Publication | Open Access
Frequency-Domain Chromatic Dispersion Equalization Using Overlap-Add Methods in Coherent Optical System
36
Citations
7
References
2011
Year
PhotonicsChromatic DispersionEngineeringOptical Transmission SystemWave OpticOptical PropertiesFrequency Domain EqualizersChannel EqualizationComputational ComplexityOptical Wireless CommunicationOptical SystemsOptical CommunicationCoherent Optical SystemOptoelectronicsOptical Networking
Abstract The frequency domain equalizers (FDEs) employing two types of overlap-add zero-padding (OLA-ZP) methods are applied to compensate the chromatic dispersion in a 112-Gbit/s non-return-to-zero polarization division multiplexed quadrature phase shift keying (NRZ-PDM-QPSK) coherent optical transmission system. Simulation results demonstrate that the OLA-ZP methods can achieve the same acceptable performance as the overlapsave method. The required minimum overlap (or zero-padding) in the FDE is derived, and the optimum fast Fourier transform length to minimize the computational complexity is also analyzed.
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