DocumentCode :
1246225
Title :
Phase noise-tolerant synchronous QPSK/BPSK baseband-type intradyne receiver concept with feedforward carrier recovery
Author :
Noé, Reinhold
Author_Institution :
Univ. of Paderborn, Germany
Volume :
23
Issue :
2
fYear :
2005
Firstpage :
802
Lastpage :
808
Abstract :
Quadrature phase-shift keying (QPSK) is attractive to increase transmission lengths and capacity, especially when it is combined with polarization division multiplex. Baseband processing at the symbol rate allows to keep the required electronic bandwidth low. So far, external cavity lasers seemed to be indispensable for such transmission systems due to linewidth requirements. We propose a feedforward carrier recovery scheme based on regenerative intradyne frequency dividers, i.e., the well-known regenerative frequency divider is extended to process baseband in-phase and quadrature (I and Q) signals. An IF linewidth tolerance of up to 0.001 times the QPSK symbol rate is predicted, 2 decades more than for an optical phase locked loop with a realistic loop delay. This means that commercially available DFB lasers shall suffice for synchronous optical QPSK/BPSK transmission.
Keywords :
delays; frequency dividers; frequency division multiplexing; optical fibre communication; optical modulation; optical noise; optical phase locked loops; optical receivers; phase noise; quadrature phase shift keying; synchronisation; BPSK; DFB lasers; IF linewidth tolerance; QPSK; baseband processing; external cavity lasers; feedforward carrier recovery; intradyne receiver; loop delay; optical phase locked loop; phase noise tolerance; polarization division multiplex; quadrature phase-shift keying; regenerative intradyne frequency dividers; synchronous optical transmission; Bandwidth; Baseband; Binary phase shift keying; Frequency conversion; Optical frequency conversion; Optical receivers; Phase noise; Phase shift keying; Polarization; Quadrature phase shift keying; Homodyne detection; optical fiber communication; phase-shift keying (PSK); quadrature phase-shift keying (QPSK); synchronous detection;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2004.838818
Filename :
1402556
Link To Document :
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