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Underwater Direction of Arrival Estimation using Wideband Arrays of Opportunity

机译:宽带机会阵列的水下到达方向估计

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We present a scheme to estimate the direction of arrival of acoustic signals reflected by underwater targets using wideband hydrophone arrays of opportunity. Such arrays may be obtained by arranging together multiple smaller sub-arrays that were originally designed to work independently. The array of opportunity that results may be subject to practical mounting limitations, hence the typical constraint that closest array elements should not be spaced more than one half-wavelength may not be upheld. In these conditions, the array is affected by spatial ambiguity. Our proposed scheme solves this issue by fusing direction-of-arrival information with side information on the estimated target location (obtained via multilateration). This makes it possible to eliminate most of the ambiguity, and yields accurate direction-of-arrival estimates. Our simulation results show that our scheme achieves satisfactory direction of arrival estimation and localization results. Moreover, even by relying on arrays of opportunity, we can outperform classical direction-of-arrival algorithms applied to larger arrays with half-wavelength spacing design.
机译:我们提出了一种使用机会的宽带水听器阵列来估计水下目标反射的声信号到达方向的方案。这样的阵列可以通过将最初设计为独立工作的多个较小的子阵列排列在一起而获得。产生的机会阵列可能会受到实际安装限制,因此可能无法维持最接近的阵列元素的间距不应超过一个半波长的典型约束。在这些条件下,阵列会受到空间模糊性的影响。我们提出的方案通过将到达方向信息与有关估计的目标位置(通过多边获取)的辅助信息进行融合来解决此问题。这使得消除大多数歧义成为可能,并产生准确的到达方向估计。仿真结果表明,该方案达到了满意的到达估计和定位结果的方向。而且,即使依靠机会阵列,我们也可以胜过采用半波长间隔设计的应用于较大阵列的经典到达方向算法。

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