DocumentCode :
1475388
Title :
DOA estimation of wideband sources using a harmonic source model and uniform linear array
Author :
Agrawal, Monika ; Prasad, Surendra
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol., Delhi, India
Volume :
47
Issue :
3
fYear :
1999
fDate :
3/1/1999 12:00:00 AM
Firstpage :
619
Lastpage :
629
Abstract :
We consider the problem of estimation of the DOAs of multiple wideband sources incident on a uniform linear array (ULA) in the presence of spatially and temporally white Gaussian noise (WGN). The approach presented builds up on the IQML algorithm suggested by Bresler and Macovski (1986) for the case of narrowband DOA estimation. It is shown that the concept of an ARMA model for the observed data vector for the narrowband case can be generalized to model an appropriately stacked, space-time data vector obtained by combining the space-time samples. The coefficients of the corresponding 2-D predictor polynomial can be used to represent the null subspace of the wideband array steering matrix, and rooting of the polynomial at each frequency, separately, gives the DOA estimates. These separate estimates at multiple frequencies are combined into a single DOA estimate in a least squares sense. This leads to the formulation of an IQML like procedure for the spatial parameter estimation of wideband sources. Like its narrowband counterpart, the proposed approach is applicable to both noncoherent and coherent sources. The performance of the proposed method is studied via extensive computer simulations and by comparison with the Cramer-Rao bounds
Keywords :
Gaussian noise; array signal processing; autoregressive moving average processes; direction-of-arrival estimation; harmonic analysis; iterative methods; maximum likelihood estimation; polynomials; white noise; 2D predictor polynomial coefficients; ARMA model; Cramer-Rao bounds; IQML algorithm; IQML like procedure; coherent sources; computer simulations; harmonic source model; least squares; multiple wideband sources; narrowband DOA estimation; noncoherent sources; null subspace; observed data vector; polynomial rooting; space-time samples; spatial parameter estimation; spatially white Gaussian noise; stacked space-time data vector; temporally white Gaussian noise; uniform linear array; wideband array steering matrix; Computer simulation; Direction of arrival estimation; Frequency estimation; Gaussian noise; Least squares approximation; Narrowband; Parameter estimation; Polynomials; Vectors; Wideband;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.747770
Filename :
747770
Link To Document :
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