Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing

Optical node performance analysis in terms of number of wavelength converters for a multihop optical ShuffleNet under deflection routing is presented. From the computed results for a given number of wavelengths, it is found that in order to achieve the minimum deflection probability at full load, th...

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Main Authors: Castanon, Gerardo, Low, Andy L. Y., Chien, Su Fong, Koa, Chong Gee, Bonon, Alberto
Format: Article
Published: Optica Publishing Group 2005
Subjects:
Online Access:http://shdl.mmu.edu.my/2346/
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author Castanon, Gerardo
Low, Andy L. Y.
Chien, Su Fong
Koa, Chong Gee
Bonon, Alberto
author_facet Castanon, Gerardo
Low, Andy L. Y.
Chien, Su Fong
Koa, Chong Gee
Bonon, Alberto
author_sort Castanon, Gerardo
building MMU Institutional Repository
collection Online Access
description Optical node performance analysis in terms of number of wavelength converters for a multihop optical ShuffleNet under deflection routing is presented. From the computed results for a given number of wavelengths, it is found that in order to achieve the minimum deflection probability at full load, the number of wavelength converters required is at most 60% of the number of wavelengths. Any additional wavelength converters would not be necessary in reducing the overall deflection probability. These upper-bound findings are indeed helpful for network engineers designing a cost-effective network node. (c) 2004 Optical Society of America.
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publishDate 2005
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spelling mmu-23462022-12-21T09:13:19Z http://shdl.mmu.edu.my/2346/ Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing Castanon, Gerardo Low, Andy L. Y. Chien, Su Fong Koa, Chong Gee Bonon, Alberto QA75.5-76.95 Electronic computers. Computer science Optical node performance analysis in terms of number of wavelength converters for a multihop optical ShuffleNet under deflection routing is presented. From the computed results for a given number of wavelengths, it is found that in order to achieve the minimum deflection probability at full load, the number of wavelength converters required is at most 60% of the number of wavelengths. Any additional wavelength converters would not be necessary in reducing the overall deflection probability. These upper-bound findings are indeed helpful for network engineers designing a cost-effective network node. (c) 2004 Optical Society of America. Optica Publishing Group 2005-01 Article NonPeerReviewed Castanon, Gerardo and Low, Andy L. Y. and Chien, Su Fong and Koa, Chong Gee and Bonon, Alberto (2005) Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing. Journal of Optical Networking, 4 (1). pp. 28-37. ISSN 1536-5379 https://opg.optica.org/jocn/abstract.cfm?uri=jon-4-1-28
spellingShingle QA75.5-76.95 Electronic computers. Computer science
Castanon, Gerardo
Low, Andy L. Y.
Chien, Su Fong
Koa, Chong Gee
Bonon, Alberto
Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing
title Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing
title_full Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing
title_fullStr Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing
title_full_unstemmed Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing
title_short Analysis of ShuffleNets with limited number of wavelength converters employing deflection routing
title_sort analysis of shufflenets with limited number of wavelength converters employing deflection routing
topic QA75.5-76.95 Electronic computers. Computer science
url http://shdl.mmu.edu.my/2346/
http://shdl.mmu.edu.my/2346/