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Passive Localization of Noise-Producing Targets Using a Compact Volumetric Array

机译:使用紧凑体积阵列对噪声产生目标进行被动定位

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摘要

A technique is presented for passively localizing multiple noise-producing targets by cross-correlating the elevation beams of a compact volumetric array on separate bearings. A target’s multipath structure inherently contains information about its range; however, unknown, random noise waveforms make time separation of individual arrivals difficult. Ocean ambient noise has previously been used to measure multipath delays to the seabed by cross-correlating the beams of a vertical line array [Siderius, Song, Gerstoft, Hodgkiss, Hursky, and Harrison, J. Acoust. Soc. Am. 127, 2193–2200 (2010)], but this methodology has not been applied to distant noise sources having non-vertical arrivals. The technique presented in this paper uses a compact volu-metric array mounted to an autonomous underwater vehicle to measure the three-dimensional directionality and time delays of multipath arrivals, while adaptively rejecting clutter and multi-target interference. This is validated with experimental results in a shallow ocean environment in which a small workboat maneuvered in the vicinity. Short ranges could be esti-mated reliably using straight ray paths, but longer ranges required accounting for ray refraction.
机译:提出了一种技术,该技术通过使紧凑的体积阵列的立柱在单独的轴承上互相关来被动地定位多个产生噪声的目标。目标的多径结构固有地包含有关其范围的信息;但是,未知的随机噪声波形使单个到达的时间分离变得困难。以前,海洋环境噪声已用于通过对垂直线阵列的波束进行互相关来测量到海底的多径延迟[Siderius,Song,Gerstoft,Hodgkiss,Hursky和Harrison,J. Acoust。 Soc。上午。 127,2193–2200(2010)],但此方法尚未应用于具有非垂直到达的远距离噪声源。本文提出的技术使用安装在水下自动驾驶仪上的紧凑型体积阵列来测量多径到达的三维方向性和时延,同时自适应地消除杂波和多目标干扰。这在浅海环境中的实验结果中得到了验证,在该环境中有一艘小型工作船在附近操纵。可以使用直线光线路径可靠地估计短距离,但是需要较长的距离才能解释光线的折射。

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