DocumentCode :
1449073
Title :
Advanced Modulation Schemes for Short-Range Optical Communications
Author :
Randel, Sebastian ; Breyer, Florian ; Lee, Sian C J ; Walewski, Joachim W.
Author_Institution :
Corp. Technol., Inf. & Commun., Siemens AG, Munich, Germany
Volume :
16
Issue :
5
fYear :
2010
Firstpage :
1280
Lastpage :
1289
Abstract :
The performance of advanced modulation schemes for spectrally efficient data transmission is reviewed, targeting short-range intensity-modulated optical channels with direct detection. Hereby, the focus lies on the performance of multilevel pulse-amplitude modulation combined with electronic equalization and, as an alternative modulation scheme, discrete multitone. A comprehensive statistical analysis of clipping noise is presented and exact expressions for the performance of symmetrically clipped discrete multitone are derived. It is shown that the clipping noise is impulsive and obeys a generalized Laplace distribution. The bit-error probability due to clipping is studied in detail, and it is found that the impact of clipping noise is reduced for an increasing number of subchannels. Finally, the optical link margins of multilevel pulse-amplitude modulation in combination with electronic equalization and that of discrete multitone in combination with margin-adaptive bit loading are compared. It is found that even symmetrically clipped discrete multitone suffers from its large crest factor in the peak-power-limited channel and that, in many instances, pulse-amplitude modulation provides higher link margins for the same target bit-error probability.
Keywords :
Laplace equations; adaptive modulation; equalisers; error statistics; intensity modulation; optical communication; optical links; optical modulation; optical noise; pulse amplitude modulation; Laplace distribution; advanced modulation; bit-error probability; clipped discrete multitone; clipping noise; comprehensive statistical analysis; direct detection; electronic equalization; margin-adaptive bit loading; multilevel pulse-amplitude modulation; optical link; peak-power-limited channel; short-range intensity-modulated optical channel; short-range optical communication; spectrally efficient data transmission; Data communication; Intensity modulation; Noise reduction; Optical fiber communication; Optical modulation; Optical noise; Optical pulses; Probability; Pulse modulation; Statistical analysis; Adaptive modulation; digital modulation; optical communications;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2010.2040808
Filename :
5437277
Link To Document :
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