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Passive Source Localization Using Acoustic Intensity in Multipath-Dominant Shallow-Water Waveguide

机译:使用多径优势浅水波导的声学强度的被动源定位

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摘要

The array invariant technique has been recently proposed for passive source localization in the ocean. It has successfully estimated the source–receiver horizontal range in multipath-dominant shallow-water waveguides. However, it requires a relatively large-scale hydrophone array. This study proposes an array invariant method that uses acoustic intensity, which is a vector quantity that has the same direction as the sound wave propagating through a water medium. This method can be used to estimate not only the source–receiver horizontal range, but also the azimuth to an acoustic source. The feasibility of using a vector quantity for the array invariant method is examined through a simulation and an acoustic experiment in which particle velocity signals are obtained using a finite difference approximation of the pressure signals at two adjacent points. The source localization results estimated using acoustic intensity are compared with those obtained from beamforming of the acoustic signals acquired by the vertical line array.
机译:最近已经提出了阵列不变的技术在海洋中被动源定位。它已成功估计多径定位浅水波导中的源极接收器水平范围。但是,它需要一个相对大的水听器阵列。本研究提出了一种使用声学强度的阵列不变方法,其是具有与通过水介质传播的声波具有相同方向的矢量量。该方法不仅可以用于估计源 - 接收器水平范围,还可以使用方位角到声源。使用用于阵列不变方法的矢量数量的可行性通过模拟和声学实验检查,其中使用两个相邻点处的压力信号的有限差近似获得粒子速度信号。将使用声强度估计的源定位结果与由由垂直线阵列获取的声信号的波束成形获得的那些进行比较。

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