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Simultaneous localization of multiple broadband non-impulsive acoustic sources in an ocean waveguide using the array invariant

机译:使用阵列不变量在海洋波导中同时定位多个宽带非脉冲声源

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摘要

The array invariant method, previously derived for instantaneous range and bearing estimation of a single broadband impulsive source in a horizontally stratified ocean waveguide, can be generalized to simultaneously localize multiple uncorrelated broadband noise sources that are not necessarily impulsive in the time domain by introducing temporal pulse compression and an image processing technique similar to the Radon transform. This can be done by estimating the range and bearing of broadband non-impulsive sources from measured beam-time migration lines of modal arrivals along a horizontal array arising from differences in modal group velocity and modal polar angle for each propagating mode. The generalized array invariant approach is used to estimate the range of a vertical source array and vocalizing humpback whales over wide areas from measurements made by a towed horizontal receiver array during the Gulf of Maine 2006 Experiment. The localization results are shown to have roughly 12% root-mean-squared errors from Global Positioning System measured ground truth positions for controlled source transmissions and less than 10% discrepancy from those obtained independently via moving array triangulation for vocalizing humpbacks, respectively.
机译:先前可以用于水平距离海洋波导中单个宽带脉冲源的瞬时范围和方位估计的阵列不变方法可以推广到通过引入时间脉冲同时定位在时域中不一定是脉冲的多个不相关的宽带噪声源压缩和类似于Radon变换的图像处理技术。这可以通过从沿水平阵列的模态到达的测得的波束时间迁移线估计宽带非脉冲源的范围和方位来完成,该模态到达沿水平阵列由模态群速度和模态极角对每种传播模式的差异引起。广义阵列不变方法用于估计缅因州2006年海湾实验期间拖曳的水平接收器阵列进行的测量,从而测量垂直源阵列的范围并发声在大范围内座头鲸。定位结果显示,在全球定位系统测得的用于控制源传输的地面真相位置中,均方根误差约为12%,与通过移动阵列三角测量来发声驼背而分别获得的误差相差不到10%。

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