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Strategic planning of dedicated autonomous vehicle lanes and autonomous vehicle/toll lanes in transportation networks

机译:交通网络中专用自动驾驶车道和自动驾驶/收费车道的战略规划

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Employing vehicle communication and automated control technologies, autonomous vehicles (AVs) can safely drive closer together than human-driven vehicles (HVs), thereby potentially improving traffic efficiency. Separation between AV and HV traffic through the deployment of dedicated AV lanes is foreseen as an effective method of amplifying the benefits of AVs and promoting their adoption. However, it is important to consider mixed AV and HV traffic in a transportation network. On the one hand, it may be impractical to deploy dedicated AV lanes throughout the network, while on the other hand, dedicated AV lanes may even reduce the total traffic efficiency of a road segment when the AV flow rate is low. In this study, we considered a new form of managed lanes for AVs, designated as autonomous vehicle/toll (AVT) lanes, which grant free access to AVs while allowing HVs to access the lanes by paying a toll. We investigated the optimal deployment of dedicated AV lanes and AVT lanes in transportation networks with mixed AV and HV flows. The user equilibrium (UE) problem in a transportation network with mixed flows of AVs and HVs is first explored. We formulated the UE problem as a link-based variational inequality (VI) and identified that, with different impacts of AVs on road capacity, the UE problem can have unique or non-unique flow patterns. Considering that the UE problem may have non-unique flow distributions, we proposed a robust optimal deployment model, which is a generalized semi-infinite min-max program, to deploy the dedicated AV lanes and AVT lanes so that the system performance under the worst-case flow distributions is optimized. We proposed effective solution algorithms to solve these models and presented numerical studies to demonstrate the models and the solution algorithms. The results show that the system performance can be significantly improved through the deployment of dedicated AV lanes and AVT lanes.
机译:借助车辆通信和自动控制技术,自动驾驶汽车(AV)可以比人类驾驶的车辆(HV)安全地靠得更近,从而有可能提高交通效率。可以预见,通过部署专用AV通道将AV和HV流量分开是一种有效的方法,可以扩大AV的优势并促进其采用。但是,在运输网络中考虑混合AV和HV交通非常重要。一方面,在整个网络上部署专用AV通道可能是不切实际的,另一方面,当AV流量较低时,专用AV通道甚至可能会降低路段的总交通效率。在这项研究中,我们考虑了一种新型的AV专用车道,称为自动驾驶/收费(AVT)车道,它可以免费访问AV,同时允许HV通过支付通行费来进入车道。我们研究了混合AV和HV流的交通网络中专用AV车道和AVT车道的最佳部署。首先探讨了混合有AV和HV的交通网络中的用户平衡(UE)问题。我们将UE问题表述为基于链接的变分不等式(VI),并确定,由于AV对道路通行能力的不同影响,UE问题可能具有唯一或非唯一的流动模式。考虑到UE问题可能存在非唯一的流量分布,我们提出了一个鲁棒的最优部署模型,它是广义的半无限最小-最大程序,用于部署专用的AV通道和AVT通道,从而使系统性能在最坏的情况下得以实现。 -案例流分布进行了优化。我们提出了有效的求解算法来求解这些模型,并进行了数值研究以证明模型和求解算法。结果表明,通过部署专用AV通道和AVT通道,可以显着提高系统性能。

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