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An equilibrium analysis of commuter parking in the era of autonomous vehicles

机译:自动驾驶汽车时代通勤停车的均衡分析

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This study is the first in the literature to model the joint equilibrium of departure time and parking location choices when commuters travel with autonomous vehicles (AVs). With AVs, walking from parking spaces to the work location is not needed. Instead, AVs will drop off the commuters at the workplace and then drive themselves to the parking spaces. In this context, the equilibrium departure/arrival profile is different from the literature with non-autonomous vehicles (non-AVs). Besides modeling the commuting equilibrium, this study further develops the first-best time-dependent congestion tolling scheme to achieve the system optimum. Also, a location-dependent parking pricing scheme is developed to replace the tolling scheme. Furthermore, this study discusses the optimal parking supply to minimize the total system cost (including both the travel cost and the social cost of parking supply) under either user equilibrium or system optimum traffic flow pattern. It is found that the optimal planning of parking can be different from the non-AV situation, since the vehicles can drive themselves to parking spaces that are further away from the city center and walking of commuters is avoided. This paper sheds light on future parking supply planning and traffic management.
机译:这项研究是文献中首次对通勤者使用自动驾驶汽车(AV)行驶时出发时间和停车位置选择的联合平衡进行建模。使用AV,不需要从停车位步行到工作地点。取而代之的是,自动驾驶汽车将在工作场所从通勤者那里下来,然后将自己开到停车位。在这种情况下,平衡偏离/到达曲线与非自主车辆(非AV)的文献不同。除了对通勤均衡进行建模之外,本研究还进一步开发了第一时间最佳拥堵收费方案,以实现系统最佳状态。而且,开发了基于位置的停车收费方案以代替收费方案。此外,本研究讨论了在用户平衡或系统最优交通流量模式下,将总系统成本(包括旅行成本和停车成本的社会成本)最小化的最佳停车供应。发现停车的最佳计划可能与非AV情况不同,因为车辆可以将自己驾驶到离市中心较远的停车位,并且避免了通勤者走路。本文阐明了未来的停车供应计划和交通管理。

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