DocumentCode
2338343
Title
WLC33-4: Array-based Linear Modulation Classifier with Two-Stage CFO Estimation in Fading Channels
Author
Li, Hong ; Abdi, Ali ; Bar-Ness, Yeheskel ; Su, Wei
Author_Institution
ECE Dept., New Jersey Inst. of Technol., Newark, NJ
fYear
2006
fDate
Nov. 27 2006-Dec. 1 2006
Firstpage
1
Lastpage
6
Abstract
Likelihood ratio test (LRT)-based linear modulation classifier is sensitive to unknown parameters, such as carrier frequency offset (CFO), phase shift, etc. An antenna array-based quasi-hybrid likelihood ratio test (qHLRT) approach is proposed to cope with the problem. A non-maximum likelihood (ML) estimator is employed to reduce the computational burden of multivariate maximization. A two-stage CFO estimation scheme is also proposed to increase the accuracy of CFO estimation. To combat channel fading, maximal ratio combining (MRC) technique is applied for CFO estimation as well as the computation of the likelihood functions. The Cramer-Rao lower bound (CRLB) of the proposed CFO estimation method is derived. It is shown that with nonlinear least-squares (NLS) algorithm and method- of-moment (MoM) algorithm to estimate phase and amplitude respectively, our scheme offers an effective and practical solution to recognize linear modulation formats in fading channels.
Keywords
antenna arrays; computational complexity; fading channels; least squares approximations; maximum likelihood estimation; method of moments; Cramer-Rao lower bound; antenna array-based quasi-hybrid likelihood ratio test; array-based linear modulation classifier; carrier frequency offset; combat channel fading; computational complexity; fading channels; maximal ratio combining; nonlinear least-squares algorithm method-of-moment algorithm; phase shift; two-stage CFO estimation; Amplitude estimation; Antenna arrays; Chirp modulation; Diversity reception; Fading; Linear antenna arrays; Maximum likelihood estimation; Phase estimation; Phase modulation; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Global Telecommunications Conference, 2006. GLOBECOM '06. IEEE
Conference_Location
San Francisco, CA
ISSN
1930-529X
Print_ISBN
1-4244-0356-1
Electronic_ISBN
1930-529X
Type
conf
DOI
10.1109/GLOCOM.2006.807
Filename
4151437
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