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Reliable Communication in Underwater Acoustic Sensor Networks.

机译:水下声传感器网络中的可靠通信。

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摘要

As a novel networking paradigm for aqueous environmental monitoring and exploration, large-scale mobile underwater acoustic sensor network has attracted significant attention recently from both academia and industry. However, the adverse environmental conditions feature specific characteristics of underwater sensor networks, such as low communication bandwidth, large propagation delay, floating node mobility, high error probability, and intermittent connectivity, and pose a range of challenges to underwater communication and networking. In this dissertation, we will tackle the fundamental issue of reliable communication in underwater acoustic sensor networks.;Underwater network communication involves multiple sensors that are powered by battery and hard to be replaced or recharged, so energy efficiency is one paramount consideration. Based on the aforementioned observations, we explore from the following two aspects to provide reliable communication: (1) protect information transmitted through the acoustic channels; and (2) use appropriate routing schemes to enable reliable communication in intermittently connected underwater sensor networks.;Firstly, we propose an efficient error-recovery scheme that carefully couples network coding and multi-path routing. Through an analytical study, we provide guidance on how to choose parameters in our scheme and how to extend it to large-scale networks. Through simulation, we demonstrate that the scheme is efficient in both error recovery and energy consumption.;Secondly, we propose a practical scheme, called non-binary joint network channel coding (NB-JNCC) for reliable communication. Through channel-network codes integration and iterative two-tier joint decoding, NB-JNCC seamlessly couples channel coding and network coding and effectively combats the detrimental effect of fading conditions in wireless channels. This protocol can fully exploit the spatial diversity and redundancy residing in both physical and network layers.;Finally, we present a generic prediction assisted single-copy routing (PASR) scheme that can be instantiated for different mobility models. PASR employs an effective greedy algorithm, aggressive chronological projected graph (ACPG), which can capture the features of network mobility patterns and provide guidance on how to use historical information. As a result, prediction assisted single-copy online routing protocols instantiated from ACPG are energy efficient and cognizant of the underlying mobility patterns. We demonstrate the advantages of PASR in underwater sensor networks with various mobility models.
机译:作为一种用于水环境监测和探索的新颖网络范例,大规模的移动水下声传感器网络最近引起了学术界和工业界的极大关注。但是,不利的环境条件具有水下传感器网络的特定特征,例如低通信带宽,较大的传播延迟,浮动节点移动性,高错误概率和间歇性连接,这对水下通信和联网提出了一系列挑战。本文将解决水下声传感器网络中可靠通信的根本问题。水下网络通信涉及多个由电池供电且难以更换或充电的传感器,因此能源效率是首要考虑因素。基于上述观察,我们从以下两个方面进行探讨,以提供可靠的通信:(1)保护通过声学通道传输的信息; (2)使用适当的路由方案在间歇性连接的水下传感器网络中实现可靠的通信。首先,我们提出了一种有效的错误恢复方案,该方案将网络编码和多路径路由仔细耦合。通过分析研究,我们为如何在方案中选择参数以及如何将其扩展到大型网络提供了指导。通过仿真,我们证明了该方案在错误恢复和能量消耗方面都是有效的。其次,我们提出了一种实用的方案,称为非二进制联合网络信道编码(NB-JNCC),用于可靠的通信。通过信道网络代码集成和迭代两层联合解码,NB-JNCC无缝耦合了信道编码和网络编码,并有效地对抗了无线信道中衰落条件的有害影响。该协议可以充分利用物理层和网络层中的空间多样性和冗余性。最后,我们提出了一种通用预测辅助单拷贝路由(PASR)方案,该方案可以针对不同的移动性模型进行实例化。 PASR采用有效的贪婪算法,积极的时序投影图(ACPG),可以捕获网络移动性模式的特征并提供有关如何使用历史信息的指导。结果,从ACPG实例化的预测辅助单副本在线路由协议具有高能效,并且了解潜在的移动性模式。我们展示了具有各种移动性模型的水下传感器网络中PASR的优势。

著录项

  • 作者

    Guo, Zheng.;

  • 作者单位

    University of Connecticut.;

  • 授予单位 University of Connecticut.;
  • 学科 Engineering Computer.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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