Title :
Multilevel Optical Systems With MLSD Receivers Insensitive to GVD and PMD
Author :
Colavolpe, Giulio ; Foggi, Tommaso ; Forestieri, Enrico ; Prati, Giancarlo
Author_Institution :
Dipt. di In- gegneria dell Inf., Univ. of Parma, Parma
fDate :
5/15/2008 12:00:00 AM
Abstract :
This paper analyzes optical transmission systems based on high-order modulations such as phase-shift keying signals and quadrature amplitude modulations. When the channel is affected by group velocity dispersion (GVD), polarization mode dispersion (PMD), and phase uncertainties due to the laser phase noise, the optimal receiver processing based on maximum-likelihood sequence detection and its practical implementation through a Viterbi processor is described without a specific constraint on the receiver front end. The implementation issues are then faced, showing that at least a couple of widely known front ends, with proper modifications, can be used to extract the required sufficient statistics from the received signal. The aspects related to the receiver adaptivity, the complexity reduction of the Viterbi processor, and the possibility of employing polarization diversity at the transmitter end are also discussed. It is demonstrated that, as long as a sufficient number of Viterbi processor trellis states is employed, GVD and PMD entail no performance degradation with respect to the case of no channel distortions (the back-to-back case).
Keywords :
Viterbi detection; maximum likelihood detection; maximum likelihood sequence estimation; optical fibre dispersion; optical fibre polarisation; optical receivers; optical transmitters; GVD; MLSD receivers; PMD; Viterbi processor; group velocity dispersion; high-order modulations; laser phase noise; maximum-likelihood sequence detection; multilevel optical systems; optical transmission systems; optimal receiver processing; phase uncertainties; polarization diversity; polarization mode dispersion; receiver adaptivity; transmitter end; trellis states; Optical distortion; Optical modulation; Optical noise; Optical receivers; Optical transmitters; Phase modulation; Polarization mode dispersion; Quadrature amplitude modulation; Signal analysis; Viterbi algorithm; Differential encoding; Viterbi algorithm (VA); electrical equalization; group velocity dispersion (GVD); intersymbol interference (ISI); maximum-likelihood sequence detection (MLSD); optical transmission systems; phase-shift keying (PSK); polarization mode dispersion (PMD); quadrature amplitude modulation (QAM);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2008.917052