深海水平阵宽带信号单快拍波达方向估计
Estimation of direction of arrival for broadband signals based on single snapshot using horizontal arrays in the deep sea
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摘要: 针对深海水平阵宽带目标多径方位差异小且相干性强的问题, 提出了一种适用于宽带相干信号的高分辨压缩感知方位估计方法。该方法首先对接收信号进行傅里叶变换, 然后通过空间重采样将信号各频率分量聚焦到参考频率上, 最后利用压缩感知进行波达方向估计。仿真实验表明, 该方法能够对深海多径的到达方位进行分离与估计, 相较传统基于压缩感知的波达方向估计方法估计精度更高, 均方根误差平均降幅约85%。海试实验结果表明, 所提方法能够实现声影区及直达声区特征声线的分离与准确估计, 与传统的压缩感知波达方向估计相比, 该方法不仅具有更低的背景干扰, 且具有更高的方位估计精度。Abstract: Addressing the issue of small multipath azimuth differences and strong coherence for broadband targets using deep-sea horizontal arrays, a high-resolution compressive sensing direction of arrival (DOA) estimation method tailored for broadband coherent signals is proposed. This method first applies a Fourier transform to the received signals, then focuses each frequency component of the signals onto a reference frequency through spatial resampling, and finally employs compressive sensing for DOA estimation. Simulation experiments have shown that this method is capable of separating and estimating the arrival azimuths of multipath signals in deep-sea environments. Compared to traditional compressive sensing-based DOA estimation methods, this method demonstrates higher estimation accuracy, with a reduction in root mean square error by approximately 85%. Sea trial results show that the proposed method can separate and accurately estimate the characteristic sound rays in both the sound shadow zone and the direct sound zone. Compared to traditional compressive sensing DOA estimation, this method not only exhibits lower background interference but also achieves higher azimuth estimation accuracy.
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