DocumentCode
1241621
Title
Matched direction detectors and estimators for array processing with subspace steering vector uncertainties
Author
Besson, Olivier ; Scharf, Louis L. ; Vincent, François
Author_Institution
Dept. of Avionics & Syst., ENSICA, Toulouse, France
Volume
53
Issue
12
fYear
2005
Firstpage
4453
Lastpage
4463
Abstract
In this paper, we consider the problem of estimating and detecting a signal whose associated spatial signature is known to lie in a given linear subspace but whose coordinates in this subspace are otherwise unknown, in the presence of subspace interference and broad-band noise. This situation arises when, on one hand, there exist uncertainties about the steering vector but, on the other hand, some knowledge about the steering vector errors is available. First, we derive the maximum-likelihood estimator (MLE) for the problem and compute the corresponding Crame´r-Rao bound. Next, the maximum-likelihood estimates are used to derive a generalized likelihood ratio test (GLRT). The GLRT is compared and contrasted with the standard matched subspace detectors. The performances of the estimators and detectors are illustrated by means of numerical simulations.
Keywords
array signal processing; maximum likelihood detection; radiofrequency interference; Cramer-Rao bound; array processing; broadband noise; generalized likelihood ratio test; matched direction detectors; matched direction estimators; maximum-likelihood estimation; signal detection; spatial signature; subspace interference; subspace steering vector uncertainty; Array signal processing; Detectors; Interference; Maximum likelihood detection; Maximum likelihood estimation; Numerical simulation; Signal detection; Testing; Uncertainty; Vectors; CramÉr–Rao bound; detection; generalized likelihood ratio test; maximum-likelihood estimation; steering vector uncertainties;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2005.859336
Filename
1542473
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