Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.

Amathematical procedure for optimization depends on the evolutionaryalgorithm has been proposed to estimate the optimum design of single mode optical fiber upon finding the core and cladding material and core radius. The results of the optimum design achieved minimum total dispersion and minimum dis...

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Main Authors: Alaa Hussain, Ali H. Al-Hamdani, Muhammed A. Hussain
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2010-07-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_33509_5a589486e56c6a18ac5d6a2ade4b1c29.pdf
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author Alaa Hussain
Ali H. Al-Hamdani
Muhammed A. Hussain
author_facet Alaa Hussain
Ali H. Al-Hamdani
Muhammed A. Hussain
author_sort Alaa Hussain
collection DOAJ
description Amathematical procedure for optimization depends on the evolutionaryalgorithm has been proposed to estimate the optimum design of single mode optical fiber upon finding the core and cladding material and core radius. The results of the optimum design achieved minimum total dispersion and minimum dispersion slope. The operating wavelengths are chosen in the range (1500-1600) nm. The optimization using evolutionary algorithm can explore all the possible solutions and then choosing the best solution that has maximum merit function
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spelling doaj.art-cf32c6b1773a4cafb3a3b3816925e9632024-02-04T17:46:01ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582010-07-0128144806481510.30684/etj.28.14.933509Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.Alaa HussainAli H. Al-HamdaniMuhammed A. HussainAmathematical procedure for optimization depends on the evolutionaryalgorithm has been proposed to estimate the optimum design of single mode optical fiber upon finding the core and cladding material and core radius. The results of the optimum design achieved minimum total dispersion and minimum dispersion slope. The operating wavelengths are chosen in the range (1500-1600) nm. The optimization using evolutionary algorithm can explore all the possible solutions and then choosing the best solution that has maximum merit functionhttps://etj.uotechnology.edu.iq/article_33509_5a589486e56c6a18ac5d6a2ade4b1c29.pdfoptical fiberlow dispersion optical fiber
spellingShingle Alaa Hussain
Ali H. Al-Hamdani
Muhammed A. Hussain
Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.
Engineering and Technology Journal
optical fiber
low dispersion optical fiber
title Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.
title_full Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.
title_fullStr Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.
title_full_unstemmed Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.
title_short Two Layer Optimum Design of Low Dispersion Optical Fiber (1500-1600 nm) Using Evolutionary Synthesis.
title_sort two layer optimum design of low dispersion optical fiber 1500 1600 nm using evolutionary synthesis
topic optical fiber
low dispersion optical fiber
url https://etj.uotechnology.edu.iq/article_33509_5a589486e56c6a18ac5d6a2ade4b1c29.pdf
work_keys_str_mv AT alaahussain twolayeroptimumdesignoflowdispersionopticalfiber15001600nmusingevolutionarysynthesis
AT alihalhamdani twolayeroptimumdesignoflowdispersionopticalfiber15001600nmusingevolutionarysynthesis
AT muhammedahussain twolayeroptimumdesignoflowdispersionopticalfiber15001600nmusingevolutionarysynthesis