Title :
Pair-Matching Method by Signal Covariance Matrices for 2D-DOA Estimation
Author :
Yinsheng Wei ; Xiaojiang Guo
Author_Institution :
Sch. of Electron. & Inf. Eng., Harbin Inst. of Technol., Harbin, China
Abstract :
The two-dimensional direction-of-arrival (2D-DOA) estimation for the L-shaped array is usually divided into two one-dimensional DOA (1D-DOA) estimation for the two linear subarrays, and then the elevation and azimuth angles are obtained from the two correctly matched 1D-DOAs. This letter presents a novel method for pair-matching of the two 1D-DOAs. The key points of the proposed method are: 1) construct two signal covariance matrices corresponding to the two estimated 1D-DOAs; 2) introduce an objective function, defined over the two signal source covariance matrices, to find the matched 1D-DOAs; 3) by introducing a permutation matrix for the signal covariance matrices, the optimal pair-matching is obtained with an efficient method. Simulations under different scenarios, with low signal-to-noise ratio (SNR), snapshot deficiency, and uncorrelated or coherent signal settings, show the robustness of the proposed method.
Keywords :
covariance matrices; direction-of-arrival estimation; signal processing; 1D-DOA estimation; 2D-DOA estimation; linear subarrays; one-dimensional direction-of-arrival estimation; optimal pair-matching method; permutation matrix; signal source covariance matrices; two-dimensional direction-of-arrival estimation; Accuracy; Arrays; Azimuth; Covariance matrices; Estimation; Signal to noise ratio; L-shaped array; pair matching; signal covariance matrices; two-dimensional direction-of-arrival (2D-DOA) estimation;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2014.2331076