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Multiple-input multiple-output passive time reversal acoustic communication using filtered multitone modulation

机译:使用滤波多音调制的多输入多输出无源时间反向声学通信

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Passive time reversal (PTR) technique can be exploited to reduce inter-symbol interference (ISI)-span and co-channel interference (CCI) span to some extent in the multiple-input multiple-output (MIMO) PTR underwater acoustic communication using single-carrier (SC) modulation. However, there are still large ISI and CCI in the signals processed by PTR if the communication frequency band is relatively wide. The residual ISI and CCI in wideband MIMO PTR communication using SC modulation add to the complexity of the follow-up interference suppression approach, In order to further reduce the span of the residual ISI and CCI, an efficient wideband MIMO-PTR underwater acoustic communication using filtered multitone (FMT) modulation is proposed in this paper. The proposed method is analyzed in theory and verified using the experiment carried out in an experimental pool. The experimental results of the proposed method are compared with that of the MIMO-PTR acoustic communication using SC modulation. The results show that the symbol interval is expanded and the span of residual ISI and CCI is reduced using FMT approach. Compared with the MIMO-PTR acoustic communication using SC modulation, the proposed method possesses higher communication performance and lower computational complexity in channel estimation, PTR, and residual interference suppression. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在使用单输入的多输入多输出(MIMO)PTR水下声学通信中,可以利用无源时间反转(PTR)技术在某种程度上减少符号间干扰(ISI)跨度和同信道干扰(CCI)跨度载波(SC)调制。但是,如果通信频带相对较宽,则在PTR处理的信号中仍然存在较大的ISI和CCI。使用SC调制的宽带MIMO PTR通信中的残留ISI和CCI增加了后续干扰抑制方法的复杂性,为了进一步减小残留ISI和CCI的跨度,使用了有效的宽带MIMO-PTR水下声学通信本文提出了滤波多音调(FMT)调制。理论上对提出的方法进行了分析,并使用在实验池中进行的实验进行了验证。将该方法的实验结果与采用SC调制的MIMO-PTR声学通信的实验结果进行了比较。结果表明,使用FMT方法可以扩大符号间隔,并减小剩余ISI和CCI的范围。与采用SC调制的MIMO-PTR声学通信相比,该方法在信道估计,PTR和残余干扰抑制方面具有更高的通信性能和更低的计算复杂度。 (C)2016 Elsevier Ltd.保留所有权利。

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