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Dynamic system optimal performances of shared autonomous and human vehicle system for heterogeneous travellers

机译:动态系统非均匀旅行者共用自主和人工车辆系统的最优性能

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Autonomous vehicles (AV) can solve vehicle relocation problems faced by traditional one-way vehicle-sharing systems. This paper explores the deterministic time-dependent system optimum of mixed shared AVs (SAV) and human vehicles (SHV) system to provide the benchmark for the situation of mixed vehicle flows. In such a system, the system planner determines vehicle-traveller assignment and optimal vehicle routing in transportation networks to serve predetermined travel demand of heterogeneous travellers. Due to large number of vehicles involved, travel time is considered endogenous with congestion. Using link transmission model (LTM) as a traffic flow model, the deterministic time-dependent system optimum is formulated as linear programming (LP) model to minimize the comprehensive cost including travellers' travel time cost, waiting time cost and empty vehicle repositioning time cost. Numerical examples are conducted to show system performances and model effectiveness.
机译:自主车辆(AV)可以解决传统的单向车辆共享系统面临的车辆迁移问题。本文探讨了混合共享AVS(SAV)和人车(SHV)系统的确定性时间依赖性系统,为混合车辆流动的情况提供基准。在这样的系统中,系统计划者在运输网络中确定车辆旅行者分配和最佳车辆路由,以服务异构旅行者的预定旅行需求。由于涉及大量车辆,旅行时间被认为内源性充血。使用链路传输模型(LTM)作为流量模型,确定性时间依赖的系统最佳选择为线性编程(LP)模型,以最大限度地减少包括旅行者的旅行时间成本,等待时间成本和空车辆重新定位时间成本的综合成本。进行数值示例以显示系统性能和模型效果。

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