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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Speed Adaptive Probabilistic Flooding for Vehicular Ad Hoc Networks
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Speed Adaptive Probabilistic Flooding for Vehicular Ad Hoc Networks

机译:车载Ad Hoc网络的速度自适应概率泛洪

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A significant issue in vehicular ad hoc networks (VANETs) is the design of an effective broadcast scheme that can facilitate the fast and reliable dissemination of emergency warning messages in the vicinity of an unexpected event, such as a traffic accident. In this paper, we propose a novel solution to this problem, which we refer to as speed adaptive probabilistic flooding. The scheme employs probabilistic flooding to mitigate the effects of the broadcast storm problem, which is typical when using blind flooding, and its unique feature is that the rebroadcast probability is adaptively regulated based on the vehicle speed to account for varying traffic densities within the transportation network. The motivation behind this choice is the identification of the existence of phase transition phenomena in probabilistic flooding in VANETs, which dictate a critical probability being affected by the varying vehicle traffic density and are shown to be linearly related to the vehicle speed (a locally measurable quantity). The scheme is evaluated using simulations on different sections of the freeway system in the City of Los Angeles, CA, USA. Simulation results indicate that the proposed scheme fulfills its design objectives, as it achieves high reachability and low latency of message delivery with low overhead in a number of representative scenarios. The scheme is also shown to outperform existing solutions, including Global-Positioning-System-based, and exhibits robustness with respect to different road topologies and parameters such as the transmission range of vehicles and the number of hops.
机译:车载自组织网络(VANET)中的一个重要问题是设计一种有效的广播方案,该方案可以促进在交通事故等意外事件附近快速,可靠地分发紧急警告消息。在本文中,我们提出了针对该问题的新解决方案,我们将其称为速度自适应概率泛洪。该方案采用概率泛洪来缓解广播风暴问题的影响,这在使用盲泛洪时很常见,其独特之处在于,根据车速自适应地调整了重播概率,以解决交通网络内不同的交通密度。该选择背后的动机是确定VANET中概率泛洪中是否存在相变现象,这表明临界概率受车辆流量密度变化的影响,并显示出与车速呈线性关系(局部可测量量) )。使用美国加利福尼亚州洛杉矶市的高速公路系统不同部分的仿真对方案进行评估。仿真结果表明,该方案实现了其设计目标,因为它在许多代表性的场景中以较低的开销实现了高可达性和低消息传递延迟。该方案还显示出优于包括基于全球定位系统在内的现有解决方案的性能,并且针对不同的道路拓扑和参数(例如车辆的传输范围和跳数)表现出鲁棒性。

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