Improving Beacon-Based Routing Protocols Using Dynamic Coverage Area Determination

M. Nabil, A. Hajami, Abdelkaher Ait Abdelouahad, A. Haqiq
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引用次数: 0

Abstract

In vehicular Ad Hoc network, beacon messages help the beacon-based routing protocols to know much information of its neighbors and also to take immediately routing decision for selecting the next forwarder vehicle, resulting in improved delivery delay performance. In vehicle dense environment, these protocols suffer from the increase of unwanted beacon overhead and the packet collision, resulting in an increase of the packet drop rate. For this reason, we propose to dynamically change the coverage area of each vehicle according to the density of its neighbors and their positions in its coverage area. Then, we set the transmission power as function of the calculated coverage area by using two-ray ground propagation model. Simulation results show that our proposal decreases in an important manner the beacon overheads and increases the packets delivery ratio.
利用动态覆盖区域确定改进信标路由协议
在车载自组织网络中,信标消息有助于信标路由协议了解其邻居的大量信息,并立即做出路由决策以选择下一个转发器车辆,从而提高了交付延迟性能。在车辆密集环境下,这些协议受到不必要的信标开销增加和数据包碰撞的影响,导致丢包率增加。因此,我们建议根据相邻车辆的密度及其在其覆盖区域内的位置,动态改变每辆车的覆盖区域。然后,采用双射线地面传播模型,将发射功率作为计算覆盖面积的函数。仿真结果表明,该方案在很大程度上降低了信标开销,提高了数据包的传输率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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