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Deployment Optimization of Connected and Automated Vehicle Lanes with the Safety Benefits on Roadway Networks

机译:巷道网络安全益处的连接和自动车道部署优化

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Reasonable deployment of connected and automated vehicle (CAV) lanes which separating the heterogeneous traffic flow consisting of both CAVs and human-driven vehicles (HVs) can not only improve traffic safety but also greatly improve the overall roadway efficiency. This paper simplified CAV lane deployment plan into the problem of traffic network design and proposed a comprehensive decision-making method for CAV lane deployment plan. Based on the traffic equilibrium theory, this method aims to reduce the travel cost of the traffic network and the management cost of CAV lanes using a bilevel primary-secondary programming model. In addition, the upper level is the decision-making scheme of the lane deployment, while the lower level is the traffic assignment model including CAV and HV modes based on the decision-making scheme of the upper level. After that, a genetic algorithm was designed to solve the model. Finally, a medium-scaled traffic network was selected to verify the effectiveness of the proposed model and algorithm. The case study shows that the proposed method obtained a feasible scheme for lane deployment considering from both the system travel cost and management cost of CAV lanes. In addition, a sensitivity analysis of the market penetration rate of CAVs, traffic demand, and the capacity of CAVLs further proves the applicability of this model, which can achieve better allocation of system resources and also improve the traffic efficiency.
机译:合理的连接和自动化车辆(CAV)通道的合理部署,其分离由骑士船员和人机车辆(HVS)组成的异质交通流量(HVS)不能仅提高交通安全,而且可以大大提高整体道路效率。本文简化了CAV车道部署计划进入交通网络设计问题,提出了一种用于CAV车道部署计划的综合决策方法。基于交通均衡理论,该方法旨在利用双级初级编程模型降低交通网络的旅行成本和Cav车道的管理成本。此外,上层是车道部署的决策方案,而较低级别是基于上层的决策方案的CAV和HV模式包括CAV和HV模式的流量分配模型。之后,设计了一种遗传算法来解决模型。最后,选择了中级的业务网络以验证所提出的模型和算法的有效性。案例研究表明,考虑到腔车道的系统旅行成本和管理成本,所提出的方法获得了泳道部署的可行方案。此外,对CAVE,交通需求和CAVL的能力的敏感性分析进一步证明了该模型的适用性,这可以实现更好的系统资源配置并提高交通效率。

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