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Signal propagation techniques for wireless underground communication networks

机译:无线地下通信网络的信号传播技术

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摘要

Wireless Underground Communication Networks (WUCNs) consist of wireless devices that operate below the ground surface. These devices are either (i) buried completely under dense soil, or (ii) placed within a bounded open underground space, such as underground mines and road/subway tunnels. The main difference between WUCNs and the terrestrial wireless communication networks is the communication medium. In this paper, signal propagation characteristics are described in these constrained areas. First, a channel model is described for electromagnetic (EM) waves in soil medium. This model characterizes not only the propagation of EM waves, but also other effects such as multipath, soil composition, water content, and burial depth. Second, the magnetic induction (Ml) techniques are analyzed for communication through soil. Based on the channel model, the MI waveguide technique for communication is developed to address the high attenuation challenges of MI waves through soil. Furthermore, a channel model, i.e., the multimode model, is provided to characterize the wireless channel for WUCNs in underground mines and road/subway tunnels. The multimode model can characterize two cases for underground communication, i.e., the tunnel channel and the room-and-pillar channel. Finally, research challenges for the design communication protocols for WUCNs in both underground environments are discussed based on the analysis of the signal propagation.
机译:无线地下通信网络(WUCN)由在地下运行的无线设备组成。这些设备要么(i)完全埋在茂密的土壤下,要么(ii)置于有边界的开放地下空间内,例如地下矿山和道路/地铁隧道。 WUCN与地面无线通信网络之间的主要区别在于通信介质。在本文中,描述了这些受限区域中的信号传播特性。首先,描述了土壤介质中电磁波的通道模型。该模型不仅表征电磁波的传播,而且还表征其他影响,例如多径,土壤成分,含水量和埋藏深度。其次,分析了磁感应(M1)技术以通过土壤进行通信。基于信道模型,开发了用于通信的MI波导技术,以解决MI波穿过土壤的高衰减挑战。此外,提供了信道模型,即多模式模型,以表征地下矿井和道路/地铁隧道中的WUCN的无线信道。多模式模型可以描述地下通信的两种情况,即隧道通道和室内柱通道。最后,基于信号传播的分析,讨论了两种地下环境中WUCN的设计通信协议的研究挑战。

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  • 来源
    《Physical Communication》 |2009年第3期|167-183|共17页
  • 作者单位

    Broadband Wireless Networking Laboratory, School of Electrical & Computer Engineering, Georgia Institute of Technology, Atlanta, CA, 30332, United States;

    Broadband Wireless Networking Laboratory, School of Electrical & Computer Engineering, Georgia Institute of Technology, Atlanta, CA, 30332, United States;

    Department of Computer Science and Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588, United States;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    wireless networks; channel model; soil medium; underground mine; tunnel; magnetic induction; waveguide;

    机译:无线网络;渠道模型;土壤介质地下矿井隧道;磁感应波导;

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