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ACAR: Adaptive Connectivity Aware Routing for Vehicular Ad Hoc Networks in City Scenarios

机译:ACAR:适用于城市场景中的车载Ad Hoc网络的自适应连接感知路由

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Multi-hop vehicle-to-vehicle communication is useful for supporting many vehicular applications that provide drivers with safety and convenience. Developing multi-hop communication in vehicular ad hoc networks (VANET) is a challenging problem due to the rapidly changing topology and frequent network disconnections, which cause failure or inefficiency in traditional ad hoc routing protocols. We propose an adaptive connectivity aware routing (ACAR) protocol that addresses these problems by adaptively selecting an optimal route with the best network transmission quality based on statistical and real-time density data that are gathered through an on-the-fly density collection process. The protocol consists of two parts: 1) select an optimal route, consisting of road segments, with the best estimated transmission quality, and 2) in each road segment of the chosen route, select the most efficient multi-hop path that will improve the deliveryrnratio and throughput. The optimal route is selected using our transmission quality model that takes into account vehicle densities and traffic light periods to estimate the probability of network connectivity and data delivery ratio for transmitting packets. Our simulation results show that the proposed ACAR protocol outperforms existing VANET routing protocols in terms of data delivery ratio, throughput and data packet delay. Since the proposed model is not constrained by network densities, the ACAR protocol is suitable for both daytime and nighttime city VANET scenarios.
机译:多跳车对车通信可用于支持许多为驾驶员提供安全性和便利性的车辆应用。由于拓扑结构的快速变化和频繁的网络断开,在车辆自组织网络(VANET)中开发多跳通信是一个具有挑战性的问题,这会导致传统的自组织路由协议出现故障或效率低下。我们提出了一种自适应连接感知路由(ACAR)协议,该协议通过基于通过实时密度收集过程收集的统计数据和实时密度数据自适应地选择具有最佳网络传输质量的最佳路由来解决这些问题。该协议包括两部分:1)选择一条最佳路径,该路径由具有最佳估计传输质量的路段组成; 2)在所选路径的每个路段中,选择最有效的多跳路径,以改善交付比率和吞吐量。使用我们的传输质量模型选择最佳路线,该模型考虑了车辆密度和交通信号灯周期,以估算网络连通性的概率和数据包传输率。我们的仿真结果表明,所提出的ACAR协议在数据传输率,吞吐量和数据包延迟方面都优于现有的VANET路由协议。由于所提出的模型不受网络密度的限制,因此ACAR协议适用于白天和晚上的城市VANET场景。

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