DocumentCode :
765511
Title :
New Modulation Techniques for Low-Cost Power and Bandwidth Efficient Satellite Earth Stations
Author :
LE-NGOC, THO ; Feher, Kamilo ; Van, Hiep Pham
Author_Institution :
Spar Aerospace Ltd., Ste. Anne de Bellevue, P.Q., Canada
Volume :
30
Issue :
1
fYear :
1982
fDate :
1/1/1982 12:00:00 AM
Firstpage :
275
Lastpage :
283
Abstract :
New power and bandwidth efficient modulation techniques, named intersymbol interference and jitter-free (IJF)-QPSK and IJF-OQPSK, are presented. The properties of the IJF-QPSK and IJF-OQPSK signals in linear and nonlinear earth-station-satellite systems are studied. A finite-state Markov chain model is used to calculate power spectra of hard-limited IJF-QPSK and IJF-OQPSK. The model provides insights into the spectral spreading action of the ideal hard-limiter on the IJF-QPSK and IJF-OQPSK signals. Experimental, simulation, and theoretical results are in good agreement. The results indicate that the IJF-OQPSK modulated signal exhibits much less spectrum spreading than QPSK, OQPSK, and MSK. The error probability (Pe) performance of IJF-QPSK and IJF-OQPSK in an additive white Gaussian noise and adjacent-channel interference environment is evaluated. The results show that the Pe performance of the IJF-OQPSK is superior to that of QPSK, OQPSK, and MSK is narrow-band nonlinear channels.
Keywords :
phase shift keying; satellite relay systems; IJF-OQPSK; IJF-QPSK; additive white Gaussian noise; adjacent-channel interference environment; bandwidth efficient modulation techniques; earth-station-satellite systems; error probability; finite-state Markov chain model; intersymbol interference; jitter-free; power spectra; spectral spreading action; Additive white noise; Bandwidth; Error probability; Filtering; High power amplifiers; Intersymbol interference; Phase shift keying; Power system modeling; Quadrature phase shift keying; Satellite ground stations;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/TCOM.1982.1095365
Filename :
1095365
Link To Document :
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