DocumentCode
1597974
Title
Signalling over nonlinear fibre-optic channels by utilizing both solitonic and radiative spectra
Author
Tavakkolnia, Iman ; Safari, Majid
Author_Institution
Inst. for Digital Commun., Univ. of Edinburgh, Edinburgh, UK
fYear
2015
Firstpage
103
Lastpage
107
Abstract
Using the inverse scattering method known for solving partial differential equations such as nonlinear Schrödinger equation, we analyse a fibre optic communication system which maps data on both discrete and continuous spectra defined by nonlinear Fourier transform. By signalling over both spectra, the degrees of freedom of the channel can be exploited to potentially increase the achievable data-rate in an attempt to approach the capacity of the optical fiber. Considering such a system, our results demonstrate the signal-dependency of the noise mapped to the nonlinear frequency domain. The temporal broadening factor is also studied for different pulse shapes and pulse sequence lengths modulated over the continuous spectrum. Finally, the error rate performance of the communication system signalling over both discrete and continuous spectra is presented.
Keywords
Fourier transforms; Schrodinger equation; optical fibre networks; partial differential equations; continuous spectrum; error rate performance; fibre optic communication system; inverse scattering method; nonlinear Fourier transform; nonlinear Schrödinger equation; nonlinear fibre optic channels; nonlinear frequency domain; partial differential equations; pulse sequence lengths; radiative spectra; signal-dependency; solitonic spectra; Adaptive optics; Eigenvalues and eigenfunctions; Fourier transforms; Noise; Nonlinear optics; Optical noise; Optical solitons;
fLanguage
English
Publisher
ieee
Conference_Titel
Networks and Communications (EuCNC), 2015 European Conference on
Conference_Location
Paris
Type
conf
DOI
10.1109/EuCNC.2015.7194049
Filename
7194049
Link To Document