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Jam-avoiding adaptive cruise control (ACC) and its impact on traffic dynamics

机译:避免干扰的自适应巡航控制(ACC)及其对交通动态的影响

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摘要

Adaptive-Cruise Control (ACC) automatically accelerates or decelerates a vehicle to maintain a selected time gap, to reach a desired velocity, or to prevent a rear-end collision. To this end, the ACC sensors detect and track the vehicle ahead for measuring the actual distance and speed difference. Together with the own velocity, these input variables are exactly the same as in car-following models. The focus of this contribution is: What will be the impact of a spreading of ACC systems on the traffic dynamics? Do automated driving strategies have the potential to improve the capacity and stability of traffic flow or will they necessarily increase the heterogeneity and instability? How does the result depend on the ACC equipment level? We discuss microscopic modeling aspects for human and automated (ACC) driving. By means of microscopic traffic simulations, we study how a variable percentage of ACC-equipped vehicles influences the stability of traffic flow, the maximum flow under free traffic conditions until traffic breaks down, and the dynamic capacity of congested traffic. Furthermore, we compare different percentages of ACC with respect to travel times in a specific congestion scenario. Remarkably, we find that already a small amount of ACC equipped cars and, hence, a marginally increased free and dynamic capacity, leads to a drastic reduction of traffic congestion.
机译:自适应巡航控制(ACC)会自动使车辆加速或减速,以保持选定的时间间隔,达到所需的速度或防止追尾事故。为此,ACC传感器检测并跟踪前方车辆,以测量实际距离和速度差。连同自己的速度,这些输入变量与跟车模型中的完全相同。该贡献的重点是:ACC系统的扩展会对交通动态产生什么影响?自动驾驶策略是否具有改善交通流量的能力和稳定性的潜力,还是必定会增加异质性和不稳定性?结果如何取决于ACC设备级别?我们讨论了人类和自动驾驶(ACC)驾驶的微观建模方面。通过微观交通模拟,我们研究了可变百分比的配备ACC的车辆如何影响交通流量的稳定性,自由交通条件下直至交通瘫痪的最大流量以及拥挤交通的动态容量。此外,在特定的拥塞情况下,我们比较了旅行时间相对于ACC的不同百分比。值得注意的是,我们发现已经装有少量配备ACC的汽车,因此,自由和动态容量略有增加,从而导致交通拥堵的急剧减少。

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