使用延迟自我强化的混合自动驾驶汽车安全增加交通交叉口的通行能力

Yudong Lin, Anuj Tiwari, B. Fabien, S. Devasia
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摘要

如果所有自动驾驶汽车(AVs)都有交通信号灯与车辆通信(TLVC),那么十字路口的通行能力就会增加,从而更好地控制车辆间距,减少启动和通过十字路口所需的时间。然而,在混合使用自动驾驶汽车的情况下,有些车辆有TLVC,有些没有TLVC, TLVC的容量改进就会丧失,并且可能会受到潜在碰撞的影响。在向完全连接的自动驾驶汽车(cav)过渡的过程中,这些场景是可以预见的。这项工作的主要贡献是表明,在混合自动驾驶汽车网络中,使用延迟自强化(DSR)可以安全地恢复具有TLVC的自动驾驶汽车在交通灯处增加的容量。使用DSR的优点是,每辆自动驾驶汽车都使用过去动作的延迟版本来增强其动作,即使在没有集中通信的情况下,它也可以保持较小的间距误差(即保持内聚)。因此,即使在混合自动驾驶汽车网络中,使用DSR也可以保持交通路口的通行能力,在混合自动驾驶汽车网络中,有些车辆无法访问TLVC。仿真结果表明,与不使用DSR的情况相比,使用DSR可以提高容量和安全性。特别是在没有TLVC的情况下,DSR可以提高38%的流量速度,从而提高了流量容量。此外,在不同的混合连接场景下,DSR通过将最大间距误差的变化减少96%来提高安全性,从而消除了在没有DSR的情况下发生碰撞的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Safely increasing capacity of traffic intersections with mixed autonomous vehicles using delayed self reinforcement
Capacity at traffic intersections can be increased if all autonomous vehicles (AVs) have traffic-light-to-vehicle-communication (TLVC), leading to better inter-vehicle spacing control and reduction of time needed to start and move through an intersection. However, with a mix of autonomous vehicles, some vehicles with TLVC and some without TLVC, the capacity improvements of TLVC are lost and safety can be compromised with potential collisions. Such scenarios can be expected during the transition to fully connected autonomous vehicles (CAVs). The main contribution of this work is to show that the increased capacity of CAVs with TLVC at traffic lights can be recovered safely for mixed AVs network by using delayed self reinforcement (DSR). The advantage of using DSR, where each autonomous vehicles augment its action using delayed versions of past actions, is that it can keep the spacing errors small (i.e., maintain cohesion) even if centralized communication is not available. Therefore, the use of DSR maintains the capacity of traffic intersections even for mixed AVs network, where some vehicles do not have access to the TLVC. Simulation results show the improvement of capacity and safety with the use of DSR when compared to the case without DSR. In particular, DSR improves the traffic capacity by increasing the traffic flow speed by 38% when TLVC is not available. Furthermore, DSR improves safety by reducing the variation in maximum spacing error by 96% under different mixed-connectivity scenarios at the intersection, and thereby, removes the potential for collision seen in the case without DSR.
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