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SNR estimation algorithm of LFM signal based on FRFT for long range and shallow underwater acoustic communication systems

机译:基于FRFT的长距离浅水声通信系统LFM信号的SNR估计算法

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It is very important to estimate the signal to noise ratio (SNR) of receive signal accurately because this parameter will play an important role in the equalization and detection modules. LFM signal is often used as a synchronization signal due to its good autocorrelation property and Doppler tolerance in underwater acoustic (UWA) channels. A new SNR estimation algorithm making use of the LFM signal is proposed in this paper which works in the fractional Fourier transformation (FRFT) domain. Since the characteristics of the LFM signal and the Gaussian white noise are different in the FRFT domain, it is much easier to separate the LFM signal and the Gaussian noise and estimate the power of them, respectively. Computer simulation results show that the proposed algorithm is more accurate than the traditional spectrum-based algorithm in AWGN channel though the estimation accuracy reducing slightly when employed in multipath fading channels. The results of pool experiments and outfield experiments show that this algorithm is more accurate and more robust than the spectrum-base algorithm even in the UWA channels.
机译:准确估计接收信号的信噪比(SNR)非常重要,因为此参数将在均衡和检测模块中发挥重要作用。 LFM信号由于其良好的自相关特性和在水下声(UWA)通道中的多普勒容限,经常被用作同步信号。提出了一种新的利用LFM信号的SNR估计算法,该算法在分数傅立叶变换(FRFT)域中工作。由于FRFT域中LFM信号和高斯白噪声的特性不同,因此分别分离LFM信号和高斯噪声并估计它们的功率要容易得多。计算机仿真结果表明,该算法在多径衰落信道中的估计精度略有下降,但在AWGN信道中比传统的基于频谱的算法更准确。池实验和外场实验的结果表明,即使在UWA信道中,该算法也比基于频谱的算法更准确,更健壮。

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