DocumentCode
1094053
Title
Characterisation of a parallel optical all pass filter for chromatic dispersion equalisation in 10 Gb/s system
Author
Ng, W.P. ; Loedhammacakra, W. ; Ghassemlooy, Z. ; Cryan, R.A.
Author_Institution
Opt. Commun. Res. Group, Northumbria Univ., Newcastle upon Tyne
Volume
2
Issue
1
fYear
2008
fDate
2/1/2008 12:00:00 AM
Firstpage
112
Lastpage
118
Abstract
The chromatic dispersion (CD) that occurs in single mode fibres (SMFs) is an important issue that needs to be addressed in long-haul optical communication links. The effect of CD is pulse spreading which in turn leads to inter-symbol interference, thus resulting in the deterioration of the bit error rate (BER) performance of the system. An alternative CD compensation technique that utilises a parallel optical all pass filter (p-OAPF) is presented, where the p-OAPF design is based on the inverse phase response of the SMF. The p-OAPF is based on a class of all-pass filter. Simulation results of the proposed technique show an increase in the repeater-less length of a point-to-point optical communication system by up to three and four times using a non-return-to-zero data format with a rectangular and Gaussian pulse shape, respectively, at error-free condition (BER < 10~ ). The results also show that the p-OAPF is robust in performing dispersion equalisation at a wide range of SMF lengths to attain error-free communication.
Keywords
Gaussian processes; all-pass filters; error statistics; intersymbol interference; optical fibre communication; optical fibre dispersion; optical fibre filters; optical pulse shaping; optical repeaters; Gaussian pulse shape; bit error rate; chromatic dispersion equalisation; intersymbol interference; inverse phase response; long-haul optical communication links; parallel optical all pass filter; point-to-point optical communication system; pulse spreading; single mode fibre;
fLanguage
English
Journal_Title
Circuits, Devices & Systems, IET
Publisher
iet
ISSN
1751-858X
Type
jour
DOI
10.1049/iet-cds:20070238
Filename
4464149
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