Optical Waveguide Modelling Based On Scalar Finite Difference Scheme
A Numerical Method Based On Scalar Finite Difference Scheme Was Adopted And Programmed On MATLAB® Platform For Optical Waveguide Modeling Purpose. Comparisons With Other Established Methods In Terms Of Normalized Propagation Constant Were Included To Verify Its Applicability. The Comparison Results...
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my.utm.18122017-11-01T04:17:34Z http://eprints.utm.my/id/eprint/1812/ Optical Waveguide Modelling Based On Scalar Finite Difference Scheme Mohd. Kassim, Norazan Mohammad, Abu Bakar Ibrahim, Mohd. Haniff Q Science (General) A Numerical Method Based On Scalar Finite Difference Scheme Was Adopted And Programmed On MATLAB® Platform For Optical Waveguide Modeling Purpose. Comparisons With Other Established Methods In Terms Of Normalized Propagation Constant Were Included To Verify Its Applicability. The Comparison Results Obtained Were Proven To Have The Same Qualitative Behaviour. Furthermore, The Performances Were Evaluated In Terms Of Computation Complexity, Mesh Size, And Effect Of Acceleration Factor. Computation Complexity Can Be Reduced By Increasing The Mesh Size Which Will Then Produce More Error. The Problem Can Be Rectified By Introducing The Acceleration Factor, Successive Over Relaxation (SOR) Parameter. It Shows That SOR Range Between 1.3 And 1.7 Can Give Shorter Computation Time, While Producing Constant Value Of Simulation Results. Penerbit UTM Press 2005-06 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/1812/1/JTJUN42D4.pdf Mohd. Kassim, Norazan and Mohammad, Abu Bakar and Ibrahim, Mohd. Haniff (2005) Optical Waveguide Modelling Based On Scalar Finite Difference Scheme. Jurnal Teknologi D (42D). pp. 41-54. ISSN 0127-9696 http://www.penerbit.utm.my/cgi-bin/jurnal/artikel.cgi?id=42sirid4 |
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Q Science (General) Mohd. Kassim, Norazan Mohammad, Abu Bakar Ibrahim, Mohd. Haniff Optical Waveguide Modelling Based On Scalar Finite Difference Scheme |
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A Numerical Method Based On Scalar Finite Difference Scheme Was Adopted And Programmed On MATLAB® Platform For Optical Waveguide Modeling Purpose. Comparisons With Other Established Methods In Terms Of Normalized Propagation Constant Were Included To Verify Its Applicability. The Comparison Results Obtained Were Proven To Have The Same Qualitative Behaviour. Furthermore, The Performances Were Evaluated In Terms Of Computation Complexity, Mesh Size, And Effect Of Acceleration Factor. Computation Complexity Can Be Reduced By Increasing The Mesh Size Which Will Then Produce More Error. The Problem Can Be Rectified By Introducing The Acceleration Factor, Successive Over Relaxation (SOR) Parameter. It Shows That SOR Range Between 1.3 And 1.7 Can Give Shorter Computation Time, While Producing Constant Value Of Simulation Results. |
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Article |
author |
Mohd. Kassim, Norazan Mohammad, Abu Bakar Ibrahim, Mohd. Haniff |
author_facet |
Mohd. Kassim, Norazan Mohammad, Abu Bakar Ibrahim, Mohd. Haniff |
author_sort |
Mohd. Kassim, Norazan |
title |
Optical Waveguide Modelling Based On Scalar Finite Difference Scheme
|
title_short |
Optical Waveguide Modelling Based On Scalar Finite Difference Scheme
|
title_full |
Optical Waveguide Modelling Based On Scalar Finite Difference Scheme
|
title_fullStr |
Optical Waveguide Modelling Based On Scalar Finite Difference Scheme
|
title_full_unstemmed |
Optical Waveguide Modelling Based On Scalar Finite Difference Scheme
|
title_sort |
optical waveguide modelling based on scalar finite difference scheme |
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Penerbit UTM Press |
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2005 |
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http://eprints.utm.my/id/eprint/1812/1/JTJUN42D4.pdf http://eprints.utm.my/id/eprint/1812/ http://www.penerbit.utm.my/cgi-bin/jurnal/artikel.cgi?id=42sirid4 |
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