A Comprehensive Comparison of Routing Protocols for Large-Scale Wireless MANETs

Ioannis Broustis, G. Jakllari, T. Repantis, M. Molle
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引用次数: 63

Abstract

Efficient routing protocols can provide significant benefits to mobile ad hoc networks, in terms of both performance and reliability. Many routing protocols for such networks have been proposed so far. Amongst the most popular ones are dynamic source routing (DSR), ad hoc on-demand distance vector (AODV), temporally-ordered routing algorithm (TORA) and location-aided routing (LAR). Despite the popularity of those protocols, research efforts have not focused in evaluating their performance when applied to large-scale wireless networks. Such networks are comprised of hundreds of nodes, connected via long routes. This greatly affects the network efficiency, since it necessitates frequent exchange of routing information. In this paper we present our observations regarding the behavior of the above protocols, in large-scale mobile ad hoc networks (MANETs). We consider wireless mobile terminals spread over a large geographical area, and we perform extensive simulations, using the QualNet and NS-2 simulators. The results of the simulations yield some interesting conclusions: AODV suffers in terms of packet delivery fraction (PDF) but scales very well in terms of end-to-end delay. DSR on the other hand scales well in terms of packet delivery fraction but suffers an important increase of end-to-end delay, as compared to its performance achieved in small-scale topologies. Also, the effect of maximum connections is severe on TORA, which seems unable to route large amounts of traffic. LAR, seems to scale very well, in terms of all metrics employed
大规模无线manet路由协议的综合比较
高效的路由协议可以在性能和可靠性方面为移动自组织网络提供显著的好处。目前已有许多针对此类网络的路由协议被提出。其中最流行的是动态源路由(DSR), ad hoc按需距离矢量(AODV),临时有序路由算法(TORA)和位置辅助路由(LAR)。尽管这些协议很受欢迎,但研究工作并没有集中在评估它们应用于大规模无线网络时的性能。这样的网络由数百个节点组成,通过长路线连接。这极大地影响了网络的效率,因为它需要频繁地交换路由信息。在本文中,我们提出了我们对上述协议在大规模移动自组织网络(manet)中的行为的观察。我们考虑无线移动终端分布在很大的地理区域,我们使用QualNet和NS-2模拟器进行了广泛的模拟。模拟的结果产生了一些有趣的结论:AODV在分组传递分数(PDF)方面受到影响,但在端到端延迟方面伸缩性很好。另一方面,DSR在分组传输分数方面扩展得很好,但与在小规模拓扑中实现的性能相比,端到端延迟有很大的增加。此外,最大连接对TORA的影响也很严重,它似乎无法路由大量的流量。从所采用的所有参数来看,LAR的可扩展性似乎非常好
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