A differential cyclic shift keying spread spectrum in underwater acoustic communication

Pengyu Du, Yinghao Li, Chao Wang
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Abstract

Cyclic shift keying (CSK) spread spectrum underwater acoustic (UWA) communication systems are seriously affected by fast-carrier phase fluctuation and time-varying UWA channels. Differential cyclic shift keying (DCSK) spread spectrum UWA communication using time reversal mirror (TRM) is proposed in this paper. Differential coding and decoding inhibit the influence of fast-carrier phase fluctuation effectively, and time-reversal mirror technology controls multipath propagation. A tracking/updating adaptive channel estimation algorithm used in this system estimates the real-time time-varying acoustic channel and save the effective estimation channel as the time-reversal mirror processing channel to ensure the reliability of processing. We verify that the system can achieve low bit error rate communication under the condition of fast-carrier phase fluctuation and channel multipath propagation by carrying out an under-ice vertical communication trial test.
水声通信中的差分周期移位键控扩频
循环移位键控扩频水声通信系统受到快速载波相位波动和时变信道的严重影响。提出了一种基于时间反转镜像(TRM)的差分周期移位键控扩频UWA通信技术。差分编码和译码有效地抑制了快速载波相位波动的影响,时间反转镜像技术控制了多径传播。本系统采用跟踪/更新自适应信道估计算法对实时时变声信道进行估计,并将有效估计信道保存为时反转镜像处理信道,保证了处理的可靠性。通过冰下垂直通信试验,验证了该系统在快速载波相位波动和信道多径传播条件下能够实现低误码率通信。
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