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Multipath Effects on High-Frequency Coherent Acoustic Communications in Shallow Water

机译:浅水中高频相干声通信的多径效应

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摘要

Shallow-water acoustic communication channel, referred to as a multipath-limited channel, produces inter-symbol interference that poses a significant obstacle to reliable communication. Accordingly, signal-to-multipath ratio (SMR), rather than signal-to-noise ratio (SNR), becomes an important factor affecting communication performance. However, it is difficult to estimate SMR from measured communication data, especially at higher frequency (>10kHz) because many arrivals scattered from rough ocean boundaries produce a significant intrapath time spreading, which acts as random noise in communication. In this paper, the energy fraction of the channel impulse response existing in one symbol duration is proposed as a parameter for estimating the quality of shallow-water communication channels. This parameter is compared with the bit-error-rate performance for data acquired in shallow water off the south coast of Korea, where the water depth is 45m and the bottom consists of sandy clay sediment. The results imply that the energy fraction in one symbol duration may be used as a parameter for describing shallow-water communication channels and applied to the quick decision of a symbol or bit rate in a shallow-water field for reliable underwater communication.
机译:浅水声通信信道,称为多径限制信道,产生符号间干扰,这对可靠通信构成了重大障碍。因此,信噪比(SMR)而不是信噪比(SNR)成为影响通信性能的重要因素。但是,很难从测得的通信数据中估计SMR,尤其是在较高的频率(> 10kHz)下,因为从粗糙的海洋边界散布的许多到达信号会产生显着的路径内时间扩展,这在通信中充当随机噪声。本文提出了一个符号持续时间内存在的信道冲激响应的能量分数作为估计浅水通信信道质量的参数。将此参数与韩国南部沿海浅水区(深度为45m,底部由砂质粘土沉积物组成)中采集的数据的误码率性能进行比较。结果暗示一个符号持续时间中的能量分数可以用作描述浅水通信信道的参数,并且可以应用于浅水域中符号或比特率的快速决策,以实现可靠的水下通信。

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  • 来源
    《Japanese journal of applied physics》 |2013年第7issue2期|07HG03.1-07HG03.7|共7页
  • 作者单位

    Department of Marine Sciences and Convergent Technology, Hanyang University, Ansan, Gyeonggi 426-791, Korea;

    Department of Electronic Engineering, Inha University, Incheon 402-751, Korea;

    Department of Marine Sciences and Convergent Technology, Hanyang University, Ansan, Gyeonggi 426-791, Korea,Korea Institute of Ocean Science and Technology, Ansan, Gyeonggi 426-744, Korea;

    Department of Marine Sciences and Convergent Technology, Hanyang University, Ansan, Gyeonggi 426-791, Korea;

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