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Error characterization of underwater acoustic channels based on the simple Fritchman model

机译:基于简单Fritchman模型的水下声通道误差表征

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Burst errors are often observed in the practical underwater acoustic channels because of the frequency selective fading, leading to the reliability performance degradation of the underwater acoustic communications. This paper proposes a coding channel model based on the simple Fritchman model for describing the burst error statistics of the underwater acoustic communications. The error-free run distribution, a special error statistical parameter, is derived from a measured error sequence and denoted with the curve fitting of the exponential function terms, yielding the simple Fritchman model with the fitting parameters. The burst error distribution and the block error probabilities are then calculated with the model and compared with the experimental values. It is shown that there is a good agreement between the calculated and the measured values. The coding channel model can be used for the design of the error-correcting code and decoding algorithms of the error control schemes for the underwater acoustic communications.
机译:由于频率选择性衰落,经常在实际的水下声信道中观察到突发错误,从而导致水下声通信的可靠性性能下降。本文提出了一种基于简单Fritchman模型的编码信​​道模型,用于描述水下声通信的突发错误统计信息。无误差运行分布是一种特殊的误差统计参数,它是从测得的误差序列中得出的,并用指数函数项的曲线拟合表示,从而生成具有拟合参数的简单Fritchman模型。然后使用模型计算突发错误分布和块错误概率,并将其与实验值进行比较。结果表明,计算值和测量值之间有很好的一致性。编码信道模型可以用于水声通信的纠错码的设计和纠错方案的解码算法。

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