Title :
Design Strategies and Merit of System Parameters for Uniform Uncompensated Links Supporting Nyquist-WDM Transmission
Author :
Curri, Vittorio ; Carena, Andrea ; Arduino, Andrea ; Bosco, Gabriella ; Poggiolini, Pierluigi ; Nespola, Antonino ; Forghieri, Fabrizio
Author_Institution :
Dipt. di Elettron., Politec. di Torino, Turin, Italy
Abstract :
We consider the transmission of Nyquist-wavelength-division-multiplexed channels based on polarization-multiplexed m-ary QAM multilevel modulation formats with DSP-based coherent detection over point-to-point uncompensated periodically amplified uniform fiber links. Taking into account both the effect of amplified spontaneous emission noise accumulation and generation of nonlinear interference (NLI) introduced by fiber propagation, we propose three different design strategies: the maximization of both the Q margin and the span-loss margin, for a given span length, and the maximization of the total link length given a target performance. We propose and apply an approximation for the Gaussian-noise model in order to evaluate the NLI intensity, deriving for the three design strategies the merit of link and signal parameters. Finally, we validate the proposed methodologies using experimental and simulative results already published in the literature.
Keywords :
Gaussian noise; nonlinear optics; optical fibre communication; optical fibre losses; optical fibre polarisation; optical links; optical modulation; optical noise; quadrature amplitude modulation; superradiance; telecommunication channels; wavelength division multiplexing; DSP-based coherent detection; Gaussian-noise model; Nyquist-WDM transmission; Nyquist-wavelength-division-multiplexed channel transmission; Q margin; amplified spontaneous emission noise accumulation; design strategy; fiber propagation; nonlinear interference generation; point-to-point uncompensated periodically amplified uniform fiber links; polarization-multiplexed m-ary QAM multilevel modulation formats; signal parameters; span length; span-loss margin; Approximation methods; Bit error rate; Modulation; Optical fiber communication; Receivers; Signal to noise ratio; Coherent detection; Multilevel modulation formats; Nyquist-WDM; multilevel modulation formats; non-linear interference; nyquist-WDM; uncompensated links;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2015.2447151