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Enhanced channel estimation and symbol detection for high speed multi-input multi-output underwater acoustic communications

机译:高速多输入多输出水下声通信的增强的信道估计和符号检测

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摘要

The need for achieving higher data rates in underwater acoustic communications leverages the use of multi-input multi-output (MIMO) schemes. In this paper two key issues regarding the design of a MIMO communications system, namely, channel estimation and symbol detection, are addressed. To enhance channel estimation performance, a cyclic approach for designing training sequences and a channel estimation algorithm called the iterative adaptive approach (IAA) are presented. Sparse channel estimates can be obtained by combining IAA with the Bayesian information criterion (BIC). Moreover, the RELAX algorithm can be used to improve the IAA with BIC estimates further. Regarding symbol detection, a minimum mean-squared error based detection scheme, called RELAX-BLAST, which is a combination of vertical Bell Labs layered space-time (V-BLAST) algorithm and the cyclic principle of the RELAX algorithm, is presented and it is shown that RELAX-BLAST outperforms V-BLAST. Both simulated and experimental results are provided to validate the proposed MIMO scheme. RACE' 08 experimental results employing a 4 × 24 MIMO system show that the proposed scheme enjoys an average uncoded bit error rate of 0.38% at a payload data rate of 31.25 kbps and an average coded bit error rate of 0% at a payload data rate of 15.63 kbps.
机译:在水下声学通信中实现更高数据速率的需求利用了多输入多输出(MIMO)方案的使用。在本文中,解决了有关MIMO通信系统设计的两个关键问题,即信道估计和符号检测。为了提高信道估计性能,提出了一种用于设计训练序列的循环方法和一种称为迭代自适应方法(IAA)的信道估计算法。可以通过将IAA与贝叶斯信息标准(BIC)结合来获得稀疏信道估计。此外,RELAX算法可用于通过BIC估计进一步改善IAA。关于符号检测,提出了一种基于最小均方差的检测方案,称为RELAX-BLAST,它是垂直贝尔实验室分层时空(V-BLAST)算法和RELAX算法的循环原理的结合,显示RELAX-BLAST优于V-BLAST。提供仿真结果和实验结果以验证所提出的MIMO方案。使用4×24 MIMO系统的RACE'08实验结果表明,所提出的方案在31.25 kbps的有效载荷数据速率下具有0.38%的平均未编码误码率,在有效载荷数据率下具有0%的平均编码误码率15.63 kbps。

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