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首页> 外文期刊>Intelligent Transport Systems, IET >Penetration effect of connected and automated vehicles on cooperative on-ramp merging
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Penetration effect of connected and automated vehicles on cooperative on-ramp merging

机译:联网和自动车辆对合作匝道合并的渗透作用

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摘要

Earlier work has established a centralised cooperative merging framework of optimally coordinating two strings of connected and automated vehicles (CAVs) passing through the on-ramp merging zone. The proposed merging strategy is capable of making a good trade-off between performance and computational cost. In this study, the authors address the problem of optimally coordinating CAVs under mixed traffic conditions, where both CAVs and human-driven vehicles (non-CAVs) travel on the roads, so as to enhance efficiency while guaranteeing safety constraints. A hierarchical cooperative merging framework is proposed for CAVs, which integrates merging sequence scheduling strategies (high level) and motion planning methods (low level). The impacts of CAV penetration (i.e. the fraction of CAVs relative to all vehicles) on throughput, delay, fuel consumption and emission are also investigated under different traffic demands. Simulation-based case studies indicate that the performance improvement becomes more significant as the CAV penetration rate increases and about 30% CAV penetration can effectively mitigate the shockwave and reduce traffic congestion.
机译:早期的工作已经建立了一个集中式的协作合并框架,该框架可以最佳地协调通过匝道合并区域的两串连接的自动驾驶汽车(CAV)。所提出的合并策略能够在性能和计算成本之间做出良好的折衷。在这项研究中,作者解决了混合交通条件下CAV和驾驶员车辆(非CAV)都在道路上行驶时最佳协调CAV的问题,从而在保证安全约束的同时提高了效率。提出了一种用于CAV的分层协作合并框架,该框架集成了合并序列调度策略(高级)和运动计划方法(低级)。还研究了在不同交通需求下,CAV渗透率(即CAV相对于所有车辆的比例)对吞吐量,延误,燃料消耗和排放的影响。基于仿真的案例研究表明,随着CAV渗透率的提高,性能提高变得更加重要,大约30%的CAV渗透率可以有效缓解冲击波并减少交通拥堵。

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