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Iterative Sparse Channel Estimation and Data Detection for Underwater Acoustic Communications Using Partial Interval Demodulation

机译:局部间隔解调的水下声通信迭代稀疏信道估计和数据检测

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We present an iterative scheme for sparse channel recovery and data detection in cyclic-prefix orthogonal frequency division multiplex communication over doubly spread underwater acoustic channels. We consider the sequence of observations from partial interval demodulators (PIDs), and cast them into an observation model amenable for sparse channel recovery. We propose a two-stage iterative algorithm for channel estimation and data detection. In the first stage, we recover the channel from pilot-only observations and estimate the unknown data symbols from the postcombined PID outputs. In the second stage, we use the data symbols estimated in the first stage to reconstruct the dictionary matrix corresponding to a full interval demodulator, re-estimate the channel using the entire observations including the data subcarriers, and use it to detect the unknown data symbols from the PID outputs. Theoretically, we show that the PID outputs help in tracking the time-varying channel better by providing additional measurements to estimate the intercarrier interference due to Doppler spread compared to full interval demodulation. Also, we derive the Cramér–Rao lower bound on the mean squared error in channel estimation, and empirically show that the proposed two-stage algorithm meets the bound at high signal-to-noise ratio. Numerical studies on simulated channels and publicly available experimental channel data innWatermarknshow that the proposed algorithm considerably improves data detection performance, in terms of bit error rate, over that from a traditional full length demodulator output, in highly Doppler distorted scenarios.
机译:我们提出了在双前缀水下声信道上的循环前缀正交频分复用通信中稀疏信道恢复和数据检测的迭代方案。我们考虑了来自部分间隔解调器(PID)的观测序列,并将其转换为适合稀疏信道恢复的观测模型。我们提出了一种用于信道估计和数据检测的两阶段迭代算法。在第一阶段,我们从仅飞行员观察中恢复信道,并从后组合PID输出估计未知数据符号。在第二阶段中,我们使用在第一阶段中估计的数据符号来重构与全间隔解调器相对应的字典矩阵,使用包括数据子载波在内的整个观测值重新估计信道,并使用它来检测未知数据符号从PID输出。从理论上讲,与全间隔解调相比,通过提供额外的测量值来估计由于多普勒扩展引起的载波间干扰,PID输出有助于更好地跟踪时变信道。同样,我们推导了信道估计中均方误差的Cramér-Rao下界,并凭经验证明了所提出的两阶段算法在高信噪比下可以满足边界。在模拟频道和公开可用的实验频道数据上进行的数值研究inn Watermark n表明,在高度多普勒失真的情况下,与传统的全长解调器输出相比,该算法在误码率方面大大提高了数据检测性能。

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