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首页> 外文期刊>IEEE Transactions on Intelligent Transportation Systems >Intersection Fog-Based Distributed Routing for V2V Communication in Urban Vehicular Ad Hoc Networks
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Intersection Fog-Based Distributed Routing for V2V Communication in Urban Vehicular Ad Hoc Networks

机译:基于交叉口的迷雾基础分布式路由在城市车辆临时网络中的V2V通信

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摘要

Due to the characteristics of urban vehicular ad hoc networks (VANETs), many difficulties exist when designing routing protocols. In this paper, we focus on designing an efficient routing strategy for vehicle-to-vehicle (V2V) communication in urban VANETs. Because, the characteristics of urban VANET routing performance are affected mainly by intersections, traffic lights, and traffic conditions, we propose an intersection-based distributed routing (IDR) strategy. In view of the fact that traffic lights are used to cause vehicles to stop at intersections, we propose an intersection vehicle fog (IVF) model, in which waiting vehicles dynamically form a collection or fog of vehicles at an intersection. Acting as infrastructure components, the IVFs proactively establish multihop links with adjacent intersections and analyze the traffic conditions on adjacent road segments using fuzzy logic. This approach offloads a large part of the routing work. During routing, the IVFs adjust the routing direction based on the real-time position of the destination, thus avoiding rerouting. Each time an IVF makes a distributed routing decision, the IDR model employs the ant colony optimization (ACO) algorithm to identify an optimal routing path whose connectivity is based on the traffic conditions existing in the multihop links between intersections. Because of the high connectivity of the routing path, the model requires only packet forwarding and not carrying when transmitting along the routing path, which reduces the transmission delay and increases the transmission ratio. The presented mathematical analyses and simulation results demonstrate that our proposed routing strategy is feasible and that it achieves relatively high performance.
机译:由于城市车辆临时网络(VANET)的特点,在设计路由协议时,存在许多困难。在本文中,我们专注于设计城市藤饼中车辆到车辆(V2V)通信的有效路由策略。因为,城市Vanet路由性能的特性主要受交叉口,交通灯和交通状况影响,我们提出了一种基于交叉的分布式路由(IDR)策略。鉴于运输灯用于导致车辆停止在交叉口的情况下,我们提出了一种交叉路口雾(IVF)模型,其中等待车辆在交叉点处动态形成一系列车辆的集合或雾。充当基础设施组件,IVFS主动建立了具有相邻交叉口的多跳序链路,并使用模糊逻辑分析相邻道路段上的交通状况。这种方法卸载了大部分路由工作。在路由期间,IVFS根据目的地的实时位置调整路由方向,从而避免重新路由。每次IVF进行分布式路由决策时,IDR模型都采用蚁群优化(ACO)算法来识别最佳路由路径,其连接基于交叉点之间的多倍链路中存在的交通状况。由于路由路径的高连接性,该模型仅需要分组转发并且在沿路径传输时不携带,这减少了传输延迟并增加了传输比率。呈现的数学分析和仿真结果表明,我们所提出的路由策略是可行的,并且它实现了相对高的性能。

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