地下无线传感器网络整体路由协议设计

Di Wu, Renfa Li, L. Bao
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引用次数: 7

摘要

传统的网络建立在分层协议架构上,将复杂性隔离在不同的层上。人们已经认识到,现实生活中的无线传感器网络(WSNs)必须跨不同层进行整体考虑,以获得最佳性能。我们考虑了部署在地下隧道中的无线传感器网络的一个特例。由于地理和地质特征,地下通信具有独特的信号传播特性,这反过来又影响了地下网络的部署和多跳路由模式。我们提出了一种高效的路由算法,称为BRIT(隧道反弹路由),用于地下wsn,并通过模拟在网络吞吐量,丢包率,稳定性和延迟方面评估BRIT与底线AODV。本文的贡献包括三维地下隧道中的混合信号传播模型,隧道中传感器部署策略的分类,综合路由度量(转发速度)和路由抑制机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Holistic Routing Protocol Design in Underground Wireless Sensor Networks
The traditional networking builds on layered protocol architecture to isolate the complexities in different layers. It has been realized that real-life wireless sensor networks (WSNs) must be considered holistically across different layers for optimum performance. We consider a special case of WSNs that is deployed in underground tunnels. Underground communications present unique signal propagation characteristics due to the geographic and geological features, which in turn impact the underground network deployment and multi-hop routing patterns. We propose an efficient routing algorithm, called BRIT (bounce routing in tunnels), for underground WSNs, and evaluate BRIT against the bottomline AODV in terms of network throughput, packet loss rate, stability and latencies using simulations. The contributions of the paper include a hybrid signal propagation model in three dimentional underground tunnels, an assortment of sensor deployment strategies in tunnels, an integrated routing metric (forwarding speed), and a route suppression mechanism.
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