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首页> 外文期刊>Transportation Research Part B: Methodological >Modelling and managing the integrated morning-evening commuting and parking patterns under the fully autonomous vehicle environment
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Modelling and managing the integrated morning-evening commuting and parking patterns under the fully autonomous vehicle environment

机译:在全自动车辆环境下建模和管理集成的早晚通勤和停车模式

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摘要

This study is the first in the literature to analytically investigate the traffic dynamics of the integrated morning and evening commutes when daily trips are completed with autonomous vehicles (AVs). Given the parking locations of AVs resulting from the morning commute, firstly we analyse the evening commuting pattern, at which no traveller can reduce the individual travel cost given other AVs' times of departures from the parking spaces. The equilibrium traffic pattern at the evening commute is then integrated with the morning commute, where equilibrium choices of departure time from home and parking location are derived and analysed. We then study the integrated morning-evening commuting pattern at the system optimum and develop the road tolling scheme to achieve the system optimum. Furthermore, this study analyses the optimal AV parking supply strategy to minimise the total system cost, which is comprised of the total social parking cost and the total daily travel cost under either user equilibrium or system optimum traffic pattern. We also illustrate the modelling insights through numerical studies regarding relationship among traffic efficiency, tolling schemes and AV parking supply plans. This study highlights the differences in daily commuting and parking patterns between the AV situation and the non-AV situation, and sheds light on how traffic and parking should be managed or planned in the future. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这项研究是文献中第一个分析性地研究自动驾驶汽车(AV)完成日常出行时早晚通勤交通动态的文献。考虑到早晨通勤产生的自动驾驶汽车的停车位置,首先,我们分析了夜间通勤模式,在这种模式下,考虑到其他自动驾驶汽车离开停车空间的时间,没有旅行者可以减少个人旅行成本。然后将夜间通勤的均衡交通模式与早晨通勤整合,从中得出并分析离开家和停车位置的出发时间的均衡选择。然后,我们在系统最佳状态下研究了综合的早晚通勤模式,并制定了收费方案以实现系统最佳状态。此外,本研究分析了最佳的AV停车供应策略,以最大程度地降低总系统成本,该总成本包括在用户平衡或系统最佳交通模式下的总社会停车成本和每日总出行成本。我们还将通过有关交通效率,通行费方案和AV停车场供应计划之间关系的数值研究来说明建模的见解。这项研究突出了自动驾驶状态和非自动驾驶状态之间日常通勤和停车模式的差异,并阐明了未来应该如何管理或计划交通和停车。 (C)2019 Elsevier Ltd.保留所有权利。

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