A chirp FSK improvement for communications in shallow water using bandwidth overlapping

P. Courmontagne, G. Fages, P. Beaujean
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引用次数: 2

Abstract

Underwater acoustic communications in shallow water are essential for the transmission of data between AUVs and remote sensors. Shallow water communications remain a challenge due to factors like multipath propagation, time variations of the channel, small available bandwidth and strong signal attenuation. To adress this problem, we propose a new chirp FSK scheme that enhances the data rate and is robust to noise. Using Gabor chirp spectra linear combination to describe the transmitted symbol and overlapping bandwidth, we obtain simulated transmissions at a peak data rate of 7 kbits/sec. Furthermore, simulation results reveal a very low bit error rate even with a low signal-to-noise ratio indicating that long ranges could be reached.
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利用带宽重叠改进浅水通信的啁啾FSK
浅水水声通信是水下机器人与遥感器之间数据传输的关键。由于多径传播、信道时变、可用带宽小和信号衰减强等因素,浅水通信仍然是一个挑战。为了解决这个问题,我们提出了一种新的啁啾FSK方案,该方案提高了数据速率,并且对噪声具有鲁棒性。利用Gabor啁啾谱线性组合来描述传输符号和重叠带宽,我们获得了峰值数据速率为7kbits /sec的模拟传输。此外,仿真结果表明,即使在低信噪比的情况下,误码率也非常低,表明可以达到长距离。
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