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Estimation and Analysis of Vehicle Exhaust Emissions at Signalized Intersections Using a Car-Following Model

机译:用汽车跟踪模型估计和分析信号交叉口的车辆排放

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A signalized intersection is a high fuel consumption and high emission node of a traffic network. It is necessary to study the emission characteristics of vehicles at signalized intersections in order to reduce vehicle emissions. In this study, the combination of a car-following model and the vehicle specific power emission model was used to estimate the vehicle emissions, including the CO 2 , CO, HC, and nitric oxide (NO X ) emissions, at unsaturated signalized intersections. The results of simulations show that, under the influence of the signal light, the substantial changes in a vehicle’s trajectory increase the CO 2 , CO, HC, and NO X emissions. The CO 2 , CO, HC, and NO X emissions from vehicles at signalized intersections were further analyzed in terms of signal timing, vehicle arrival rate, traffic interference, and road section speed. The results show that an increase in the signal cycle, the vehicle arrival rate, and the traffic interference amplitude result in increases in the CO 2 , CO, HC, and NO X emissions per vehicle at the intersection inbound approach, and an increase in the green signal ratio and the vehicle road section speed within a specified range has a positive significance for reducing the CO 2 , CO, HC, and NO X emissions of vehicles in the study range. The proposed method can be flexibly applied to the analysis of vehicle emissions at unsaturated signalized intersections. The obtained results provide a reference for the control and management of signalized intersections.
机译:信号交叉点是交通网络的高燃料消耗和高发射节点。有必要研究信号交叉口的车辆的排放特性,以减少车辆排放。在该研究中,用于在不饱和信号交叉点处估计车辆跟踪模型和车辆特定功率发射模型的组合来估计包括CO 2,CO,HC和一氧化氮(NO X)排放的车辆排放。仿真结果表明,在信号光的影响下,车辆轨迹的显着变化增加了CO 2,CO,HC和NO X排放。在信号时序,车辆到达速率,交通干扰和路段速度方面进一步分析了来自信号交叉口的车辆的CO 2,CO,HC和NO x排放。结果表明,信号周期,车辆到达率和交通干扰幅度的增加导致CO 2,CO,HC的增加,并且每辆车在交叉站进入方面的增加,并且增加在指定范围内的绿色信号比和车辆道路段速度对于减少CO 2,CO,HC,以及在研究范围内的车辆的X排放具有积极意义。所提出的方法可以灵活地应用于不饱和信号交叉口的车辆排放的分析。所获得的结果为信号交叉口的控制和管理提供了参考。

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