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On the Reliability of Safety Message Broadcast in Urban Vehicular Ad hoc Networks

机译:城市车载自组网中安全消息广播的可靠性

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Road safety is one of the most important emerging applications envisioned for Vehicular Ad hoc Networks (VANETs). Generally, such applications involve the broadcast of safety messages, consisting of beacons transmitting vehicles' state (e.g. position and velocity) with a regular period, as well as emergency messages warning about unexpected critical events. From the perspective of safety, the application performance depends foremost on two metrics: for the event-driven warning messages, the probability of message reception; and for periodic messages, the variability of the inter-reception time (IRT), which ultimately determines the freshness of the information received by the driver. In this paper, we develop an analytical model to compute the above metrics in an urban traffic scenario. Focusing on a road segment linked to a signalized junction as a basic building block of urban traffic systems, we apply a novel road traffic density model to investigate the dynamics of the reliability metrics and characterize the region(s) on the road segment according to the achieved safety level. Our numerical study shows that in broadcast mode, the hidden terminal effect is the driving factor determining the reliability of transmissions. Furthermore, the impact of hidden terminals has the greatest effect in road sections where vehicles have high velocity, leading to the poorest performance in regions where reliable reception is needed the most in order to minimize the risk of accidents.
机译:道路安全是车载自组织网络(VANET)所设想的最重要的新兴应用之一。通常,这样的应用涉及广播安全消息,该安全消息包括以固定周期发送车辆状态(例如,位置和速度)的信标,以及警告关于意外的关键事件的紧急消息。从安全的角度来看,应用程序的性能主要取决于两个指​​标:对于事件驱动的警告消息,消息接收的可能性;对于周期性消息,接收间时间(IRT)的可变性最终决定了驾驶员接收到的信息的新鲜度。在本文中,我们开发了一个分析模型来计算城市交通场景中的上述指标。重点关注与信号交叉路口相连的路段,将其作为城市交通系统的基本构建块,我们应用新型路况密度模型来研究可靠性指标的动态变化,并根据路段特征来描述路段上的区域达到安全水平。我们的数值研究表明,在广播模式下,隐藏终端效应是决定传输可靠性的驱动因素。此外,隐藏终端的影响在车辆高速行驶的路段中影响最大,从而导致在最需要可靠接收以最小化事故风险的区域中表现最差。

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