高频水声通信的迭代多通道均衡与译码

J. Choi, R. Drost, A. Singer, J. Preisig
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引用次数: 40

摘要

为了提高水声通信系统的性能,提出了一种迭代式多通道均衡与译码技术。将turbo原理应用于现有的标准接收机结构,包括分数间隔决策反馈均衡和相位同步。多通道均衡和自适应权值更新算法的性能得益于信道解码器传递的软信息。采用最小均方算法对具有线性复杂性的高混响水下信道进行分析,证明了该方案的复杂度是合理的。对载波频率为100 kHz、传输速度为41.67 k符号/s的数据进行了实验,验证了该算法的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Iterative multi-channel equalization and decoding for high frequency underwater acoustic communications
In this paper, an iterative multi-channel equalization and decoding technique is introduced to improve system performance in underwater acoustic communications. The turbo principle is applied to the existing canonical receiver structure including fractionally spaced decision feedback equalization with phase synchronization. The performance of multi-channel equalization and adaptive weight update algorithms are aided by soft information delivered from the channel decoder. The complexity of the proposed scheme is shown to be reasonable for highly reverberant underwater channels since it has linear complexity by the use of the least mean square (LMS) algorithm. Experimental results for data transmission at 41.67 k symbol/s with a carrier frequency of 100 kHz demonstrate the feasibility of the proposed algorithm.
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