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A study of the environmental impacts of intelligent automated vehicle control at intersections via V2V and V2I communications

机译:通过V2V和V2I通讯对交叉口智能自动车辆控制的环境影响进行研究

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摘要

This article presents a novel intersection traffic management system for automated vehicles and quantifies its impact on fuel consumption and greenhouse gas emissions of CO2 relative to traditional traffic signal and roundabout intersection control. The developed intelligent traffic management (ITM) techniques, which are based on a spatiotemporal reservation scheme, ensure that vehicles proceed through the intersection without colliding with other vehicles while at the same time reducing the intersection delay and environmental impacts. Specifically, the spatiotemporal reservation scheme provides each vehicle a collision-free path that is decomposed into a speed profile along with navigational instructions. The integration of the developed microscopic traffic simulator with instantaneous emission model, provides improved assessments of the environmental impact of traffic control strategies at intersections. The simulator architecture integrates several ITM algorithms, vehicle sensors, V2V/V2I communications, and emission and fuel consumption models. Each vehicle is modeled by an agent and each agent provides information depending on the specific vehicle sensors. The ITM system is supported by V2V and V2I communications, allowing the exchange of information among vehicles and infrastructure. The data include the estimated vehicle position and speed. Compared with traditional traffic management techniques, the simulation results prove that the proposed ITM system reduces CO2 emissions significantly. The research also shows that these reductions are more significant when the traffic flow increases.
机译:本文介绍了一种用于自动车辆的新型路口交通管理系统,并定量了其相对于传统交通信号和环形交叉路口控制对燃料消耗和CO2温室气体排放的影响。基于时空预留方案的已开发智能交通管理(ITM)技术可确保车辆通过交叉路口而不会与其他车辆发生碰撞,同时减少交叉路口的延误和对环境的影响。具体而言,时空保留方案为每辆车提供了一条无冲突的路径,该路径与导航指令一起分解为速度曲线。所开发的微观交通模拟器与瞬时排放模型的集成,可以更好地评估交叉口交通控制策略对环境的影响。该模拟器体系结构集成了多种ITM算法,车辆传感器,V2V / V2I通信以及排放和燃料消耗模型。每个车辆均由代理建模,每个代理根据特定的车辆传感器提供信息。 V2V和V2I通信支持ITM系统,从而可以在车辆和基础设施之间交换信息。数据包括估计的车辆位置和速度。与传统的交通管理技术相比,仿真结果证明了所提出的ITM系统可以显着减少CO2排放。研究还表明,当交通流量增加时,这些减少的影响更大。

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