On the characterization of time-scale underwater acoustic signals using matching pursuit decomposition

N. Josso, J.J. Zhang, A. Papandreou-Suppappolat, C. Ioana, J. Mars, C. Gervaise, Y. Stéphan
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引用次数: 22

Abstract

We investigate a characterization of underwater acoustic signals using extracted time-scale features of the propagation channel model for medium-to-high frequency range. The underwater environment over these frequencies causes multipath and Doppler scale changes on the transmitted signal. This is the result of the time-varying nature of the channel and also due to the relative motion between the transmitter-channel-receiver configuration. As a sparse model is essential for processing applications and for practical use in simulations, we employ the matching pursuit decomposition algorithm to estimate the channel time delay and Doppler scale change model attributes for each propagating path. The proposed signal characterization was validated for sparse channel profiles using real-time data from the BASE07 experiment.
基于匹配追踪分解的时间尺度水声信号表征研究
本文利用提取的中高频传播信道模型的时间尺度特征研究了水声信号的表征。在这些频率上的水下环境导致发射信号的多径和多普勒尺度变化。这是信道时变性质的结果,也是由于发射器-信道-接收器配置之间的相对运动。由于稀疏模型对于处理应用和仿真的实际应用至关重要,我们采用匹配跟踪分解算法来估计每个传播路径的信道时延和多普勒尺度变化模型属性。利用BASE07实验的实时数据验证了稀疏信道特征的信号表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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