克服车载网络中的广播风暴问题

E. A. Feukeu, T. Zuva
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引用次数: 6

摘要

车载自组织网络(VANET)已成为下一代汽车的一项非常有趣的技术。这主要是由于其内置的和有前途的优势,主要包括通过在相关节点之间交换关键安全信息来改善公共道路的安全状况。VANET的成功在很大程度上依赖于相关车辆之间成功的信息传播。然而,成功的消息交换只有在传输介质没有碰撞的情况下才有可能。在智能交通系统(ITS)下,协同感知信息(CAM)必须按照标准以10hz的速率传输。为了解决拥塞管理问题,提出了分布式拥塞控制(DCC)机制。然而,在更高的节点密度下,DDC变得低效,并严重加剧了VANET环境的恶化。本文提出了一种动态广播风暴缓解算法(DBSMA),该算法可用于对抗车载网络(VN)中的广播风暴问题。几次模拟的结果证实,DBSMA有可能克服广播风暴的影响,与DCC方法相比,它的效率提高了150%以上。DBSMA的另一个优点是计算简单,易于实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Overcoming Broadcast Storm Problem in a Vehicular Network
Vehicular Ad hoc Network (VANET) has become a very interesting technology for future generation vehicles. This is mainly due to its embedded and promising advantages which primarily include improvement of safety conditions on public road through exchange of critical safety messages amongst involved nodes. The success of VANET heavily relies on successful messages dissemination amongst involved vehicles. However, a successful message exchange can only be possible if the transmission medium is collision free. Under the Intelligent Transportation System (ITS), the cooperative Awareness messages (CAM) have to be transmitted at the rate of 10 Hz as per standard. To account for congestion management, the Distributed Congestion Control (DCC) mechanism was proposed. However, under higher node density, the DDC becomes inefficient and dramatically contribute to the deterioration of the VANET environment. The present work proposes a Dynamic Broadcast Storm Mitigation Algorithm (DBSMA) which can be used to combat the broadcast storm problem in a Vehicular Network (VN). Results from several simulations confirmed that the DBSMA has a potentiality to conquer the effect of broadcast storm by offering more than 150% improved efficiency against the DCC approach. Another advantage of the DBSMA is that it is simple to compute and easy to implement.
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