DocumentCode :
48516
Title :
Constellation Expansion for Differentially Encoded 100G Transmission
Author :
Leoni, Paolo ; Calabro, Stefano ; Lankl, Berthold
Author_Institution :
Inst. fur Informationstechnik, Univ. der Bundeswehr Munchen, Neubiberg, Germany
Volume :
26
Issue :
11
fYear :
2014
fDate :
1-Jun-14
Firstpage :
1142
Lastpage :
1145
Abstract :
Recent technological progress has enabled the implementation of powerful soft-decision forward error correction codes performing very close to the theoretical Shannon limit. However, recently we showed that, even when the most powerful binary codes are used, a significant potential gain remains unexploited in traditional, coherently detected, non differentially encoded, polarization division multiplexed 100G optical communication systems, when the modulation format is restricted to quadrature phase-shift keying. In this letter, we extend our previous work to the case of differentially encoded systems. Assuming again additive and phase white Gaussian noise, we show that an additional gain of 1-4.5 dB (depending on the amount of phase noise present) is available even when differential transmission is employed, if higher order constellations are used in place of quadrature phase-shift keying. Special care and suitable optimization criteria are required in the choice of the alternative signal constellations since, in contrast with the NDE case, the Euclidean distance is not a significant figure of merit anymore.
Keywords :
binary codes; error correction codes; forward error correction; optical communication; quadrature phase shift keying; additive white Gaussian noise; binary codes; constellation expansion; differential transmission; optical communication systems; optimization criteria; phase white Gaussian noise; powerful soft-decision forward error correction codes; quadrature phase-shift keying; Forward error correction; Gain; Optical noise; Phase noise; Phase shift keying; Photonics; Signal to noise ratio; Forward error correction; coded modulation; coherent detection; constellation expansion; differential encoding; high-order constellations; mutual information;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2014.2313457
Filename :
6777518
Link To Document :
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