Title :
Improved orthogonal projection adaptive beamforming by using reconstructed interference covariance matrix
Author :
Xiaopeng Yang ; Lu Yan ; Zongao Zhang ; Yuze Sun ; Teng Long
Author_Institution :
Sch. of Inf. & Electron., Beijing Inst. of Technol., Beijing, China
Abstract :
When the desired signal is present in the training snapshots, the performance of conventional orthogonal projection (OP) adaptive beamforming degrades severely due to the desired signal cancellation effect. To overcome this deficiency, the improved orthogonal projection (IOP) adaptive beamforming by using reconstructed interference covariance matrix is proposed. In the proposed algorithm, the interference covariance matrix is firstly reconstructed by integrating the Capon spatial spectrum over a region separated from the desired signal direction. Subsequently, the jammer subspace is estimated, and then the adaptive weight vector is calculated using conventional OP algorithm. The simulation results show that the corresponding output signal-to-jammer-plus-noise ratio (SJNR) performance of proposed IOP algorithm is almost same with the optimum beamformer with the desired signal in the training snapshots. Therefore, the proposed IOP algorithm is significantly effective for the actual system.
Keywords :
array signal processing; covariance matrices; interference suppression; jamming; signal denoising; signal reconstruction; Capon spatial spectrum; IOP algorithm; OP algorithm; SJNR performance; adaptive weight vector; improved orthogonal projection adaptive effect; interference covariance matrix reconstruction; jammer subspace; signal cancellation effect; signal-to-jammer-plus-noise ratio; training snapshot; Array signal processing; Arrays; Covariance matrices; Interference; Jamming; Training; Vectors; Adaptive beamforming; covariance matrix; desired signal cancellation; orthogonal projection; spatial spectrum;
Conference_Titel :
Radar Conference (Radar), 2014 International
DOI :
10.1109/RADAR.2014.7060459