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Characterization and Modeling of Underwater Acoustic Communications Channels for Frequency-Shift-Keying Signals

机译:用于频移键控信号的水下声学通信信道的表征与建模

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In a fading channel, bit error rate for frequency-shift-keying signals is determined predominantly by the envelope amplitude fading statistics of the signal. The narrowband envelope amplitude distributions are measured from the TREX04 data (as a function of frequency) using M-sequence signals centered at 17 kHz with a 5 kHz bandwidth. The results do not fit the Rayleigh, Rician, Nakagami m-distributions. In contrast, we find that the data are fitted well by a K-distribution. We also analyze the data in terms of long-term and short-term statistics. The long-term and short-term fading statistics are well fitted by the lognormal distribution and Rayleigh distribution respectively, choosing the average time scale to be ~0.2 sec. The joint probability distribution function of a lognormal and the Rayleigh distribution is approximately the K-distribution.
机译:在衰落通道中,由信号的包络幅度衰落统计量主要确定频移键控信号的误码率。使用以17 kHz为中心的M序列信号,从TREX04数据(作为频率的函数)测量窄带包络幅度分布,其具有5 kHz带宽。结果不适合瑞利,瑞典,Nakagami M分布。相比之下,我们发现数据通过K分布很好地安装得很好。我们还在长期和短期统计方面分析了数据。长期和短期衰落统计分别均采用Lognormal分布和Rayleigh分布良好,选择平均时间尺度为约0.2秒。 Lognormal和Rayleigh分布的联合概率分布函数大约是K分布。

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