A Cyber-physical Approach for Emergency Braking in Close-Distance Driving Arrangements

Dharshan Krishna Murthy, Alejandro Masrur
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引用次数: 1

Abstract

In addition to fuel/energy savings, close-distance driving or platooning allows compacting vehicle flows and, hence, increasing throughput on congested roads. The shorter the inter-vehicle separation is in such settings, the more the benefits. However, it becomes considerably harder to guarantee safety, in particular, when braking in an emergency. In this article, we are concerned with this problem and propose a cyber-physical approach that considerably reduces the stopping distance of a platoon with inter-vehicle separations shorter than one vehicle length (i.e., 5 m) without sacrificing safety and independent of the road profile, i.e., whether on a flat road or in a downhill. The basic idea is to implement a cooperative behavior where a vehicle sends a distress message if it fails to achieve an assigned deceleration when braking in a platoon. This way, other vehicles in the arrangement can adapt their decelerations to avoid collisions. We illustrate and evaluate our approach based on detailed simulations involving high-fidelity vehicle models.
近距离驾驶紧急制动的网络物理方法
除了节省燃料/能源外,近距离驾驶或队列行驶还可以压缩车辆流量,从而增加拥堵道路上的吞吐量。在这种情况下,车辆间间隔越短,收益越大。然而,要保证安全变得相当困难,特别是在紧急情况下刹车时。在本文中,我们关注这个问题,并提出了一种网络物理方法,该方法可以在不牺牲安全和独立于道路轮廓的情况下,大大缩短车辆间距小于一个车辆长度(即5米)的车队的停车距离,即无论是在平坦的道路上还是在下坡的道路上。其基本思想是实现一种合作行为,如果车辆在队列中制动时未能达到指定的减速,则会发送求救信息。这样,其他车辆就可以调整减速以避免碰撞。我们基于涉及高保真车辆模型的详细模拟来说明和评估我们的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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