EN
IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM
Abstract
The central objective of this work is to suggest and develop one simple, unified method for communication over optical fiber networks, valid for all values of dispersion and nonlinearity parameters, and for a single-user channel or a multiple-user network. The method is based on the nonlinear Fourier transform (NFT), a powerful tool in soliton theory and exactly solvable models for solving integral partial differential equations governing wave propagation in certain nonlinear media. The NFT related signal degrees of freedom in such models, in much the same way that the Fourier transform does for linear systems. In this thesis, this observation is exploited for data transmission over integral channels such as optical fibers, where pulse propagation is governed by the nonlinear Schödinger (NLS) equation. In this transmission scheme, which can be viewed as a nonlinear analogue of orthogonal frequency-division multiplexing commonly used in linear channels, information is encoded in the nonlinear spectrum of the signal. Just as the (ordinary) Fourier transform converts a linear convolutional channel into a number of parallel scalar channels, the nonlinear Fourier transform converts a nonlinear dispersive channel described by a lax convolution into a number of parallel scalar channels. Since, in the spectral coordinates the NLS equation is multiplicative, users of a network can operate in independent nonlinear frequency bands with no deterministic inter-channel interference.
Keywords
References
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Details
Primary Language
English
Subjects
Communication and Media Studies
Journal Section
Research Article
Publication Date
December 31, 2024
Submission Date
January 18, 2021
Acceptance Date
March 14, 2024
Published in Issue
Year 2024 Volume: 8 Number: 2
APA
Alı, Q. M., & Uçan, O. N. (2024). IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM. AURUM Journal of Engineering Systems and Architecture, 8(2), 190-205. https://doi.org/10.53600/ajesa.863296
AMA
1.Alı QM, Uçan ON. IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM. A-JESA. 2024;8(2):190-205. doi:10.53600/ajesa.863296
Chicago
Alı, Qusay Muaad, and Osman Nuri Uçan. 2024. “IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM”. AURUM Journal of Engineering Systems and Architecture 8 (2): 190-205. https://doi.org/10.53600/ajesa.863296.
EndNote
Alı QM, Uçan ON (December 1, 2024) IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM. AURUM Journal of Engineering Systems and Architecture 8 2 190–205.
IEEE
[1]Q. M. Alı and O. N. Uçan, “IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM”, A-JESA, vol. 8, no. 2, pp. 190–205, Dec. 2024, doi: 10.53600/ajesa.863296.
ISNAD
Alı, Qusay Muaad - Uçan, Osman Nuri. “IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM”. AURUM Journal of Engineering Systems and Architecture 8/2 (December 1, 2024): 190-205. https://doi.org/10.53600/ajesa.863296.
JAMA
1.Alı QM, Uçan ON. IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM. A-JESA. 2024;8:190–205.
MLA
Alı, Qusay Muaad, and Osman Nuri Uçan. “IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM”. AURUM Journal of Engineering Systems and Architecture, vol. 8, no. 2, Dec. 2024, pp. 190-05, doi:10.53600/ajesa.863296.
Vancouver
1.Qusay Muaad Alı, Osman Nuri Uçan. IMPROVING THE LIMITATIONS IN THE CAPACITY OF FIBER OPTICS USING MODIFIED NONLINEAR FOURIER TRANSFORM. A-JESA. 2024 Dec. 1;8(2):190-205. doi:10.53600/ajesa.863296