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$text{M}^2text{I}$: Channel Modeling for Metamaterial-Enhanced Magnetic Induction Communications

机译: $ text {M} ^ 2text {I} $ :超材料增强磁感应通信的通道建模

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摘要

Magnetic induction (MI) communication technique has shown great potentials in complex and RF-challenging environments, such as underground and underwater, due to its advantage over EM wave-based techniques in penetrating lossy medium. However, the transmission distance of MI techniques is limited since magnetic field attenuates very fast in the near field. To this end, this paper proposes metamaterial-enhanced magnetic induction () communication mechanism, where an MI coil antenna is enclosed by a metamaterial shell that can enhance the magnetic fields around the MI transceivers. As a result, the communication system can achieve tens of meters communication range by using pocket-sized antennas. In this paper, an analytical channel model is developed to explore the fundamentals of the mechanism, in the aspects of communication range and channel capacity, and the susceptibility to various hostile and complex environments. The theoretical model is validated through the finite element simulation software, Comsol Multiphysics. Proof-of-concept experiments are also conducted to validate the feasibility of .
机译:磁感应(MI)通信技术由于在穿透有损耗介质方面比基于EM波的技术具有优势,因此在复杂且具有挑战性的环境(例如地下和水下)中显示出巨大潜力。但是,由于磁场在近场中衰减非常快,因此MI技术的传输距离受到限制。为此,本文提出了一种超材料增强的磁感应()通信机制,其中MI线圈天线被超材料外壳包围,可以增强MI收发器周围的磁场。结果,通过使用袖珍型天线,该通信系统可以实现数十米的通信范围。在本文中,开发了一种分析性渠道模型,以从通信范围和渠道容量以及对各种敌对和复杂环境的敏感性等方面探讨该机制的基础。该理论模型通过有限元仿真软件Comsol Multiphysics进行了验证。还进行了概念验证实验以验证的可行性。

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