DocumentCode
1693750
Title
Feature-based modulation classification using circular statistics
Author
Davidson, Keith L. ; Goldschneider, Jill R. ; Cazzanti, Luca ; Pitton, James W.
Author_Institution
Insightful Corp., Seattle, WA, USA
Volume
2
fYear
2004
Firstpage
765
Abstract
In this paper we present a new set of signal features that can be used for modulation classification of digital communication signals in a blind environment. These new features are based on circular summary statistics taken from the instantaneous frequency of the sampled signal. The instantaneous frequency of a sampled baseband digital signal is expressed in radians. We consider the sampled instantaneous frequency as a set of realizations of a circular random variable and apply circular summary statistics to extract classification features. In particular, we use trigonometric moments of the instantaneous frequency to create feature vectors. We address the problem of distinguishing between FSK-type signals and QAM-type signals; and subsequently, the problem of discrimination between the FSK-type signals. We show that in both problems the signal classes are well separated in the circular statistics feature space and that automatic classifiers can be defined with simple thresholds.
Keywords
blind source separation; demodulation; digital communication; feature extraction; frequency shift keying; military communication; pattern classification; quadrature amplitude modulation; signal sampling; FSK-type signals; QAM-type signals; blind environment; circular summary statistics; digital communication signals; feature-based modulation classification; instantaneous frequency; military communication; sampled baseband digital signal; signal features; trigonometric moments; Baseband; Data analysis; Density measurement; Frequency shift keying; Histograms; Probability; Random variables; Statistical analysis; Statistical distributions; Statistics;
fLanguage
English
Publisher
ieee
Conference_Titel
Military Communications Conference, 2004. MILCOM 2004. 2004 IEEE
Print_ISBN
0-7803-8847-X
Type
conf
DOI
10.1109/MILCOM.2004.1494895
Filename
1494895
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