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首页> 外文期刊>ACM transactions on sensor networks >Surface-Reflection-Based Communication and Localization in Underwater Sensor Networks
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Surface-Reflection-Based Communication and Localization in Underwater Sensor Networks

机译:水下传感器网络中基于表面反射的通信和定位

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摘要

Most communication and localization algorithms in underwater environments have been constrained by dependencies on the Line Of Sight (LOS), which is hard to guarantee due to the inherent node mobility. This constraint hinders node discovery and ad hoc formation in underwater networks and limits the performance of routing protocols. This article introduces a novel Surface-Based Reflection (SBR) model that uses a homomorphic deconvolution technique to establish water-surface-reflected communication links. We then propose a Surface-Based Reflection Anchor-free Localization (SBR-AL) algorithm that can be employed by the individual nodes to establish a relative coordinate system. Our approach also employs a switch-beamed directional antenna model that allows each node to use the LOS estimated from SBR-AL to enable directional communication which is beneficial for higher Signal-to-Noise Ratios (SNR). The relative locations can facilitate the various network operation functions such as geo-routing and collision-free medium access. The simulation results confirm the effectiveness of the proposed approach.
机译:水下环境中的大多数通信和定位算法都受到对视线(LOS)的依赖性的约束,由于固有的节点移动性,很难保证这一点。该约束阻碍了水下网络中的节点发现和临时组建,并限制了路由协议的性能。本文介绍了一种新颖的基于表面的反射(SBR)模型,该模型使用同态反褶积技术来建立水表面反射的通信链接。然后,我们提出了一种基于表面的反射无锚定位(SBR-AL)算法,该算法可被各个节点用来建立相对坐标系。我们的方法还采用了开关波束定向天线模型,该模型允许每个节点使用从SBR-AL估计的LOS来启用定向通信,这有利于更高的信噪比(SNR)。相对位置可以促进各种网络操作功能,例如地理路由和无冲突的媒体访问。仿真结果证实了该方法的有效性。

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