基于MCMC采样器的簇稀疏水声信道估计方法
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TB567

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国家自然科学基金(61971472)、中国科学院战略性先导科技专项(A类)(XDA22030101)、国防科技创新特区项目、国家重点研发计划(2016YFC0300300)、国家自然科学基金 (61471351) 项目资助


An estimation method of clustered sparsity underwater acoustic channel based on MCMC sampler
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    摘要:

    针对实际水声信道存在簇稀疏特性,提出了一种多层贝叶斯模型下基于马尔科夫链蒙特卡罗(MCMC)采样器的正交频分复用(OFDM)水声通信信道估计方法。利用簇稀疏水声信道的结构特性对信道的先验分布进行建模,借助贝叶斯推断和接收信号的似然函数得到信道模型参数的后验分布,采用MCMC采样器对信道模型参数的后验条件分布进行采样从而得到稀疏水声信道的最大后验估计。仿真对比不同接收信噪比下该方法与基于最小平方、匹配跟踪和逐步正交匹配跟踪信道估计方法的性能。湖试试验表明,该方法能够在无任何信道先验信息下实现准确的OFDM水声信道估计和跟踪译码,实现了通信距离600 m到3 500 m、传输速率608 kbps的OFDM水声通信。

    Abstract:

    The actual underwater acoustic channel has the feature of clustered sparsity. To solve this problem, a hierarchical Bayesian model for underwater acoustic channel estimation is proposed, which is based on Markov chain Monte Carlo (MCMC) sampler in orthogonal frequency division multiplexing (OFDM) underwater acoustic communication. The prior distribution of the channel is formulated by the structural features of the clustered sparsity underwater acoustic channel. The posterior distribution of the channel model parameters is achieved by Bayesian inference and the likelihood function of the received signal. Finally, the MCMC sampler is utilized to sample the posterior conditional distribution of the channel model parameters. In this way, the maximum posterior estimation of the clustered sparsity underwater acoustic channel can be obtained. The performance of the proposed method is analyzed by simulation comparisons in terms of least squares, matching pursuit and stepwise orthogonal matching pursuit channel estimation methods under different received signaltonoise ratios. The lake test shows that the proposed method can achieve accurate OFDM underwater acoustic channel estimation, tracking and decoding without any channel prior information. The method realizes OFDM underwater acoustic communication with the communication distance of 600 m to 3 500 m. In addition, the transmission data rate can reach 608 kbps.

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张舒然,武岩波,朱敏.基于MCMC采样器的簇稀疏水声信道估计方法[J].仪器仪表学报,2019,40(8):201-212

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  • 在线发布日期: 2022-02-22
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