DocumentCode
25110
Title
Subspace Leakage Analysis and Improved DOA Estimation With Small Sample Size
Author
Shaghaghi, Mahdi ; Vorobyov, Sergiy A.
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB, Canada
Volume
63
Issue
12
fYear
2015
fDate
15-Jun-15
Firstpage
3251
Lastpage
3265
Abstract
Classical methods of DOA estimation such as the MUSIC algorithm are based on estimating the signal and noise subspaces from the sample covariance matrix. For a small number of samples, such methods are exposed to performance breakdown, as the sample covariance matrix can largely deviate from the true covariance matrix. In this paper, the problem of DOA estimation performance breakdown is investigated. We consider the structure of the sample covariance matrix and the dynamics of the root-MUSIC algorithm. The performance breakdown in the threshold region is associated with the subspace leakage where some portion of the true signal subspace resides in the estimated noise subspace. In this paper, the subspace leakage is theoretically derived. We also propose a two-step method that improves the performance by modifying the sample covariance matrix such that the amount of the subspace leakage is reduced. Furthermore, we introduce a phenomenon named as root-swap which occurs in the root-MUSIC algorithm in the low sample size region and degrades the performance of the DOA estimation. A new method is then proposed to alleviate this problem. Numerical examples and simulation results are given for uncorrelated and correlated sources to illustrate the improvement achieved by the proposed methods. Moreover, the proposed algorithms are combined with the pseudo-noise resampling method to further improve the performance.
Keywords
covariance matrices; direction-of-arrival estimation; signal sampling; DOA estimation; MUSIC algorithm; pseudo-noise resampling method; root-swap; sample covariance matrix; signal estimation; subspace leakage analysis; two-step method; Covariance matrices; Direction-of-arrival estimation; Electric breakdown; Estimation; Multiple signal classification; Noise; Signal processing algorithms; Covariance matrix; DOA estimation; root-MUSIC; root-swap; subspace leakage;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2015.2422675
Filename
7084669
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