DocumentCode :
1486237
Title :
Spacial Extrapolation-Based Blind DOA Estimation Approach for Closely Spaced Sources
Author :
Wan, Feng ; Zhu, Wei-Ping ; Swamy, M.N.S.
Author_Institution :
Concordia Univ., Montreal, QC, Canada
Volume :
46
Issue :
2
fYear :
2010
fDate :
4/1/2010 12:00:00 AM
Firstpage :
569
Lastpage :
582
Abstract :
This paper presents a new blind direction of arrival (DOA) estimation approach for closely-spaced sources. The new method first estimates the autoregressive (AR) coefficients via an initial DOA estimation and then uses the AR coefficients for the linear extrapolation of the correlation matrix to implement a fine DOA estimation. Both initial and fine DOA estimations are performed using the estimation of signal parameters via rotational invariance techniques (ESPRIT) algorithm. Unlike a conventional AR coefficient estimation method which estimates the AR coefficients on the snapshot basis, our AR coefficients are estimated in the correlation domain once for a block of snapshots, thus significantly reducing the computational complexity of the antenna array. Moreover, the proposed spatial extrapolation-based DOA estimation approach is analyzed using perturbation theory. Both the theoretical analysis and computer simulations show that the proposed method outperforms the conventional techniques in terms of the mean square error (MSE) of the DOA estimation when the angle of separation of the signal sources is very small.
Keywords :
autoregressive processes; computational complexity; correlation methods; direction-of-arrival estimation; extrapolation; matrix algebra; mean square error methods; ESPRIT algorithm; autoregressive coefficients; blind direction of arrival estimation; closely spaced sources; closely-spaced sources; computational complexity; correlation matrix linear extrapolation; mean square error; spacial extrapolation-based blind direction-of-arrival estimation estimation; Array signal processing; Delay estimation; Direction of arrival estimation; Extrapolation; Multiple signal classification; Parameter estimation; Predictive models; Signal processing algorithms; Signal resolution; Wireless communication;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.2010.5461642
Filename :
5461642
Link To Document :
بازگشت