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Design and analysis of vehicle sharing programs: A systems approach.

机译:车辆共享程序的设计和分析:一种系统方法。

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摘要

Transit, touted as a solution to urban mobility problems, cannot match the addictive flexibility of the automobile. 86% of all trips in the U.S. are in personal vehicles. A more recent approach to reduce automobile dependence is through the use of Vehicle Sharing Programs (VSPs). A VSP involves a fleet of vehicles located strategically at stations across the transportation network. In its most flexible form, users are free to check out vehicles at any station and return the vehicle at a station close to their destination. Vehicle fleets are comprised of bicycles, cars or electric vehicles. Such systems offer innovative solutions to the larger mobility problem and can have positive impacts on the transportation system as a whole by reducing urban congestion. This dissertation employs a network modeling framework to quantitatively facilitate design and operate VSPs. At the strategic level, the problem of determining the optimal VSP configuration is studied. A bilevel optimization model and associated solution methods are developed and implemented for a large-scale case study in Washington D.C. The model explicitly considers the intermodalism, and views the VSP as a 'last-mile' connection of an existing transit network. At the operational level, by transferring control of vehicles to the user for improved system flexibility, exceptional logistical challenges are placed on operators who must ensure adequate vehicle stock (and parking slots) at each station to service all demand. Since demand in the short-term can be asymmetric (flow from one station to another is seldom equal to flow in the opposing direction), service providers need to redistribute vehicles to correct this imbalance. A chance-constrained program is developed that generates least-cost redistribution plans such that most demand in the near future is met. Since the program has a non-convex feasible region, two methods for its solution are developed. The model is applied to a real-world car-sharing system in Singapore where the value of accounting for inherent stochasticities is demonstrated. The framework is used to characterize the efficiency of Velib ', a large-scale bicycle sharing system in Paris, France.
机译:被誉为解决城市机动性问题的解决方案的公交无法与汽车令人上瘾的灵活性相提并论。在美国,有86%的旅行是乘坐私人交通工具。减少汽车依赖的最新方法是使用车辆共享程序(VSP)。 VSP包括战略性地位于交通网络中各个站点上的一组车队。以其最灵活的形式,用户可以自由地在任何车站检出车辆并在靠近目的地的车站退回车辆。车队由自行车,汽车或电动汽车组成。这种系统为更大的交通问题提供了创新的解决方案,并且可以通过减少城市拥堵对整个运输系统产生积极影响。本文采用网络建模框架,从数量上方便了VSP的设计和运行。在战略层面,研究了确定最佳VSP配置的问题。针对华盛顿特区的大规模案例研究开发并实施了双层优化模型和相关的解决方法。该模型明确考虑了联运方式,并将VSP视为现有公交网络的``最后一英里''连接。在操作层面上,通过将车辆的控制权转让给用户以提高系统的灵活性,操作员必须面对巨大的后勤挑战,他们必须确保每个站点有足够的车辆库存(和停车位)来满足所有需求。由于短期需求可能是不对称的(从一个站点到另一个站点的流量很少等于在相反方向上的流量),因此服务提供商需要重新分配车辆以纠正这种不平衡。开发了机会受限程序,该程序生成成本最低的重新分配计划,从而可以满足近期的大多数需求。由于该程序具有非凸可行域,因此开发了两种解决方案。该模型已应用于新加坡的现实世界中的汽车共享系统,该系统证明了固有随机性的计算价值。该框架用于表征法国巴黎的大型自行车共享系统Velib'的效率。

著录项

  • 作者

    Nair, Rahul.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Engineering Civil.;Urban and Regional Planning.;Transportation.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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