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Modeling and Simulating Urban Traffic Flow Mixed With Regular and Connected Vehicles

机译:建模和模拟城市交通流量与常规和连通车辆混合

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摘要

In the upcoming decades, connected vehicles will join regular vehicles on the road, and the characteristics of traffic flows will change accordingly. To better understand mixed traffic flow (regular vehicles and connected vehicles) characteristics, a generic car-following modeling framework for this new mixed traffic flow on an urban road under a connected vehicle environment is proposed in this paper. Considering a vehicle’s speed, which is affected by the speed of the preceding vehicle, an improved intelligent driver model (IDM) is used as the car-following model for regular vehicles. An extended cooperative adaptive cruise control (CACC) based on the nonlinear dynamic headway strategy was established as the car-following model for connected vehicles. The fundamental diagram model of mixed traffic flow under different market penetration rates of CACC vehicles is investigated, and the traffic flow operation mechanism of connected vehicles is analyzed to improve the capacity. In addition, simulation experiments on urban roads are designed to evaluate the queue time and length of vehicles passing through congested sections under different market penetration rates of CACC vehicles. The results demonstrate that the proposed model can effectively describe the current situation of traffic flow on urban roads under different market penetration rates of CACC vehicles. The increase in the market penetration rates of CACC vehicles can significantly improve the traffic flow efficiency. When CACC vehicles reach 100% of all vehicles, the queue length on congested roads can be shortened by 64.6%, and the total travel time on congested roads can be reduced by 48.3%.
机译:在即将到来的数十年中,连通的车辆将加入道路上的常规车辆,交通流量的特点将相应地改变。为了更好地了解混合交通流量(常规车辆和连接的车辆)特征,本文提出了一种在城市道路上进行这种新的混合交通流量的通用汽车 - 之后的建模框架。考虑到受前车速度影响的车辆的速度,改进的智能驱动器模型(IDM)用作普通车辆的跟踪模型。基于非线性动态通道策略的扩展合作自适应巡航控制(CACC)是作为连通车辆的汽车跟踪模型。研究了在不同市场渗透率下的混合交通流量的基本图模型CACC车辆的渗透率,分析了连接车辆的交通流量运行机制,以提高容量。此外,城市道路的仿真实验旨在评估通过CACC车辆的不同市场渗透率下通过拥挤部分的车辆的排队时间和长度。结果表明,拟议的模型可以有效地描述了CACC车辆不同市场渗透率下城市道路交通流量的现状。 CACC车辆市场渗透率的增加可以显着提高交通流量效率。当CACC车辆达到所有车辆的100%时,拥挤道路上的队列长度可以缩短64.6%,拥挤道路上的总旅行时间可降低48.3%。

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