Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks

Multistage Interconnection Networks (MINs) have been used in telecommunication networks for many years. Significant advancement in the optical technology have drawn the idea of optical implementation of MINs as an important optical switching topology to meet the ever increasing demands of high perfo...

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Main Author: Raja Mohd Auzar, Tengku Dian Shahida
Format: Thesis
Language:English
English
Published: 2009
Online Access:http://psasir.upm.edu.my/id/eprint/7137/1/FSKTM_2009_2a.pdf
http://psasir.upm.edu.my/id/eprint/7137/
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spelling my.upm.eprints.71372013-05-27T07:33:38Z http://psasir.upm.edu.my/id/eprint/7137/ Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks Raja Mohd Auzar, Tengku Dian Shahida Multistage Interconnection Networks (MINs) have been used in telecommunication networks for many years. Significant advancement in the optical technology have drawn the idea of optical implementation of MINs as an important optical switching topology to meet the ever increasing demands of high performance computing communication applications for high channel bandwidth and low communication latency. However, dealing with electro-optic switches instead of electronic switches held its own challenges introduced by optics itself. Limited by the properties of optical signals, optical MINs (OMINs) introduce optical crosstalk, as a result of coupling two signals within each switching element. Therefore, it is not possible to route more than one message simultaneously, without optical crosstalk, over a switching element in an OMIN. Reducing the effect of optical crosstalk has been a challenging issue considering trade-offs between performance and hardware and software complexity. To solve optical crosstalk, many scheduling algorithms have been proposed for routing in OMIN based on a solution called the time domain approach, which divides the N optical inputs into several groups such that crosstalk-free connections can be established. It is the objective of the research presented in this thesis to propose a solution that can further optimize and improve the performance of message scheduling for routing in the optical Omega network. Based on Zero algorithms, a Modified Zero algorithm is developed to achieve a crosstalk-free version of the algorithm. Then, the Fast Zero (FastZ) algorithm is proposed, which uses a new concept called the symmetric Conflict Matrix (sCM) as a pre-scheduling technique. Extended from the FastZ algorithms, another three new algorithms called the FastRLP, BRLP and FastBRLP algorithms are developed to achieve different performance goals. Lastly, a comparison is made through simulation between all algorithms developed in this research with previous Zero-based algorithms as well as traditional Heuristic algorithms since equal routing results can be obtained between all algorithms. Through simulation technique, all three FastZ, BRLP and FastBRLP algorithms have shown the best results when the average execution time is considered. The FastRLP and FastBRLP algorithms on the other hand have shown the best results when the average number of passes is considered. It is proven in this thesis that the new approach has by far achieved the best performance among all the algorithms being tested in this research 2009-04 Thesis NonPeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/7137/1/FSKTM_2009_2a.pdf Raja Mohd Auzar, Tengku Dian Shahida (2009) Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks. Masters thesis, Universiti Putra Malaysia. English
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
English
description Multistage Interconnection Networks (MINs) have been used in telecommunication networks for many years. Significant advancement in the optical technology have drawn the idea of optical implementation of MINs as an important optical switching topology to meet the ever increasing demands of high performance computing communication applications for high channel bandwidth and low communication latency. However, dealing with electro-optic switches instead of electronic switches held its own challenges introduced by optics itself. Limited by the properties of optical signals, optical MINs (OMINs) introduce optical crosstalk, as a result of coupling two signals within each switching element. Therefore, it is not possible to route more than one message simultaneously, without optical crosstalk, over a switching element in an OMIN. Reducing the effect of optical crosstalk has been a challenging issue considering trade-offs between performance and hardware and software complexity. To solve optical crosstalk, many scheduling algorithms have been proposed for routing in OMIN based on a solution called the time domain approach, which divides the N optical inputs into several groups such that crosstalk-free connections can be established. It is the objective of the research presented in this thesis to propose a solution that can further optimize and improve the performance of message scheduling for routing in the optical Omega network. Based on Zero algorithms, a Modified Zero algorithm is developed to achieve a crosstalk-free version of the algorithm. Then, the Fast Zero (FastZ) algorithm is proposed, which uses a new concept called the symmetric Conflict Matrix (sCM) as a pre-scheduling technique. Extended from the FastZ algorithms, another three new algorithms called the FastRLP, BRLP and FastBRLP algorithms are developed to achieve different performance goals. Lastly, a comparison is made through simulation between all algorithms developed in this research with previous Zero-based algorithms as well as traditional Heuristic algorithms since equal routing results can be obtained between all algorithms. Through simulation technique, all three FastZ, BRLP and FastBRLP algorithms have shown the best results when the average execution time is considered. The FastRLP and FastBRLP algorithms on the other hand have shown the best results when the average number of passes is considered. It is proven in this thesis that the new approach has by far achieved the best performance among all the algorithms being tested in this research
format Thesis
author Raja Mohd Auzar, Tengku Dian Shahida
spellingShingle Raja Mohd Auzar, Tengku Dian Shahida
Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks
author_facet Raja Mohd Auzar, Tengku Dian Shahida
author_sort Raja Mohd Auzar, Tengku Dian Shahida
title Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks
title_short Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks
title_full Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks
title_fullStr Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks
title_full_unstemmed Crosstalk-Free Scheduling Algorithms for Routing in Optical Multistage Interconnection Networks
title_sort crosstalk-free scheduling algorithms for routing in optical multistage interconnection networks
publishDate 2009
url http://psasir.upm.edu.my/id/eprint/7137/1/FSKTM_2009_2a.pdf
http://psasir.upm.edu.my/id/eprint/7137/
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score 13.18916