DocumentCode :
149374
Title :
Applications of expectation maximization algorithm for coherent optical communication
Author :
Zibar, D. ; Winther, Ole ; Borkowski, Robert ; Monroy, I.T. ; Carvalho, Luis ; Oliveira, Juliano
Author_Institution :
DTU Fotonik/Comput., Tech. Univ. of Denmark, Lyngby, Denmark
fYear :
2014
fDate :
1-5 Sept. 2014
Firstpage :
1890
Lastpage :
1894
Abstract :
In this invited paper, we present powerful statistical signal processing methods, used by machine learning community, and link them to current problems in optical communication. In particular, we will look into iterative maximum likelihood parameter estimation based on expectation maximization algorithm and its application in coherent optical communication systems for linear and nonlinear impairment mitigation. Furthermore, the estimated parameters are used to build the probabilistic model of the system for the synthetic impairment generation. It is shown numerically and experimentally that iterative parameter estimation based on expectation maximization algorithm is a powerful tool in combating system impairments such as non-linear phase noise, inphase and quadrature (I/Q) modulator imperfections and laser linewidth. We show experimentally that for a dispersion managed polarization multiplexed 16-quadrature amplitude modulation (QAM) system at 14 Gbaud a gain in the nonlinear system tolerance of up to 3 dB can be obtained. For, a dispersion unmanaged system this gain reduces to 0.5 dB. Moreover, we show that joint estimation of carrier frequency, phase, signal means and noise covariance, can be performed iteratively by employing expectation maximization. Using experimental data we show that joint carrier synchronization and detection offers an improvement of 0.5 dB in terms of input power compared to hard decision digital phaselocked loop (PLL) based carrier synchronization and demodulation.
Keywords :
expectation-maximisation algorithm; maximum likelihood estimation; modulators; optical communication; phase locked loops; quadrature amplitude modulation; signal processing; synchronisation; 16-quadrature amplitude modulation system; I-Q modulator; PLL based carrier synchronization; PLL based demodulation; carrier frequency estimation; coherent optical communication; digital phase-locked loop; dispersion managed polarization multiplexed QAM system; expectation maximization algorithm; inphase and quadrature modulator imperfections; iterative maximum likelihood parameter estimation; joint carrier detection; joint carrier synchronization; laser linewidth; linear impairment mitigation; machine learning; noise covariance; nonlinear impairment mitigation; nonlinear phase noise; phase signal means estimation; probabilistic model; statistical signal processing method; synthetic impairment generation; Abstracts; Communities; Optical modulation; Optical polarization; Optical sensors; expectation maximization; machine learning; nonlinear impairments; optical communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Conference (EUSIPCO), 2014 Proceedings of the 22nd European
Conference_Location :
Lisbon
Type :
conf
Filename :
6952698
Link To Document :
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