DocumentCode :
1252387
Title :
Circuit design and performance analysis of carrier recovery loop for digital DBS system in the presence of phase noise
Author :
Kim, Young-Wan ; Chae, Jong-Suk ; Park, Dong-Chid
Author_Institution :
ETRI, Radio & Broadcasting Technol. Lab., Japan
Volume :
45
Issue :
3
fYear :
1999
fDate :
9/1/1999 12:00:00 AM
Firstpage :
294
Lastpage :
302
Abstract :
The theoretical analysis of a digital satellite broadcasting system in the presence of phase noise is performed. An effective technique to design the carrier recovery circuit is also presented based on the analyzed loop parameters, such as degradation loss due to phase noise, average time to cycle slip, and carrier signal acquisition time. It is possible to design a system providing the optimal service and satisfying service requirements for a digital satellite broadcasting system. In this paper, the carrier recovery loop that provides optimal performance in the presence of phase noise exhibits the parameters of 0.707 for damping factor and 40 kHz for noise bandwidth. The designed phase-locked loop indicates a performance of 0.26 dB for impairment due to phase noise at 10-3 BER, 3.88×106 hours for average time to cycle slip, and 34 msec for carrier signal acquisition time. The carrier acquisition time of the designed carrier recovery circuit is in accordance with the analyzed result
Keywords :
digital communication; digital phase locked loops; direct broadcasting by satellite; phase noise; synchronisation; 0.26 dB; average time to cycle slip; carrier acquisition time; carrier recovery circuit; carrier recovery loop; carrier signal acquisition time; circuit design; damping factor; degradation loss; digital DBS system; digital satellite broadcasting system; loop parameters; noise bandwidth; optimal service; performance; performance analysis; phase noise; phase-locked loop; service requirements; Bandwidth; Circuit synthesis; Damping; Degradation; Performance analysis; Phase locked loops; Phase noise; Satellite broadcasting; Signal analysis; Signal design;
fLanguage :
English
Journal_Title :
Broadcasting, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9316
Type :
jour
DOI :
10.1109/11.796271
Filename :
796271
Link To Document :
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