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Simulation of the penetration rate effects of ACC and CACC on macroscopic traffic dynamics

机译:ACC和CACC渗透率对宏观交通动态影响的模拟

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A macroscopic approach modeling the penetration rate of Adaptive Cruise Control (ACC) and Cooperative Adaptive Cruise Control (CACC) vehicles and its effect on traffic dynamics is investigated. Modeling is based on the introduction of a relaxation term in a gas-kinetic traffic flow (GKT) model that satisfies the time-gap principle of ACC or CACC systems and allows for consideration of mixed traffic of manual and ACC/CACC vehicles. The relaxation time is assigned to multiple leading vehicles in the CACC case; whereas in the ACC case only relates to the direct leading vehicle. Numerical simulations investigate the effect of the penetration rates of ACC and CACC equipped vehicles to traffic flow macroscopic stability, with respect to perturbations introduced in a ring road, and to flow characteristics in an open freeway with merging flow at an on-ramp.
机译:研究了对自适应巡航控制系统和协作式自适应巡航控制系统的渗透率进行建模的宏观方法,并研究了其对交通动态的影响。建模基于气体动力学交通流(GKT)模型中引入的松弛项,该松弛项满足ACC或CACC系统的时间间隔原理,并考虑了手动和ACC / CACC车辆的混合交通。在CACC案例中,弛豫时间分配给了多个领先的车辆;而在ACC情况下,仅与直接领导车辆有关。数值模拟研究了配备ACC和CACC的车辆的渗透率对交通流量宏观稳定性的影响,涉及在环形道路上引入的扰动,以及在有匝道汇流的情况下对开放高速公路的流量特性的影响。

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