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Underwater Acoustic Communication With an Orthogonal Signal Division Multiplexing Scheme in Doubly Spread Channels

机译:双扩频信道中正交信号划分复用方案的水下声通信

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Underwater acoustic (UWA) communication is an ongoing challenge because of the heavy time spread by multipath and Doppler spreads. In this paper, we propose a UWA communication system using orthogonal signal-division multiplexing (OSDM), a scheme that measures the multipath profile without an adaptation or interpolation process, to achieve stable communication in doubly spread channels. We previously evaluated the performance of an OSDM scheme in a UWA communication system in both an experiment and simulations. In the present study, we experimentally compared the performance of OSDM and existing communication schemes—single-carrier with decision feedback equalizer (DFE) and orthogonal frequency-division multiplexing (OFDM)—in a test tank with respect to communication quality, data rate, frame length, and calculation complexity. We found that OSDM with a multichannel receiver is attractive in terms of communication quality; it achieved a far better bit error rate (BER) performance compared to the other schemes in both static and dynamic channels with various input signal-to-noise ratios, although the complexity is less than that achieved with single-carrier DFE. Based on these findings, we suggest that OSDM can provide a highly reliable communication environment for UWA communication with multipath and Doppler spread, such as in shallow water.
机译:水下声(UWA)通信是一个持续的挑战,因为多径和多普勒扩展会占用大量时间。在本文中,我们提出了一种使用正交信号分割多路复用(OSDM)的UWA通信系统,该方案无需进行自适应或插值处理即可测量多径配置文件,从而在双扩展信道中实现稳定的通信。我们先前在实验和仿真中都评估了UWA通信系统中OSDM方案的性能。在本研究中,我们在测试罐中通过实验比较了OSDM和现有通信方案(具有决策反馈均衡器(DFE)和正交频分复用(OFDM)的单载波)的通信质量,数据速率,帧长和计算复杂度。我们发现,具有多通道接收器的OSDM在通信质量方面很有吸引力。在各种输入信噪比的静态和动态信道中,与其他方案相比,它的误码率(BER)性能要好得多,尽管其复杂度比单载波DFE的复杂度要低。基于这些发现,我们建议OSDM可以为具有多路径和多普勒扩展的UWA通信(例如在浅水中)提供高度可靠的通信环境。

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