DocumentCode
1489881
Title
Generalized Method of Moments Estimation of Location Parameters: Application to Blind Phase Acquisition
Author
Colonnese, Stefania ; Rinauro, Stefano ; Scarano, Gaetano
Author_Institution
Dip. INFOCOM, Univ. La Sapienza di Roma, Rome, Italy
Volume
58
Issue
9
fYear
2010
Firstpage
4735
Lastpage
4749
Abstract
In this paper, we address the problem of location parameter estimation via a Generalized Method of Moments (GMM) approach. The general framework for the GMM estimation requires the minimization of a suitable, generally nonconvex, elliptic norm. Here we show that, if the estimandum is a shift parameter for a suitable statistic of the observations, a fast, DFT-based, computationally efficient procedure can be employed to perform the estimation. Besides we discuss the relation between the GMM estimation and the maximum likelihood (ML) estimation, showing that the GMM estimation rule provides a closed form ML estimator for shift parameters when the observations are multinomially distributed. As a case study, we analyze a GMM blind phase offset estimator for general quadrature amplitude modulation constellations. Simulation results and theoretical performance analysis show that the GMM estimator outperforms selected state of the art estimators, approaching the Cramér-Rao lower bound for a wide range of signal-to-noise ratio values.
Keywords
maximum likelihood estimation; method of moments; phase estimation; quadrature amplitude modulation; signal detection; Cramer-Rao lower bound; DFT; GMM estimation; blind phase acquisition; blind phase offset estimator; generalized method of moment estimation; location parameter; maximum likelihood estimation; quadrature amplitude modulation constellation; Generalized method of moments (GMM); location parameter; phase acquisition;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2010.2050316
Filename
5464261
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