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Radio Communication Model for Underwater WSN

机译:水下WSN的无线电通信模型

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摘要

Underwater Wireless Sensor Networks (UWSN) experience severe communication problems due to large acoustic or electromagnetic (EM) signal attenuation. The propagation of acoustic signals in submarine media is possible with very low frequency signal carriers only, therefore reduced bandwidth, low transmission rates, thus extending transmission duration and diminishing battery life. Requirements to increase transmission data rates for UWSN have made it attractive to explore the possibilities of higher frequency EM transmissions. Recent experiments show that huge EM signal losses are to be expected in the near field of the transmitting antenna, however experiencing little additional reductions thereafter. The lack of a unified simple analytical model based on Maxwell's equations that can be used as a design tool for these wireless submarine links, validated against published experimental results, is a problem that has been solved in this paper.
机译:由于大的声学或电磁(EM)信号衰减,水下无线传感器网络(UWSN)体验严重的通信问题。由于极低的频率信号载波,可以减少带宽,低传输速率,因此可以实现潜艇介质中的声学信号的传播,从而延长传输持续时间和减少电池寿命。提高UWSN传输数据速率的要求使其具有吸引力探讨较高频率的EM传输的可能性。最近的实验表明,在发射天线的近场中预期巨大的EM信号损失,但是此后几乎没有额外的减少。缺乏基于Maxwell等式的统一简单的分析模型,可用作这些无线潜艇链路的设计工具,验证出版的实验结果是本文已经解决的问题。

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