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A Novel Virtual Traffic Light Algorithm Based on V2V for Single Intersection in Vehicular Networks

机译:一种基于V2V的新型虚拟交通灯算法,用于车辆网络中的单个交点

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For the vehicle passing priority, the existing virtual traffic light algorithm only considered the factor of the arrival time, a group of vehicles won't transfer the wayleave until they all pass completely. This method cannot achieve the maximum road traffic throughput capacity. This paper designs a queuing chain model and proposes a virtual traffic lights algorithm for Single Intersection (for short SVTL) based on the queuing chain model, considering comprehensively three parameters: the waiting time of each lane, the length of queue chain and the number of queues. The SVTL algorithm eliminates the phenomenon of waiting in vain basically, saves the waiting time of the vehicle, and avoids unnecessary parking conditions. The simulation shows that the SVTL shortens the average waiting time when the traffic density is high, compared with the Common Traffic Lights (CTL) and the existing virtual traffic light algorithm DVTL, the average speed is increased by 36.9% and 16.2% respectively.
机译:对于车辆通过优先级,现有的虚拟流量灯算法仅考虑到达时间的因素,一组车辆不会转移WATLEAVE直到它们完全通过。此方法无法达到最大的道路流量吞吐量。本文设计了一个排队链模型,并提出了一种基于排队链模型的单个交叉点(对于短SVTL)的虚拟交通灯算法,考虑全面三个参数:每个车道的等待时间,队列链的长度和数量队列。 SVTL算法基本上消除了在Vain中等待的现象,节省了车辆的等待时间,避免了不必要的停车条件。模拟表明,与公共交通灯(CTL)和现有的虚拟流量灯算法DVTL相比,SVTL缩短了流量密度高的平均等待时间,平均速度分别增加了36.9%和16.2%。

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