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Network design formulations, modeling, and solution algorithms for goods movement strategic planning.

机译:用于货物移动战略计划的网络设计公式,建模和解决方案算法。

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摘要

Efficient freight transportation is essential for a strong economic system. Increases in demands for freight transportation, however, lessens the efficiency of existing infrastructure. In order to alleviate this problem effectively, evaluation studies must be performed in order to invest limited resources for maximum social benefits. In addition to many difficulties related to evaluating individual projects, complimentary and substitution effects that occur when considering transportation projects together must be properly accounted for. Current practices, however, limit the number of projects that can feasibly be considered at one time.;This dissertation proposes network design models which can automatically create project combinations and search for the best of these. Network design models have been studied for the passenger movements and focus on highway expansions. In this dissertation, the focus is shifted to freight movements which involve multimodal transportation improvements. A freight network design model is developed based on a bi-level optimization model. The development then involves two components. The first task is to set the freight investment problems within the bi-level format. This includes finding a suitable freight flow prediction model which can work well with the bi-level model. The second task is to provide a solution algorithm to solve the problem.;The dissertation sets the framework of the freight flow network design model, identifies expected model issues, and provides alternatives that alleviate them. Through a series of developments, the final model uses a shipper-carrier freight equilibrium model to represent freight behaviors. Capacity constraints are used as a means to control service limitations since reliability issues, an important factor for freight movements, cannot be captured by steady state traffic assignment. A case study is implemented to allocate a budget for improvements on the California highway network. The transportation modes are selected by the shipper model which can include truck, rail, or multimodal transportation. The results shown that the proposed network design model provides better solutions compared with traditional ranking methods. The solution algorithm can manage the problem with a reasonable number of project alternatives.
机译:高效的货运对于强大的经济体系至关重要。然而,货运需求的增加降低了现有基础设施的效率。为了有效缓解此问题,必须进行评估研究,以投入有限的资源以获得最大的社会效益。除了评估单个项目的许多困难之外,还必须适当考虑将运输项目一起考虑时产生的互补和替代效应。然而,当前的实践限制了一次可以考虑的项目数量。本文提出了一种网络设计模型,该模型可以自动创建项目组合并搜索其中的最佳组合。已经研究了针对旅客运动的网络设计模型,并着重于高速公路的扩建。本文将重点转移到涉及多式联运改进的货运领域。基于双层优化模型开发了货运网络设计模型。开发涉及两个部分。第一个任务是在双层格式中设置货运投资问题。这包括找到合适的货运量预测模型,该模型可以与双层模型很好地协同工作。第二个任务是提供解决问题的算法。本文为货运网络设计模型建立了框架,确定了预期的模型问题,并提出了缓解这些问题的替代方案。通过一系列的发展,最终模型使用托运人-承运人的货运均衡模型来表示货运行为。容量限制被用作控制服务限制的一种方法,因为可靠性问题是货运活动的重要因素,稳态交通分配无法捕获。实施了一个案例研究,以分配预算以改善加利福尼亚州的高速公路网。运输模式由托运人模型选择,可以包括卡车,铁路或多式联运。结果表明,与传统的排序方法相比,该网络设计模型提供了更好的解决方案。解决方案算法可以通过合理数量的项目替代方案来解决问题。

著录项

  • 作者

    Apivatanagul, Pruttipong.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Transportation.;Engineering System Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 167 p.
  • 总页数 167
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 综合运输;系统科学;
  • 关键词

  • 入库时间 2022-08-17 11:38:36

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