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Exploring the effects of connected and automated vehicles at fixed and actuated signalized intersections with different market penetration rates

机译:在固定和致动的信号交叉点探索连接和自动车辆的影响,以不同的市场渗透率

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摘要

To investigate the effects of different market penetration rates (MPRs) of intelligent vehicles - Intelligent Driving Model (IDM) for autonomous vehicles (AVs), Adaptive Cruise Control (ACC) for AVs, and Cooperative Adaptive Cruise Control (CACC) for connected and automated vehicles (CAVs) - in mixed traffic flows with human driving vehicles (HDVs) at intersections, three signalized intersections (fixed signal, gap-based actuated signal, and delay-based actuated signal-controlled intersections) with low, medium, and high traffic demands are investigated. The simulation results indicate that CAVs with the CACC system outperform AVs with ACC or IDM systems and could reduce the average delay under low and high demand scenarios by 49% to 96%. CAVs with the CACC system could also significantly reduce average delay with a 20% MPR, while significant drops could only be observed after 60% and 80% MPRs for AVs with the ACC/IDM system. Gap-based and delay-based actuated signal control schemes are preferred under medium traffic flow demand, and CACC/ACC systems could significantly improve the performance of actuated signal-controlled intersections under high traffic flow demand.
机译:探讨不同市场渗透率(MPRS)的智能车辆 - 智能驾驶模型(IDM)对自动车辆(AVS),AVS的自适应巡航控制(ACC)的影响,以及用于连接和自动的合作自适应巡航控制(CACC)车辆(CAVE) - 在混合交通中与人类驾驶车辆(HDV)的流量流动,具有低,介质和高流量的三个信号通知(固定信号,基于间隙的致动信号和延迟的致动信号控制的交叉点)要求调查。仿真结果表明,具有CACC系统的CAV与ACC或IDM系统的平均值,并且可以将低需求场景下的平均延迟降低49%至96%。具有CACC系统的CAVE也可以显着降低20%MPR的平均延迟,而只有在使用ACC / IDM系统的AVS的60%和80%MPRS后才能观察到显着下降。基于间隙和基于延迟的致动信号控制方案是优选的,在中间业务流量需求下,CACC / ACC系统可以在高流量流量需求下显着提高致动信号控制交叉点的性能。

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