首页> 外文期刊>The Journal of the Acoustical Society of America >Low-frequency broadband sound source localization using an adaptive normal mode back-propagation approach in a shallow-water ocean
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Low-frequency broadband sound source localization using an adaptive normal mode back-propagation approach in a shallow-water ocean

机译:浅水海域中使用自适应正模反向传播方法进行低频宽带声源定位

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摘要

A variety of localization methods with normal mode theory have been established for localizing low frequency (below a few hundred Hz), broadband signals in a shallow water environment. Gauss-Markov inverse theory is employed in this paper to derive an adaptive normal mode back-propagation approach. Joining with the maximum a posteriori mode filter, this approach is capable of separating signals from noisy data so that the back-propagation will not have significant influence from the noise. Numerical simulations are presented to demonstrate the robustness and accuracy of the approach, along with comparisons to other methods. Applications to real data collected at the edge of the continental shelf off New Jersey, USA are presented, and the effects of water column fluctuations caused by nonlinear internal waves and shelfbreak front variability are discussed.
机译:已经建立了多种使用标准模式理论的定位方法,用于在浅水环境中定位低频(几百Hz以下)的宽带信号。本文采用高斯-马尔可夫逆理论推导一种自适应的正态模反向传播方法。结合最大的后验模式滤波器,该方法能够将信号与噪声数据分离开,从而使反向传播不会受到噪声的明显影响。数值模拟表明了该方法的鲁棒性和准确性,并与其他方法进行了比较。介绍了在美国新泽西州大陆架边缘收集的真实数据的应用,并讨论了由非线性内波和架子破裂前缘变化引起的水柱波动的影响。

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