DocumentCode :
1756279
Title :
Pilot-Aided Channel Equalization in RGI-PDM-CO-OFDM Systems
Author :
Xiang Li ; Wen-De Zhong ; Alphones, Arokiaswami ; Changyuan Yu
Author_Institution :
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Volume :
25
Issue :
19
fYear :
2013
fDate :
Oct.1, 2013
Firstpage :
1924
Lastpage :
1927
Abstract :
A pilot-aided channel equalizer (PACE) is proposed to mitigate the impairments caused by the polarization mode dispersion and laser phase noise simultaneously in reduced-guard-interval polarization-division-multiplexing coherent-optical orthogonal-frequency-division-multiplexing (RGI-PDM-CO-OFDM) transmission systems. Since PACE updates the channel state information symbol-by-symbol, it enables us to track the drifts in the optical channel. Adaptive PACE (APACE) and boosted PACE (BPACE) are then proposed to further improve the performance of PACE. Numerical simulations are carried out to compare the performance of APACE and BPACE with a conventional training symbols aided channel equalizer (TSACE) and adaptive decision-direct channel equalizer for a 108-Gb/s (56-GS/s) RGI-PDM-CO-OFDM system. It is revealed that both APACE and BPACE offer superior performances over the other two equalizers in the presence of laser phase noise, and they can tolerate lasers with a line width around β = 2000 k ( 2πβTs = 2.24 × 10 when it is normalized to the symbol rate 1/Ts). We also show that only small additional computation efforts are required for APACE and BPACE when compared with TSACE.
Keywords :
OFDM modulation; adaptive equalisers; laser noise; multiplexing; phase noise; RGI-PDM-CO-OFDM systems; TSACE; adaptive decision-direct channel equalizer; bit rate 108 Gbit/s; boosted PACE; channel state information; coherent-optical orthogonal frequency division multiplexing; laser phase noise; polarization division multiplexing; polarization mode dispersion; reduced-guard-interval; training symbols aided channel equalizer; Bit error rate; Channel estimation; Complexity theory; Equalizers; Laser noise; OFDM; Phase noise; Orthogonal frequency division multiplexing; pilot-aided channel equalizer; polarization division multiplexing;
fLanguage :
English
Journal_Title :
Photonics Technology Letters, IEEE
Publisher :
ieee
ISSN :
1041-1135
Type :
jour
DOI :
10.1109/LPT.2013.2278994
Filename :
6583341
Link To Document :
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