DocumentCode :
1754610
Title :
Generation, Transmission, and Detection of 4-D Set-Partitioning QAM Signals
Author :
Fischer, Johannes Karl ; Schmidt-Langhorst, Carsten ; Alreesh, Saleem ; Elschner, Robert ; Frey, Felix ; Berenguer, Pablo Wilke ; Molle, Lutz ; Nolle, Markus ; Schubert, Colja
Author_Institution :
Dept. Photonics Networks & Syst., Fraunhofer Inst. for Telecommun. Heinrich Hertz Inst., Berlin, Germany
Volume :
33
Issue :
7
fYear :
2015
fDate :
April1, 1 2015
Firstpage :
1445
Lastpage :
1451
Abstract :
Four-dimensional (4-D) set-partitioning quadrature amplitude modulation (4-D SP-QAM) has emerged as an interesting option for cost- and resource-efficient realization of bandwidth variable transceivers in elastic optical networks. In this invited paper, we review the principles for generation of 4-D SP-QAM signals, and describe options for forward error correction coding of 4-D SP-QAM signals and for realization of the digital signal processing in the coherent receiver. Furthermore, we report on the experimental realization of 4-D 512-ary and 2048-ary SP-QAM signals at a symbol rate of 28 GBd and investigate their performance in a Nyquist-WDM scenario. In transmission experiments over standard single-mode fiber, we compare the reach and spectral efficiency of five-carrier Nyquist-WDM signals modulated by various 4-D SP-QAM formats and polarization-division multiplexed (PDM) QAM formats. Of these modulation formats, the one with the lowest spectral efficiency is 128-ary SP-QAM encoding 7 bits/4-D symbol and the one with the highest spectral efficiency is PDM-64QAM encoding 12 bits/4-D symbol. By switching the modulation format, the spectral efficiency can be optimized for a specific reach with a granularity of 0.56 bit/s/Hz.
Keywords :
forward error correction; optical fibre networks; optical receivers; quadrature amplitude modulation; wavelength division multiplexing; 4-D set partitioning QAM signals; Nyquist-WDM signals; PDM; SP-QAM signals; bandwidth variable transceivers; coherent receiver; digital signal processing; elastic optical networks; forward error correction coding; polarization division multiplexed; set partitioning quadrature amplitude modulation; standard single-mode fiber; Bit error rate; Digital signal processing; Forward error correction; Optical transmitters; Quadrature amplitude modulation; Receivers; Digital signal processing; Digital signal processing, optical fiber communication; optical fiber communication; partitioning algorithms; quadrature amplitude modulation; transceivers; turbo codes; wavelength division multiplexing;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2014.2379926
Filename :
6983529
Link To Document :
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