Title :
Robust adaptive beamforming via estimating steering vector based on semidefinite relaxation
Author :
Khabbazibasmenj, Arash ; Vorobyov, Sergiy A. ; Hassanien, Aboulnasr
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB, Canada
Abstract :
Most of the known robust adaptive beamforming techniques can be unified under one framework. This is to use minimum variance distortionless response principle for beamforming vector computation in tandem with sample covariance matrix estimation and steering vector estimation based on some information about steering vector prior. Motivated by such unified framework, we develop a new robust adaptive beamforming method based on finding a more accurate estimate of the actual steering vector than the available prior. The objective for finding such steering vector estimate is the maximization of the beamformer output power under the constraints that the estimate does not converge to an interference steering vector and does not change the norm of the prior. The resulting optimization problem is a non-convex quadratically constrained quadratic programming problem, which is NP hard in general, but can be efficiently and exactly solved in our specific case. Our simulation results demonstrate the superiority of the proposed method over other robust adaptive beamforming methods.
Keywords :
adaptive signal processing; array signal processing; computational complexity; concave programming; covariance matrices; estimation theory; quadratic programming; NP hard problem; beamforming vector computation; covariance matrix estimation; minimum variance distortionless; nonconvex quadratic constrained quadratic programming problem; robust adaptive beamforming technique; semidefinite relaxation; steering vector estimation; Array signal processing; Arrays; Interference; Optimization; Robustness; Signal to noise ratio; Vectors;
Conference_Titel :
Signals, Systems and Computers (ASILOMAR), 2010 Conference Record of the Forty Fourth Asilomar Conference on
Conference_Location :
Pacific Grove, CA
Print_ISBN :
978-1-4244-9722-5
DOI :
10.1109/ACSSC.2010.5757574