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Iterative receiver for the triple differential PSK modulation in the time-varying underwater acoustic communications

机译:迭代接收器,用于三重差分PSK调制在时变水下通信中的调制

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Due to the time-varying property of the underwater acoustic (UWA) channel, the significant Doppler spread will severely degrade the performance of direct-sequence spread-spectrum (DSSS) communications. The relative velocity variation between the transmitter and the receiver will cause both the phase rotation and the magnitude loss of correlation peak, during the long transmission of the DSSS packet. To solve this problem, the authors propose a novel transceiver design for the UWA DSSS communications. At the transmitter, the triple differential phase shift keying (D3PSK) modulation is adopted to overcome the phase rotation, whereas the phase noise will be amplified resulting in the signal-to-noise ratio (SNR) loss. At the receiver, the improved bit-interleaved coded modulation with iterative decoding algorithm for D3PSK is used to recover the SNR loss, in which the D3PSK demodulator is treated as the convolutional decoder, and the linear prediction is adopted to track the channel variation. Furthermore, an adaptive selection of local reference signal is also applied to recover the correlation loss. Theoretical simulation shows that the proposed transceiver can effectively mitigate the performance loss caused by the motion acceleration, and the performance gain is significant over the conventional.
机译:由于水下声学(UWA)通道的时变特性,重要的多普勒扩展将严重降低直接序列扩频(DSSS)通信的性能。在DSSS分组的长传输期间,发射器和接收器之间的相对速度变化将导致相位旋转和相关峰的幅度损耗。为了解决这个问题,作者提出了一种为UWA DSSS通信提出了一种新的收发器设计。在发射器处,采用三差分相移键控(D3PSK)调制来克服相位旋转,而相位噪声将被放大,从而导致信噪比(SNR)丢失。在接收器处,使用用于D3PSK的迭代解码算法的改进的比特交织编码调制来恢复SNR丢失,其中D3PSK解调器被视为卷积解码器,并且采用线性预测来跟踪信道变化。此外,还应用了局部参考信号的自适应选择以恢复相关损耗。理论仿真表明,所提出的收发器可以有效地减轻由运动加速引起的性能损失,并且性能增益在传统方面具有重要意义。

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