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Leveraging existing high-occupancy vehicle lanes for mixed-autonomy traffic management with emerging connected automated vehicle applications

机译:利用现有的高占用车道用于混合自主交通管理,具有新兴的自动化车辆应用

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摘要

Transportation agencies have started including phased deployment of connected and automated vehicle (CAV) technologies in their transportation plans and programs. While theoretical analyses have indicated significant benefits of CAVs for improving system performance, deploying these technologies at existing or adapted highway facilities concerns more than technological issues. This study introduces the concepts and operational strategies of using managed lanes, High-Occupancy Vehicle (HOV) lanes in particular, for mixed-autonomy traffic management. The study enhances existing and develops new algorithms for three selected freeway CAV applications as a CAV technology integration, including speed harmonization, cooperative adaptive cruise control (CACC), and cooperative merge. Instead of evaluation on a synthetic segment, this study reports a large-scale simulation-based real-world case study to investigate CAV early deployment opportunities on Interstate 66 outside the Beltway. The simulation results show that, for all scenarios, individual and bundled CAV applications can significantly improve traffic performance in terms of delay and throughput. CACC platooning is the most effective individual strategy to improve traffic performance. The bundled CAV applications can benefit the system, even with low CAV market penetration, and fully handle more than 130 percent of the existing demand with high CAV market penetration rates. Additionally, left-side dedicated ramps and shared managed lane operational strategies are also beneficial, even during early deployment stages.
机译:运输代理商已经开始,包括在运输计划和计划中分阶段部署连接和自动化车辆(CAV)技术。虽然理论分析表明了CAVE的显着效益,以改善系统性能,而在现有或适应的公路设施中部署这些技术的疑虑超过了技术问题。本研究介绍了使用管理车道,高占用车辆(HOV)车道的概念和操作策略,特别是混合自主交通管理。该研究增强了现有的三个选定的高速公路CAV应用的新算法,作为CAV技术集成,包括速度协调,合作自适应巡航控制(CACC)和合作社合并。该研究除了对合成部分进行评估,该研究报告了大规模的模拟的现实案例研究,以调查腰带66号州际公路上的CAV早期部署机会。仿真结果表明,对于所有场景,个人和捆绑的CAV应用可以在延迟和吞吐量方面显着提高交通效果。 CACC排列是改善交通业绩的最有效的个人战略。捆绑的CAV应用可以使系统有益,即使是低CAV市场渗透率,也可以通过高CAV市场渗透率完全处理超过130%的需求。此外,即使在早期部署阶段,左侧专用斜坡和共享管理车道运营策略也是有益的。

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