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基于Polar码的水声通信信源信道联合译码方法
引用本文:胡承昊,台玉朋,汪俊,胡治国,王海斌. 基于Polar码的水声通信信源信道联合译码方法[J]. 应用声学, 2022, 41(1): 60-69
作者姓名:胡承昊  台玉朋  汪俊  胡治国  王海斌
作者单位:中国科学院声学研究所,中国科学院声学研究所,中国科学院声学研究所,中国科学院声学研究所,中国科学院声学研究所
摘    要:水声信道时延扩展较长,频域选择性衰落严重,导致水声通信提升可靠性困难.同时,水声通信实际发送的信源中通常存在残留冗余,传统方法难以利用这部分冗余,从而导致一定的带宽浪费.针对该问题,提出了一种基于Polar码的水声通信信源信道联合译码方法.该方法根据Polar码的译码结构,以信源状态转移关系为基础构建信源信道联合译码网...

关 键 词:水声通信  Polar码  信源信道联合译码  湖上实验
收稿时间:2021-03-05
修稿时间:2022-01-07

A joint source-channel decoding algorithm based on polar codes for underwater acoustic communication
Hu Chenghao,Tai Yupeng,Wang Jun,Hu Zhiguo and Wang Haibin. A joint source-channel decoding algorithm based on polar codes for underwater acoustic communication[J]. Applied Acoustics(China), 2022, 41(1): 60-69
Authors:Hu Chenghao  Tai Yupeng  Wang Jun  Hu Zhiguo  Wang Haibin
Affiliation:Institute of Acoustics of the Chinese Academy of Sciences,Institute of Acoustics of the Chinese Academy of Sciences,Institute of Acoustics of the Chinese Academy of Sciences,Institute of Acoustics of the Chinese Academy of Sciences,Institute of Acoustics of the Chinese Academy of Sciences
Abstract:It is difficult to improve the reliability of underwater acoustic communication (UAC) due to the long-time delay and severe frequency fading of underwater acoustic channels. On the other hand, there are always some source residual redundancies in practical UAC. Traditional methods cannot use these redundancies. That leads to some waste of bandwidth. To overcome these problems, a joint source-channel decoding algorithm based on polar codes for UAC is proposed. According to the decoding structure of polar codes, the joint source-channel decoding trellis is constructed based on the source transfer relationship. The posterior probabilities are computed by combining the source transfer probability and the channel transfer probability. In this way, the source decoding and channel decoding are optimized jointly. This algorithm can take advantage of the source residual redundancies for error control decoding and can improve the reliability of UAC without reducing the communication rate. The lake experimental results show that the proposed algorithm can reduce the bit error rate (BER) from 1.9×10-2 of the traditional separate decoding algorithm to 4.0×10-4. When transmitting photographs, the proposed algorithm can reduce the BER from 3.7×10-3 of the traditional separate decoding algorithm to 0.
Keywords:underwater acoustic communication   polar codes   joint source-channel decoding   lake experiment
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