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Beam space estimation of the direction-of-arrivals of coherent signals

机译:相干信号到达方向的波束空间估计

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摘要

When the incident signals received by a phased array are correlated, spatial smoothing techniques which are used in element space (ES) to overcome the rank deficiency of the signal subspace are not able to be directly applied in beam space (BS). Recently it has been shown that an approximate ES covariance matrix with the appropriate signal and noise subspaces can be reconstructed from the BS covariance matrix thus allowing spatial smoothing to be carried out on the reconstructed ES covariance matrix and hence high resolution BS direction-of-arrival estimates to be obtained for correlated arrivals. The theory previously developed required that the beams be orthogonal and this study shows how the use of the Moore-Penrose pseudo-inverse and sector focused stability version of BS processing allows the requirement of orthogonality to be reduced to the more realistic and practical constraint that the beams used be independent. The special case of a uniform linear array is considered and it is shown that due to the Vandermonde structure of the beamforming matrix spatial smoothing can be carried out directly in BS.
机译:当相控阵接收的入射信号相关时,不能在波束空间(BS)中直接应用在元素空间(ES)中用于克服信号子空间的秩不足的空间平滑技术。最近显示,可以从BS协方差矩阵重构具有适当信号和噪声子空间的近似ES协方差矩阵,从而允许在重构的ES协方差矩阵上进行空间平滑,从而实现高分辨率BS到达方向相关到达需要获得的估计。先前开发的理论要求光束是正交的,这项研究表明,使用BS处理的Moore-Penrose伪逆和扇区聚焦稳定版本如何将正交性的要求降低到更现实和实际的约束,即使用的光束是独立的。考虑了均匀线性阵列的特殊情况,结果表明,由于波束形成矩阵的范德蒙德结构,可以在BS中直接进行空间平滑。

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