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Efficient 2D DOA estimation of coherent signals in spatially correlated noise using electromagnetic vector sensors

机译:使用电磁矢量传感器对空间相关噪声中的相干信号进行有效的2D DOA估计

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This paper considers a new azimuth-elevation DOA estimation algorithm for multiple signals using electromagnetic vector sensor array. We firstly exploit the planar-plus-an-isolated sensor array geometry (Li et al. in IEE Proc Radar Sonar Navig 143(5):295–299, 1996) to define a full rank cross-covariance matrix. Then we develop an efficient ESPRIT-like algorithm using the so-called propagator to estimate the steering vectors of electromagnetic vector sensor, without performing eigen-decomposition into signal subspaces. Finally, we compute the vector cross product to obtain the closed-form azimuth-elevation angle estimates. The new algorithm does not require 2D iterative searching, and is applicable to coherent (fully correlated) signals and spatially correlated noise. In addition, the proposed algorithm offers enhanced estimation precision by sparse array aperture extension, but suffers no DOA cyclical ambiguity. Monte-Carlo simulations are presented to verify the effectiveness of the proposed algorithm.
机译:本文考虑了一种新的使用电磁矢量传感器阵列的多信号方位角DOA估计算法。我们首先利用平面加一个隔离的传感器阵列的几何形状(Li等人,在IEE Proc Radar Sonar Navig 143(5):295-299,1996)中定义了一个全秩交叉协方差矩阵。然后,我们开发了一种有效的类似于ESPRIT的算法,使用所谓的传播子来估计电磁矢量传感器的转向矢量,而无需对信号子空间进行特征分解。最后,我们计算矢量叉积以获得闭合形式的方位角仰角估计值。新算法不需要2D迭代搜索,并且适用于相干(完全相关)的信号和空间相关的噪声。另外,提出的算法通过稀疏阵列孔径扩展提供了增强的估计精度,但是没有DOA循环歧义。提出了蒙特卡洛仿真,以验证所提出算法的有效性。

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