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Space-time matrix method for 2-D direction-of-arrival estimation

机译:二维到达方向估计的时空矩阵方法

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This paper presents a novel space—time matrix method for two-dimensional direction-of-arrival estimation of multiple narrow-band sources impinging on the far field of a planar array. Using the proposed method, both the elevation angle and the azimuth angle of a source can be estimated by the same eigenvector of a space-time matrix, or the elevation angle is estimated by the eigenvector, but the azimuth angle is estimated by the corresponding eigenvalue. At the same time, the paring of the estimated elevation angles and azimuth angles is automatically determined. Compared with the previous works, the proposed method can provide better performance with substantially reduced computational complexity since the associated eigenvalue decompositions are for smaller-sized data matrices. In addition, it can resolve the incoming rays with very close azimuth angles or very close elevation angles.
机译:本文提出了一种新颖的时空矩阵方法,用于二维冲击到达平面阵列远场的多个窄带源的到达方向估计。使用所提出的方法,可以通过时空矩阵的相同特征向量来估计源的仰角和方位角,或者可以通过特征向量来估计仰角,但是通过对应的特征值来估计方位角。 。同时,自动确定估计的仰角和方位角的配对。与先前的工作相比,由于相关的特征值分解是针对较小尺寸的数据矩阵,因此所提出的方法可以提供更好的性能,并显着降低计算复杂度。另外,它可以解决非常接近的方位角或非常接近的仰角的入射光线。

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