水声OFDM通信中的脉冲噪声与载波频偏抵消

Yuehai Zhou, Xiaoyu Yang, F. Tong
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引用次数: 1

摘要

水声通信技术越来越受到人们的重视。正交频分复用(OFDM)技术是一种很有前途的多径抑制方法,具有信道均衡计算复杂度低的优点,在水声通信中得到了广泛的应用。在水声信道中,多普勒导致的载波频偏和脉冲噪声将严重降低通信性能。本文提出了一种估计脉冲噪声和载波频偏的新方法。我们将零子载波布置在OFDM频带的边缘。由于CFO的存在,一些零子载波会被相邻的有源子载波污染,但被污染的零子载波数量有限,因此我们将一些零子载波作为保护零子载波,它们不仅会受到CFO的影响,还会受到脉冲噪声的影响。剩余的零子载波被视为无CFO的零子载波,只受脉冲噪声的影响。我们利用这种无CFO的零子载波,利用压缩感知方法估计脉冲噪声,然后去除接收信号中的脉冲噪声。因此,CFO是通过一维搜索估计的。与传统的分步法相比,该方法在估计脉冲噪声时不受CFO的影响,从而提高了CFO的估计精度。数值仿真结果表明,在存在多普勒和脉冲噪声的水声信道下,该方法提高了通信性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impulsive noise and carrier frequency offset cancellation for underwater acoustic OFDM communications
Underwater acoustic communication has been paid more and more attention nowadays. Orthogonal frequency division multiplexing (OFDM) technology is a promising approach to mitigate multipath, and has low computational complexity for channel equalization, thus it has been widely used for underwater acoustic communication. The Doppler which leads to carrier frequency offset (CFO) and impulsive noise in underwater acoustic channel will degrade the communication performance significantly. In this paper, we propose a novel method to estimate the impulsive noise and carrier frequency offset. We arrange the null-subcarriers at the edge of OFDM bands. Because of the CFO, there are some null-subcarrier that will be contaminated by adjacent active sub-carriers, but the number of contaminated null-subcarriers is limited, so we regard some null-subcarriers as guard null-subcarriers, which suffer from not only CFO, but also impulsive noise. The remaining null-subcarriers are treated as CFO free null-subcarriers, which only suffer from impulsive noise. We utilize such CFO free null-subcarriers to estimate impulsive noise using compressed sensing method, and then remove the impulsive noise from received signal. Consequently, the CFO is estimated via one-dimensional searching. Compared with traditional separately step-by-step method, our proposed method does not suffer from CFO when estimating the impulsive noise, thus the CFO estimation is improved. Numerical simulation demonstrates that, our proposed method improves the communication performance under the underwater acoustic channel where Doppler and impulsive noise exist.
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