DocumentCode :
1390983
Title :
45.8 and 125 Gb/s CP-QPSK/CP-BPSK Field Trial Over Installed Submarine Cable
Author :
Sleiffer, Vincent A J M ; Veljanovski, Vladimir ; van den Borne, Dirk ; Capasso, Joe ; Kuluslu, Hayri ; Seixas, Jose ; Schramm, Volker ; Tschersich, Alexander ; Nogueira, Rogerio ; Pavlovic, Natasa B. ; Ivarson, Kristofer ; Spaelter, Stefan ; De Waardt, H
Author_Institution :
COBRA Inst., Eindhoven Univ. of Technol., Eindhoven, Netherlands
Volume :
30
Issue :
4
fYear :
2012
Firstpage :
624
Lastpage :
633
Abstract :
We show successful transmission of 45.8 and 125 Gb/s coherent-detected polarization-multiplexed quadrature phase-shift keying (CP-QPSK) over both 2054 and 4108 km of 10 Gb/s nonreturn-to-zero-optimized field-deployed submarine cable. Moreover, we report successful transmission of 45.8 Gb/s coherent-detected polarization-multiplexed binary phase-shift keying (CP-BPSK) over 9420 km of legacy submarine fiber. We present single-channel transmission results, as well as wavelength-division multiplexed (WDM) transmission results with copropagating WDM channels placed on a 100 GHz and on a 50 GHz grid, where we optimized the transmission performance by sweeping the launch power and precompensation. For 45.8 Gb/s CP-QPSK, a margin with respect to the forward error correction (FEC) limit of 1.7 dBQ was obtained after transmitting over a 4108 km distance in a 50 GHz grid WDM configuration. Considering the transmission of 125 Gb/s CP-QPSK over the same distance and with the same channel configuration, a 1.1 dBQ margin was measured, showing the feasibility of a tenfold increase in transmission capacity over legacy submarine fiber. This significantly delays the costly alternative of deploying a new submarine cable. For the transmission of a 45.8 Gb/s CP-BPSK modulated signal on a 50 GHz WDM grid over a 9420 km distance, a margin of 1.2 dBQ with respect to the FEC limit is reported. This underlines the great robustness of CP-BPSK toward nonlinear fiber impairments and thereby the feasibility to cross transoceanic distances with this modulation format.
Keywords :
optical cables; quadrature phase shift keying; submarine cables; wavelength division multiplexing; CP-QPSK/CP-BPSK format; bit rate 125 Gbit/s; bit rate 45.8 Gbit/s; coherent detected polarization multiplexed binary phase shift keying; coherent detected polarization multiplexed quadrature phase shift keying; cross transoceanic distance; distance 2054 km; distance 4108 km; distance 9420 km; modulation format; nonlinear fiber impairment; nonreturn-to-zero optimized field deployed submarine cable; single channel transmission; submarine fiber; wavelength division multiplexed transmission; Bit error rate; Dispersion; Modulation; Optical fiber cables; Receivers; Underwater cables; Wavelength division multiplexing; Coherent detection; phase modulation; polarization multiplexing;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2011.2178395
Filename :
6096344
Link To Document :
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