Title :
Improved orthogonal projection approach utilising interference covariance matrix reconstruction for adaptive beamforming
Author :
Xiaopeng Yang ; Lu Yan ; Yuze Sun ; Tao Zeng
Author_Institution :
Sch. of Inf. & Electron., Beijing Inst. of Technol., Beijing, China
fDate :
September 25 2014
Abstract :
When the training snapshots are contaminated by the desired signal, the performance of the orthogonal projection (OP) approach degrades significantly. Therefore, an improved OP adaptive beamforming is proposed by reconstructing interference covariance matrix to eliminate the desired signal cancellation effect. In the proposed method, by integrating the Capon spatial spectrum over a region separated from the desired signal direction, the interference-plus-noise covariance matrix is reconstructed first to remove the desired signal component from the sample covariance matrix. Subsequently, the interference subspace is estimated by eigenvalue decomposition, and then the adaptive weight vector is calculated using the OP algorithm to eliminate the noise perturbation. Simulation results show that the performance of the proposed algorithm is almost the same as the optimum beamforming.
Keywords :
adaptive signal processing; array signal processing; covariance matrices; eigenvalues and eigenfunctions; interference (signal); signal reconstruction; vectors; Capon spatial spectrum; adaptive weight vector; desired signal cancellation effect elimination; desired signal component; desired signal direction; eigenvalue decomposition; improved OP adaptive beamforming; improved orthogonal projection approach; interference covariance matrix reconstruction utilization; interference subspace estimation; interference-plus-noise covariance matrix; noise perturbation elimination; optimum beamforming; training snapshots;
Journal_Title :
Electronics Letters
DOI :
10.1049/el.2014.1705