浅海中利用电磁场的水下航行器通信

Manik Dautta, Md Imrul Hasan
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引用次数: 18

摘要

基于声波通信的一些不可避免的缺点导致水下航行器使用低频电磁波进行通信。电导率会导致频率相关衰减,限制了海洋环境下的通信距离和数据传输速率。增强范围和带宽可以通过以下方式实现:1)允许EM信号跨越海水-空气边界,使用空气路径实现远程水平通信,然后在需要时进行空气-水信号传输;2)探索海水-空气界面水侧的导波现象。为了确定水下天线的最佳工作频率、通信范围、天线方向和垂直偏移量,对电磁波在海水、薄层内的海气界面两侧以及穿过界面后的空气中的传播特性进行了计算研究。结果表明,当发射机距离空气-水界面5 m时,在信号强度损失约70 dB的情况下,通过空气-水界面的引导电场可以以10 KHz的频率传输到1 km的距离。
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Underwater vehicle communication using electromagnetic fields in shallow seas
Some unavoidable shortcomings of acoustic wave based communications leads to the use of low frequency electromagnetic (EM) waves for underwater vehicle communication. Electric conductivity, causing frequency dependent attenuation, limits communication distance and data transfer rate in sea environment. An enhancement in range and bandwidth can be achieved by: 1) allowing EM signals to cross seawater-to-air boundary and achieve long-range horizontal communication using air path, followed by air to water signal transmission, if needed, and 2) exploring guided waves phenomenon at the water side of the seawater-air interface. A computational investigation to compare the EM wave propagation characteristics in seawater, in both sides of the seawater-air interface within a thin layer, and in air after crossing interface, in order to determine the optimum operating frequencies, ranges of communication, antenna orientation, and vertical offset of submerged antenna is presented in this paper. It is shown that with approximately 70 dB loss of signal strength, guided electric fields through air-water interface can be transmitted to a distance of 1 km at 10 KHz when the transmitter is 5 m below the interface.
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