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Exploring the Performance of Different On-Demand Transit Services Provided by a Fleet of Shared Automated Vehicles: An Agent-Based Model

机译:探索由共享自动化车队提供的不同点播运输服务的性能:基于代理的模型

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摘要

Automated vehicles used as public transport show a great promise of revolutionizing current transportation systems. Still, there are many questions as to how these systems should be organized and operated in cities to bring the best out of future services. In this study, an agent-based model (ABM) is developed to simulate the on-demand operations of shared automated vehicles (SAVs) in a parallel transit service (PTS) and a tailored time-varying transit service (TVTS). The proposed TVTS system can switch service schemes between a door-to-door service (DDS) and a station-to-station service (SSS) according to what is best for the service providers and the travelers. In addition, the proposed PTS system that allows DDS and SSS to operate simultaneously is simulated. To test the conceptual design of the proposed SAV system, simulation experiments are performed in a hypothetical urban area to show the potential of different SAV schemes. Simulation results suggest that SAV systems together with dynamic ridesharing can significantly reduce average waiting time, the vehicle kilometres travelled and empty SAV trips. Moreover, the proposed optimal vehicle assignment algorithm can significantly reduce the empty vehicle kilometres travelled (VKT) for the pickups for all tested SAV systems up to about 40% and improve the system capacity for transporting the passengers. Comparing the TVTS system, which has inconvenient access in peak hours, with the PTS systems, which always makes available door-to-door transport, we conclude that the latter could achieve a similar system performance as the former in terms of average waiting time, service time and system capacity.
机译:用作公共交通的自动化车辆表现出彻底改变当前运输系统的伟大希望。尽管如此,如何在城市组织和运营这些系统的问题许多问题,以带来未来的服务。在本研究中,开发了一种基于代理的模型(ABM)以模拟并行传输服务(PTS)中共享自动车辆(SEVS)的按需操作和定制的时变运输服务(TVTS)。所提出的TVTS系统可以根据服务提供商和旅行者的最佳选择,在门到门服务(DDS)和站到站服务(SSS)之间切换服务方案。此外,模拟了允许DDS和SSS同时操作的所提出的PTS系统。为了测试所提出的SAV系统的概念设计,在假设的城市地区进行了模拟实验,以显示不同的SAV方案的潜力。仿真结果表明,SAV系统与动态riveShiening一起可以显着降低平均等待时间,车辆公里行进和空的SAV旅行。此外,所提出的最佳车辆分配算法可以显着减少传输(VKT)的空车辆公里,用于所有测试的SAV系统的拾取器,高达约40%,提高运输乘客的系统容量。比较TVTS系统,在高峰时段内具有不方便的访问,PTS系统总是可以提供门到门运输,我们得出结论,后者可以在平均等待时间方面实现与前者相似的系统性能,服务时间和系统容量。

著录项

  • 来源
    《Journal of Advanced Transportation》 |2019年第5期|7878042.1-7878042.16|共16页
  • 作者单位

    Delft Univ Technol Delft Inst Appl Math Delft Netherlands;

    Delft Univ Technol Dept Transport & Planning Delft Netherlands;

    Delft Univ Technol Delft Inst Appl Math Delft Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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