Vehicular multitier gateway selection algorithm for heterogeneous VANET architectures

Shuja Ansari, T. Boutaleb, S. Sinanović, C. Gamio, I. Krikidis
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引用次数: 4

Abstract

Cooperative intelligent transportation systems have become an active topic with the introduction of smart communications between vehicles, increasing driver safety, traffic efficiency and ultimately paving way for autonomous vehicles. These vehicular communications have stringent transmission requirements. Among various proposed communication protocols, use of heterogeneous networks, combining long term evolution (LTE) with dedicated short range communications (DSRC), have shown promising results. This paper proposes an LTE gateway selection procedure that enables multitier hybrid architecture. The proposed multitier heterogeneous adaptive VANET (MHAV) framework consists of two tiers, the high tier consist of authority owned vehicles or public transport operators such as buses, lorries and taxis, while low tier consist of privately owned vehicles. Having an authority owned gateway addresses the security and privacy concern raised by private car owners on sharing their information with other cars. Results from implementation of our proposed algorithm using extensive system-level simulations showed an increase in coverage area for DSRC while minimizing the number of gateway switches made by 30–35% in comparison with previously proposed multitier registration techniques. Traffic on LTE network in our simulations is also reduced by 50%.
异构VANET架构下的车载多层网关选择算法
随着车辆间智能通信的引入,协作式智能交通系统已成为一个活跃的话题,提高了驾驶员的安全性和交通效率,并最终为自动驾驶汽车铺平了道路。这些车载通信有严格的传输要求。在各种拟议的通信协议中,使用异构网络,将长期演进(LTE)与专用短程通信(DSRC)相结合,已经显示出有希望的结果。提出了一种支持多层混合架构的LTE网关选择方法。提出的多层异构自适应VANET (MHAV)框架由两层组成,上层由政府拥有的车辆或公共交通运营商组成,如公共汽车、卡车和出租车,而下层由私人拥有的车辆组成。拥有一个权威拥有的网关解决了私家车车主在与其他车辆共享信息时提出的安全和隐私问题。使用广泛的系统级模拟实现我们提出的算法的结果表明,与先前提出的多层注册技术相比,DSRC的覆盖面积增加了,同时将网关交换机的数量减少了30-35%。在我们的模拟中,LTE网络的流量也减少了50%。
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