基于离散时间占用轨迹的自主交通智能交叉口管理

Q. Lu, Kyoung-Dae Kim
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引用次数: 21

摘要

本文提出了一种新的方法,称为离散时间占用轨迹(DTOT),用于自动交通的交叉口管理,其中系统中的所有车辆都是自动车辆(AVs),并且能够进行无线车辆到交叉口(V2I)通信。提出的基于dott的交叉口管理的主要优点是,它使我们能够更有效地利用交叉口内的空间,从而减少车辆通过交叉口的延误。在该框架中,十字路口根据自动驾驶汽车提出的dtot来协调自动驾驶汽车的运动,使其有效地通过十字路口,同时避免碰撞。当车辆之间的dtot发生碰撞时,十字路口修改冲突的dtot以避免碰撞,并要求自动驾驶汽车按照修改后的dtot驶入和穿过十字路口。我们通过使用开源交通模拟器(称为城市交通模拟(SUMO))进行仿真来验证所提出方法的效率。为了正确捕获算法的吞吐量和公平性,我们还定义了一个新的度量:有效平均行程时间。仿真结果表明,DTOT算法的性能优于现有的并行交叉口管理方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intelligent Intersection Management of Autonomous Traffic Using Discrete-Time Occupancies Trajectory
In this paper, a novel approach, called the Discrete-Time Occupancies Trajectory (DTOT), is proposed for intersection management of autonomous traffic in which all vehicles in the system are Autonomous Vehicles (AVs) and capable of wireless Vehicle-to-Intersection (V2I) communication. The main advantage of the proposed DTOT-based intersection management is that it enables us to utilize the space within an intersection more efficiently resulting in less delay for vehicles to cross the intersection. In the proposed framework, an intersection coordinates the motions of AVs based on their proposed DTOTs to let them cross the intersection efficiently while avoiding collisions. In case when there is a collision between vehicles' DTOTs, the intersection modifies conflicting DTOTs to avoid the collision and requests AVs to approach and cross the intersection according to the modified DTOTs. We verify the efficiency of the proposed approach through simulation using an open-source traffic simulator, called the Simulation of Urban Mobility (SUMO). To correctly capture the throughput and fairness of algorithms, we also defined a novel measure: Effective Average Trip Time. The simulation results show that DTOT algorithm performs better than other existing intersection management scheme: concurrent intersection management scheme. 
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