DocumentCode
1059176
Title
Reduction of Parametric Amplified Noise in Nonlinear Fiber Channels by Use of Wiener Filtering
Author
Xiao Qiong Qi ; Xiao Ping Zhang ; Qun Feng Shao
Author_Institution
Sch. of Inf. Sci. & Eng., Lanzhou Univ., Lanzhou
Volume
26
Issue
18
fYear
2008
Firstpage
3210
Lastpage
3215
Abstract
As a parametric amplified noise, nonlinear phase noise limits the channel capacity in multispan fiber-optics transmissions. In this paper, the reduction of nonlinear phase noise by use of Wiener filtering is studied. Extracting signal from time-domain concepts, parametric amplified noise covering signal spectrum in frequency domain can be suppressed considerably. Timing jitter and ghost pulses due to intrachannel nonlinearities can also be compensated. Nonparametric Wiener filtering is used at the end of six configurations of dispersion compensation (DC) transmission lines: pre- and postlumped DC, distributed DC without optical phase conjugation (OPC), dispersion inversion (DI) about midlink OPC with, respectively, one-for-multispan, single type span and alternate type span on each side of OPC. It is found that single-DI and alternate-DI schemes have higher input power capacity than one-for-multi-DI scheme. Further reductions in the nonlinear phase noise accumulation for all these DC maps are obtained with Wiener filtering, and higher absolute dispersion can decrease signal fluctuation due to nonlinear phase noise, as well.
Keywords
Wiener filters; optical fibre dispersion; optical fibre networks; optical information processing; phase noise; timing jitter; alternate type span; dispersion compensation transmission lines; dispersion inversion; ghost pulses; intrachannel nonlinearities; multispan fiber optics transmissions; nonlinear fiber channels; nonlinear phase noise; nonparametric Wiener filtering; one-for-multispan; parametric amplified noise reduction; single type span; time-domain concepts; timing jitter; Channel capacity; Frequency domain analysis; Noise reduction; Optical noise; Optical pulses; Phase noise; Pulse amplifiers; Time domain analysis; Timing jitter; Wiener filter; Fiber nonlinearities; Wiener filtering; nonlinear phase noise; parametric amplified noise;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.2008.928913
Filename
4738520
Link To Document