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The relationship of time-reversal and multi-channel decision feedback equalization in underwater acoustic communication

机译:水下声学通信中的时间逆转和多通道判定反馈均衡的关系

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摘要

The relationship between the performance of the passive time-reversal (PTR) communication technique and multi-channel decision feedback equalization for moving-source single-input/multiple-output (SIMO) communication problems in the multipath-rich shallow sea environment is investigated. Both methods are applied to a synthetic dataset of an underwater acoustic moving-source model, generated by the normal mode method, to evaluate utilization of the wavefield energy as an adaptive diversity-combining method. The results show that PTR followed by decision feedback equalization (PTR-DFE) is the more robust technique in a moving-source environment with moderate source speed. In particular, PTR-DFE can utilize most of the energy in moderate-speed conditions. It is also discussed how the performance of each method can be limited in the moving-source SIMO problem. The results indicate that the performance of PTR-DFE can be limited by the convergence property and filter tap length limitations of the DFE in problems with rapidly moving sources. (C) 2019 The Japan Society of Applied Physics
机译:研究了多径 - 丰富的浅海环境中移动源单输入/多输出(SIMO)通信问题的移动时间反转(PTR)通信技术的性能与多通道判定反馈均衡的关系。两种方法应用于由正常模式方法产生的水下声学移动源模型的合成数据集,以评估波场能量的利用作为自适应分集组合方法。结果表明,PTR跟随判定反馈均衡(PTR-DFE)是具有中等源速度的移动源环境中更鲁棒的技术。特别地,PTR-DFE可以利用中等速度条件下的大部分能量。还讨论了如何在移动源SIMO问题中限制每个方法的性能。结果表明,PTR-DFE的性能可以受到DFE在快速移动源的问题中的收敛性和滤波器抽头长度限制的限制。 (c)2019年日本应用物理学会

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  • 来源
    《Japanese journal of applied physics》 |2019年第sg期|SGGF03.1-SGGF03.10|共10页
  • 作者单位

    Japan Agcy Marine Earth Sci & Technol 2-15 Natsushimacho Yokosuka Kanagawa 2370061 Japan;

    Japan Agcy Marine Earth Sci & Technol 2-15 Natsushimacho Yokosuka Kanagawa 2370061 Japan;

    Japan Agcy Marine Earth Sci & Technol 2-15 Natsushimacho Yokosuka Kanagawa 2370061 Japan;

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