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An Improved BICM-ID Receiver for the Time-Varying Underwater Acoustic Communications with DDPSK Modulation

机译:具有DDPSK调制的时变水下声通信的改进型BICM-ID接收器

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Double differential phase shift keying(DDPSK) modulation is an efficient method to compensate the Doppler shifts, whereas the phase noise will be amplified which results in the signal-to-noise ratio (SNR) loss. In this paper, we propose a novel receiver architecture for underwater acoustic DSSS communications with Doppler shifts. The proposed method adopts not only the DDPSK modulation to compensate the Doppler shifts, but also the improved bit-interleaved coded modulation with iterative decoding (BICM-ID) algorithm for DDPSK to recover the SNR loss. The improved DDPSK demodulator adopts the multi-symbol estimation to track the channel variation, and an extended trellis diagram is constructed for DDPSK demodulator. Theoretical simulation shows that our system can obtain around 10.2 dB gain over the uncoded performance, and 7.4 dB gain over the hard-decision decoding performance. Besides, the experiment conducted in the Songhua Lake also shows that the proposed receiver can achieve lower BER performance when Doppler shifts exists.
机译:双差分相移键控(DDPSK)调制是补偿多普勒频移的有效方法,而相位噪声将被放大,从而导致信噪比(SNR)损失。在本文中,我们提出了一种新的接收机结构,用于具有多普勒频移的水下声学DSSS通信。所提出的方法不仅采用DDPSK调制来补偿多普勒频移,而且还采用改进的比特迭代编码与迭代解码(BICM-ID)算法使DDPSK恢复SNR损失。改进的DDPSK解调器采用多符号估计来跟踪信道变化,并为DDPSK解调器构建了扩展格状图。理论仿真表明,我们的系统可以获得比未编码性能高约10.2 dB的增益,比硬判决解码性能高7.4 dB的增益。此外,在松花湖进行的实验还表明,当存在多普勒频移时,所提出的接收机可以实现较低的BER性能。

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