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Conflict-point formulation of intersection control for autonomous vehicles

机译:自动驾驶汽车交叉口控制的冲突点公式

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摘要

Reservation-based intersection controls, in which vehicles reserve space-time paths through the intersection, have the potential to make greater use of intersection capacity than traffic signals. However, the efficiency of previous microsimulations of reservations has been severely limited by, a protocol that requires vehicles to request reservations and the intersection manager to accept or reject them. We propose a new protocol, AIM*, in which the intersection manager assigns reservations to vehicles, to greatly increase the optimization possibilities. Then, we present a mixed integer linear program for optimally choosing vehicle reservations under AIM*. The formulation is similar to conflict resolution models for aviation, and ensures separation at all points that vehicles might intersect. We therefore present a rolling-horizon algorithm to extend the method to larger numbers of vehicles. Results show that the optimal reservation assignments from AIM* significantly reduce delays over previous protocols. Furthermore,, the rolling horizon solutions have similar delays to a fixed horizon, thereby providing an efficient method of implementing AIM*.
机译:基于预留的交叉路口控件(其中车辆通过交叉路口保留时空路径)具有比交通信号灯更多地利用交叉路口容量的潜力。但是,先前的预订微观模拟的效率受到协议的严格限制,该协议要求车辆请求预订,而交叉路口管理器接受或拒绝。我们提出了一种新的协议AIM *,其中路口管理器将预订分配给车辆,以大大提高优化的可能性。然后,我们提出了一个混合整数线性程序,用于在AIM *下优化选择车辆预定。该表述与航空业的冲突解决模型相似,可确保车辆可能相交的所有点都分开。因此,我们提出了一种滚动水平算法,以将该方法扩展到更大数量的车辆。结果表明,与以前的协议相比,AIM *的最佳预留分配可显着减少延迟。此外,滚动视野解决方案具有与固定视野相似的延迟,从而提供了一种实现AIM *的有效方法。

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