项

  • 作者

    Itani, Maher N.;

  • 作者单位

    North Dakota State University.;

  • 授予单位 North Dakota State University.;
  • 学科 Operations Research.;Transportation.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 237 p.
  • 总页数 237
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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