A simulation analysis of nodes mobility and traffic load aware routing strategy in aeronautical ad hoc networks

Jinhua Zhou, L. Lei, Weikang Liu, Jiamin Tian
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引用次数: 6

Abstract

Recently, there has been a clear trend towards the application of the ad hoc networking technology in the civil aviation communication system, and then a novel research field of aeronautical ad hoc networks (AANET) has arisen. Researchers have showed that it is possible to set up a mobile ad hoc network among the free flight airliners, thus providing a multi-hop communication link between the airliner and the ground base station. Through this communication link, air passengers can access Internet with low latency and cheap charges. So the commonly used satellite communication in free flight airliners may be replaced by AANET, as the satellite communication is costly and the transmission delay is large. Compared with the normal ad hoc networks, the airliners in AANET move at a very high speed, typically 700km/h to 1000km/h. So the multi-hop communications in AANET are extremely unstable as the network topology changes frequently. Meanwhile, the airliners which are near to the ground base station suffer from a heavy traffic load, as they forward the data traffic to and from the ground base station for other airliners. To solve these problems, researchers have proposed many kinds of link stability prediction strategies and traffic load aware routing protocols, but none of them simultaneously take into account both of these two problems. In this paper, we firstly implement a nodes mobility and traffic Load aware routing strategy in GloMoSim simulator for AANET. In this routing strategy, we adopt the Doppler value which is calculated by Doppler frequency shift as the nodes mobility metric, and adopt the length of the transmission queue of the nodes as the traffic load metric. Then we give a detailed analysis of the performance of the routing strategy through simulation experiments. Simulation results show the effectiveness of this routing strategy.
航空自组织网络中节点移动性和流量负载感知路由策略的仿真分析
近年来,自组网技术在民用航空通信系统中的应用已成为一个明显的趋势,从而形成了航空自组网(AANET)这一新的研究领域。研究人员已经证明,在自由飞行的客机之间建立移动自组织网络是可能的,从而在客机和地面基站之间提供多跳通信链路。通过这种通信链路,飞机乘客可以以低延迟和廉价的费用访问互联网。因此,自由飞行客机上常用的卫星通信可能被AANET取代,因为卫星通信成本高,传输延迟大。与普通的自组织网络相比,AANET中的客机以非常高的速度移动,通常为700公里/小时至1000公里/小时。因此,随着网络拓扑结构的频繁变化,AANET中的多跳通信非常不稳定。与此同时,距离地面基站较近的航班由于要为其他航班转发与地面基站之间的数据流量,因而承受着较大的流量负荷。为了解决这些问题,研究人员提出了多种链路稳定性预测策略和流量负载感知路由协议,但没有一种同时考虑这两个问题。本文首先在AANET的GloMoSim模拟器中实现了节点移动性和流量负载感知路由策略。在该路由策略中,采用多普勒频移计算得到的多普勒值作为节点迁移率度量,采用节点的传输队列长度作为流量负载度量。然后通过仿真实验对该路由策略的性能进行了详细的分析。仿真结果表明了该路由策略的有效性。
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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