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Near-field/far-field source localization in ocean with an acoustic vector sensor array using polynomial rooting

机译:使用多项式生根的声矢量传感器阵列在海洋中进行近场/远场源定位

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In this paper, we consider the problem of three-dimensional (3D — azimuth, elevation/depth and range) localization of a single acoustic source using an array of acoustic vector sensors (AVS). Localization algorithms such as multiple signal classification (MUSIC) require a 3D search over the location parameter space which is computationally expensive. Several methods have been proposed based on arrays of acoustic pressure sensors (APS) [1], [2] which simplified this search to polynomial rooting (PR) combined with a 2D search in the range-elevation/depth space. However, the computational complexity remains high for such methods since 2D search is involved. We present a method to localize a source with an array of AVS via a decoupled estimation of azimuth, and a 1D range search combined with PR to estimate the elevation/depth. This is computationally simpler than, and performs as well as PR with 2D searching and 3D MUSIC.
机译:在本文中,我们考虑了使用声矢量传感器(AVS)阵列对单个声源进行三维(3D-方位角,仰角/深度和范围)定位的问题。诸如多信号分类(MUSIC)之类的定位算法需要在位置参数空间上进行3D搜索,这在计算上非常昂贵。已经提出了几种基于声压传感器(APS)[1],[2]的方法,该方法将这种搜索简化为多项式求根(P​​R),并结合了在范围高程/深度空间中的2D搜索。但是,由于涉及2D搜索,因此这种方法的计算复杂度仍然很高。我们提出了一种通过对方位角进行解耦估计以及将一维范围搜索与PR结合以估计高程/深度来定位具有AVS阵列的源的方法。与2D搜索和3D MUSIC相比,它在计算上比PR更简单,并且执行效果与PR一样好。

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