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Enhanced speed advice for connected vehicles in the proximity of signalized intersections

机译:增强了连接车辆的速度建议在信令交叉口的接近

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摘要

Technological advancements in the field of transportation are gradually enabling cooperative, connected and automated mobility (CCAM). The progress in information and communication technology (ICT) has provided mature solutions for infrastructure-to-vehicle (I2V) communication, which enables the deployment of Cooperative-ITS (C-ITS) services that can foster comfortable, safe, environmentally friendly, and more efficient traffic operations. This study focuses on the enhancement of speed advice comfort and safety in the proximity of signalized intersections, while ensuring energy and traffic efficiency. A detailed microscopic simulation model of an urban network in the city of Thessaloniki, Greece is used as test bed. The performance of dynamic eco-driving is evaluated for different penetration rates of the dynamic eco-driving technology and varying traffic conditions. The simulation analysis indicates that speed advice can be comfortable and safe without adversely impacting energy and traffic efficiency. However, efficient deployment of dynamic eco-driving depends on road design characteristics, activation distance of the service, traffic signal plans, and prevailing traffic conditions.
机译:运输领域的技术进步逐步实现合作,连接和自动移动(CCAM)。信息和通信技术的进展(ICT)为基础设施到车辆(I2V)通信提供了成熟的解决方案,这使得能够促进舒适,安全,环保的合作 - 其(C-ITS)服务和更有效的交通运营。本研究致力于提高信号交叉路口的速度建议舒适和安全性,同时确保能量和交通效率。希腊塞萨洛尼基市城市网络的详细微观仿真模型用作试验台。对动态生态驱动的性能进行了评估了动态生态驾驶技术的不同渗透率和不同的交通状况。仿真分析表明速度建议可以舒适,安全,而不会对能量和交通效率产生不利影响。但是,有效地部署动态生态驾驶取决于道路设计特征,服务的激活距离,交通信号计划和现行交通状况。

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