DocumentCode :
974953
Title :
Direction-of-Arrival Estimation for Nonuniform Sensor Arrays: From Manifold Separation to Fourier Domain MUSIC Methods
Author :
Rübsamen, Michael ; Gershman, Alex B.
Author_Institution :
Commun. Syst. Group, Tech. Univ. Darmstadt, Darmstadt
Volume :
57
Issue :
2
fYear :
2009
Firstpage :
588
Lastpage :
599
Abstract :
In this paper, the problem of spectral search-free direction-of-arrival (DOA) estimation in arbitrary nonuniform sensor arrays is addressed. In the first part of the paper, we present a finite-sample performance analysis of the well-known manifold separation (MS) based root-MUSIC technique. Then, we propose a new class of search-free DOA estimation methods applicable to arrays of arbitrary geometry and establish their relationship to the MS approach. Our first technique is referred to as Fourier-domain (FD) root-MUSIC and is based on the fact that the spectral MUSIC function is periodic in angle. It uses the Fourier series to expand this function and reformulate the underlying DOA estimation problem as an equivalent polynomial rooting problem. Our second approach applies the zero-padded inverse Fourier transform to the FD root-MUSIC polynomial to avoid the polynomial rooting step and replace it with a simple line search. Our third technique refines the FD root-MUSIC approach by using weighted least-squares approximation to compute the polynomial coefficients. The proposed techniques are shown to offer substantially improved performance-to-complexity tradeoffs as compared to the MS technique.
Keywords :
Fourier transforms; array signal processing; direction-of-arrival estimation; finite element analysis; least squares approximations; polynomials; signal classification; DOA estimation; Fourier domain MUSIC methods; Fourier series; equivalent polynomial rooting problem; finite-sample performance analysis; multiple signal classification algorithm; nonuniform sensor arrays; polynomial coefficients; spectral search-free direction-of-arrival estimation; weighted least-squares approximation; zero-padded inverse Fourier transform; Direction-of-arrival (DOA) estimation; nonuniform sensor arrays; root-MUSIC;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2008.2008560
Filename :
4663945
Link To Document :
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