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Understanding and utilizing waveguide invariant range-frequency striations in ocean acoustic waveguides

机译:理解和利用海洋声波导中的波导不变范围 - 频率条纹

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摘要

Much of the recent research in ocean acoustics has focused on developing methods to exploit the effects that the sea surface and seafloor have on acoustic propagation. Many of those methods require detailed knowledge of the acoustic properties of the seafloor and the sound speed profile (SSP), which limits their applicability. The range-frequency waveguide invariant describes striations that often appear in plots of acoustic intensity versus range and frequency. These range-frequency striations have properties that depend strongly on the frequency of the acoustic source and on distance between the acoustic source and receiver, but that depend mildly on the SSP and seafloor properties. Because of this dependence, the waveguide invariant can be utilized for applications such as passive and active sonar, time-reversal mirrors, and array processing, even when the SSP or the seafloor properties are not well known. This thesis develops a framework for understanding and calculating the waveguide invariant, and uses that framework to develop signal processing techniques for the waveguide invariant. A method for passively estimating the range from an acoustic source to a receiver is developed, and tested on experimental data. Heuristics are developed to estimate the minimum source bandwidth and minimum horizontal aperture required for range estimation. A semi-analytic formula for the waveguide invariant is derived using WKB approximation along with a normal mode description of the acoustic field in a rangeindependent waveguide. This formula is applicable to waveguides with arbitrary SSPs, and reveals precisely how the SSP and the seafloor reflection coefficient affect the value of the waveguide invariant. Previous research has shown that the waveguide invariant range-frequency striations can be observed using a single hydrophone or a horizontal line array (HLA) of hydrophones. This thesis shows that traditional array processing techniques are sometimes inadequate for the purpose of observing range-frequency striations using a HLA. Array processing techniques designed specifically for observing range-frequency striations are developed and demonstrated. Finally, a relationship between the waveguide invariant and wavenumber integrations is derived, which may be useful for studying range-frequency striations in elastic environments such as ice-covered waveguides.
机译:海洋声学的最新研究大部分集中在开发方法以利用海面和海底对声学传播的影响。这些方法中的许多方法都需要详细了解海底声学特性和声速剖面(SSP),这限制了它们的适用性。范围-频率波导不变式描述了通常出现在声强与范围和频率的关系图中的条纹。这些范围-频率条纹的特性在很大程度上取决于声源的频率以及声源与接收器之间的距离,但在一定程度上取决于SSP和海底特性。由于这种依赖性,即使不知道SSP或海底特性,也可以将波导不变式用于诸如被动和主动声纳,时间倒转镜和阵列处理之类的应用中。本文提出了一种理解和计算波导不变性的框架,并利用该框架开发了波导不变性的信号处理技术。开发了一种被动估计从声源到接收器的距离的方法,并在实验数据上进行了测试。开发启发法以估计范围估计所需的最小源带宽和最小水平孔径。使用WKB近似以及与范围无关的波导中声场的正常模式描述,得出了波导不变性的半解析公式。该公式适用于具有任意SSP的波导,并精确揭示了SSP和海底反射系数如何影响波导不变值。先前的研究表明,使用单个水听器或水听器的水平线阵列(HLA)可以观察到波导不变的范围-频率条纹。本论文表明,传统的阵列处理技术有时不足以使用HLA观察范围-频率条纹。开发和演示了专门为观察范围频率条纹而设计的阵列处理技术。最后,推导了波导不变性与波数积分之间的关​​系,这对于研究弹性环境(如覆冰的波导)中的范围频率条纹可能很有用。

著录项

  • 作者

    Cockrell, Kevin L;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 eng
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