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Analysis, Control, and Evaluation of Mobility-on-Demand Systems: A Queueing-Theoretical Approach

机译:按需移动性系统的分析,控制和评估:排队 - 理论方法

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This paper presents a queueing-theoretical approach to the analysis, control, and evaluation of mobilityon-demand (MoD) systems for urban personal transportation. A MoD system consists of a fleet of vehicles providing one-way car-sharing service and a team of drivers to rebalance such vehicles. The drivers then rebalance themselves by driving select customers similar to a taxi service. We model the MoD system as two coupled closed Jackson networks with passenger loss. We show that the system can be approximately balanced by solving two decoupled linear programs and exactly balanced through nonlinear optimization. The rebalancing techniques are applied to a system sizing example using taxi data in three neighborhoods of Manhattan. Finally, we formulate a real-time closed-loop rebalancing policy for drivers and perform case studies of two hypothetical MoD systems in Manhattan and Hangzhou, China. We show that the taxi demand in Manhattan can be met with the same number of vehicles in a MoD system, but only requires 1/3 to 1/4 the number of drivers; in Hangzhou, where customer demand is highly unbalanced, higher driver to vehicle ratios are required to achieve good quality of service.
机译:本文提出了对城市个人交通运输的分析,控制和评估的分析,控制和评估的排队 - 理论方法。 MOD系统包括一批车辆,提供单向汽车共享服务和一支司机团队,以重新平衡这些车辆。然后,司机通过驾驶类似于出租车服务的客户来重新平衡。我们将MOD系统塑造为具有乘客损失的两个耦合封闭的杰克逊网络。我们表明系统可以通过求解两个分离的线性程序并通过非线性优化完全平衡来近似平衡。重新平衡技术应用于使用曼哈顿三个街区的出租车数据的系统规模示例。最后,我们为司机制定了一个实时闭环重新平衡政策,并对中国曼哈顿和杭州的两个假设MOD系统进行了案例研究。我们表明,曼哈顿的出租车需求可以在Mod系统中使用相同数量的车辆,但只需要1/3到1/4的司机的数量;在杭州,客户需求非常不平衡,需要较高的车辆比率来实现良好的服务质量。

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