DocumentCode :
2841137
Title :
Coherent 100G nonlinear compensation with single-step digital backpropagation
Author :
Secondini, M. ; Rommel, S. ; Fresi, F. ; Forestieri, E. ; Meloni, G. ; Poti, L.
Author_Institution :
TeCIP Inst., Scuola Superiore Sant´Anna, Pisa, Italy
fYear :
2015
fDate :
11-14 May 2015
Firstpage :
63
Lastpage :
67
Abstract :
Enhanced-SSFM digital backpropagation (DBP) is experimentally demonstrated and compared to conventional DBP. A 112 Gb/s PM-QPSK signal is transmitted over a 3200km dispersion-unmanaged link. The intradyne coherent receiver includes single-step digital backpropagation based on the enhanced- SSFM algorithm. In comparison, conventional DBP requires twenty steps to achieve the same performance. An analysis of the computational complexity and structure of the two algorithms reveals that the overall complexity and power consumption of DBP are reduced by a factor of 16 with respect to a conventional implementation, while the computation time is reduced by a factor of 20. As a result, the proposed algorithm enables a practical and effective implementation of DBP in real-time optical receivers, with only a moderate increase of the computational complexity, power consumption, and latency with respect to a simple feed-forward equalizer for dispersion compensation.
Keywords :
computational complexity; equalisers; optical receivers; quadrature phase shift keying; DBP; PM-QPSK signal; SSFM digital backpropagation; computational complexity; dispersion compensation; feed-forward equalizer; intradyne coherent receiver; nonlinear compensation; power consumption; real-time optical receivers; single step digital backpropagation; Backpropagation; Computational complexity; Dispersion; Optical polarization; Optical receivers; Power demand; digital backpropagation; fiber nonlinearity; fiber-optic systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Optical Network Design and Modeling (ONDM), 2015 International Conference on
Conference_Location :
Pisa
Type :
conf
DOI :
10.1109/ONDM.2015.7127275
Filename :
7127275
Link To Document :
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