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Statistical channel modeling of wireless shallow water acoustic communications from experiment data

机译:实验数据中无线浅水声通信统计信道建模

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This paper analyzes statistical characteristics of underwater acoustic channels estimated by ocean experimental data. The baseband complex channel impulse responses (CIRs) are estimated by a time-domain least square method with sliding windows applied to long probing sequences. The probability density functions (PDF) of the real part, imaginary part, magnitude, and phase of the CIR are evaluated, and the two-sample Kolmogorov-Smirnov test is used to measure fitness of the magnitude PDF to the Gamma, Rayleigh, and compound-K distributions. The second-order statistics of the channel are also investigated in terms of autocorrelation function, channel coherence time, and scattering function. The experimental results demonstrate that underwater channels are often worse than Rayleigh fading channels.
机译:本文分析了海洋实验数据估计的水下声道统计特征。基带复杂通道脉冲响应(CIR)通过时域最小二乘法估计,其具有应用于长探测序列的滑动窗口。评估CIR的实部,虚部,幅度和相位的概率密度函数(PDF),并且使用两个样本的Kolmogorov-smirnov测试来测量仪表,瑞利和伽马仪的幅度PDF的适应度复合K分布。在自相关函数,信道相干时间和散射功能方面还研究了通道的二阶统计。实验结果表明,水下通道通常比瑞利褪色通道更糟糕。

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