DocumentCode
1469598
Title
A Pseudo-Divide-By-Carrier Coherent Demodulator for DSB-SC Signals
Author
Alaa, Ahmed M.
Volume
31
Issue
2
fYear
2012
Firstpage
23
Lastpage
27
Abstract
A novel demodulation technique was introduced to recover the baseband signal from a DSB-SC pass-band signal. The technique relies on an arithmetic division of the DSB-SC wave by a synchronized carrier wave. The phase error and frequency drifts may lead to severely corrupted signal. A earner recovery technique (PLL or signal squaring method) are recommended for robust operation. The electronic circuit responsible for regenerating baseband signal was introduced. To ensure stable operation, a pseudo division technique is briefly introduced to avoid the accidental division by zero for nonsynchronized earners. The proposed technique builds a coherent direct conversion demodulator that needs no filtering and thus accommodates various baseband bandwidths. Simulation results show that using a synchronized carrier will result in accurate results. However, the complexity shall increase while implementing the pseudo division and thus conventional direct conversion receivers become simpler, but on the cost of involving filtering, which limits baseband bandwidths and introduces phase delay.
Keywords
demodulation; demodulators; signal restoration; synchronisation; DSB-SC pass-band signals; DSB-SC wave; PLL; baseband bandwidths; baseband signal recovery; baseband signal regeneration; carrier wave synchronization; coherent direct conversion demodulator; conventional direct conversion receivers; demodulation technique; earner recovery technique; electronic circuit; filtering; frequency drifts; nonsynchronized earners; phase delay; phase error; pseudodivide-by-carrier coherent demodulator; pseudodivision technique; signal-squaring method; synchronized carrier; Amplitude modulation; Baseband; Demodulation; Phase locked loops; Radio frequency; Receivers; Synchronization;
fLanguage
English
Journal_Title
Potentials, IEEE
Publisher
ieee
ISSN
0278-6648
Type
jour
DOI
10.1109/MPOT.2012.2182823
Filename
6169891
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