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A framework for railway transit network design with first-mile shared autonomous vehicles

机译:铁路运输网络设计框架与一英里共享自动车辆

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Providing a railway transit system (RTS) in less populated areas is a challenging task for transportation agencies due to its high construction and operating costs. With the advent of automation, shared autonomous vehicles (SAVs) as an integral part of public transit services has the potential to enhance the design of transit systems. In this paper, we present a joint optimization framework of railway transit network design and SAV first-mile service that minimizes the total cost of the combined RTS-SAV services and commuters' waiting time, while serving a dynamic travel demand in the network. The proposed model optimizes the SAV fleet size and the RTS alignment while enabling vehicle relocations to tackle the vehicle imbalance issue in the SAV service. Due to the non-linear and mixed-integer formulation, we develop a fixed-point algorithm for this joint RTS-SAV problem where we transform the original problem into a mixed-integer linear programming (MILP) formulation. Our results indicate that the joint RTS-SAV services can be constructed and operated at a lower cost than either of the RTS or SAV services alone. Furthermore, the resulting joint RTS-SAV services are underpinned by a shorter railway alignment and larger fleet size rather than a multi-link extension. Additionally, the joint RTS-SAV services is robust to the variation in total demand, with respect to the railway alignment, SAV utilization and commuters' waiting time.
机译:由于其高建设和运营成本,提供较少人口稠密地区的铁路运输系统(RTS)是运输机构的具有挑战性的任务。随着自动化的出现,分享自动车辆(SED)作为公共交通服务的组成部分有可能加强运输系统的设计。本文介绍了铁路运输网络设计的联合优化框架和SAV一英里服务,最大限度地减少了RTS-SAV服务和通勤者等待时间的总成本,同时为网络提供动态旅行需求。该建议的模型优化了SAV舰队尺寸和RTS对齐,同时使车辆迁移能够在SAV服务中解决车辆不平衡问题。由于非线性和混合整数的配方,我们开发了一个针对这个关节RTS-SAV问题的定点算法,我们将原始问题转换为混合整数线性编程(MILP)制定。我们的结果表明,联合RTS-SAV服务可以以低于RTS或SAV服务的成本较低。此外,由此产生的联合RTS-SAV服务由较短的铁路对准和较大的车队尺寸而不是多链路扩展来支撑。此外,联合RTS-SAV服务对总需求的变化具有鲁棒,关于铁路对准,SAV利用率和通勤者的等待时间。

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