A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks

Parallel Optical Burst Switching (POBS) is a variant of Optical Burst Switching (OBS) which is proposed as a new optical switching strategy for Ultra-Dense Wavelength Division Multiplexing (U-DWDM) to support the enormous bandwidth demand of the next generation Internet. As opposed to OBS, POBS tran...

Full description

Saved in:
Bibliographic Details
Main Authors: Zaiter M.J., Yussof S., Abdelouhahab A., Cheah C.L., Salih A.I.
Other Authors: 55639362100
Format: Article
Published: Maxwell Science Publications 2023
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.uniten.dspace-22080
record_format dspace
spelling my.uniten.dspace-220802023-05-16T10:47:13Z A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks Zaiter M.J. Yussof S. Abdelouhahab A. Cheah C.L. Salih A.I. 55639362100 16023225600 16021141200 55665135600 56275651700 Parallel Optical Burst Switching (POBS) is a variant of Optical Burst Switching (OBS) which is proposed as a new optical switching strategy for Ultra-Dense Wavelength Division Multiplexing (U-DWDM) to support the enormous bandwidth demand of the next generation Internet. As opposed to OBS, POBS transmits bursts in two dimensions: the wavelength dimension and the time dimension. POBS network uses an one-way resource reservation mechanism to set up the resources for each data burst transmission. The use of this mechanism may cause bursts to contend for the same resources at the same time at core (intermediate) nodes of the network. Therefore, the performance of POBS networks depends on the contention resolution policies to reach acceptable levels for bandwidth usage. These policies may increase both the cost and complexities of the core nodes in POBS networks. Most literatures on OBS networks apply contention resolution at the core nodes based on reactive strategies that are activated after contention takes place in core nodes. This study proposes the use of a proactive contention resolution technique at ingress nodes of POBS network as well as reactive contention resolution technique at core nodes for reducing the probability of burst drop in the network in order to increase the performance of the network. The simulation results show that the use of POBS network with the proposed Reactive Odd/Even Node ID Wavelength Assignment Technique (POBS-ROENIDWAT) shows a better performance in terms of reduced data loss rate and increased throughput compared to the performances of both POBS network with Sequential Wavelength Assignment Technique (POBS-SWAT) and OBS network with Burst Segmentation (OBS-BS). © Maxwell Scientific Organization, 2014. Final 2023-05-16T02:47:13Z 2023-05-16T02:47:13Z 2014 Article 10.19026/rjaset.7.835 2-s2.0-84904440408 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84904440408&doi=10.19026%2frjaset.7.835&partnerID=40&md5=c49020d7295361aa48a291e55ff2de5d https://irepository.uniten.edu.my/handle/123456789/22080 7 21 4565 4573 All Open Access, Hybrid Gold, Green Maxwell Science Publications Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Parallel Optical Burst Switching (POBS) is a variant of Optical Burst Switching (OBS) which is proposed as a new optical switching strategy for Ultra-Dense Wavelength Division Multiplexing (U-DWDM) to support the enormous bandwidth demand of the next generation Internet. As opposed to OBS, POBS transmits bursts in two dimensions: the wavelength dimension and the time dimension. POBS network uses an one-way resource reservation mechanism to set up the resources for each data burst transmission. The use of this mechanism may cause bursts to contend for the same resources at the same time at core (intermediate) nodes of the network. Therefore, the performance of POBS networks depends on the contention resolution policies to reach acceptable levels for bandwidth usage. These policies may increase both the cost and complexities of the core nodes in POBS networks. Most literatures on OBS networks apply contention resolution at the core nodes based on reactive strategies that are activated after contention takes place in core nodes. This study proposes the use of a proactive contention resolution technique at ingress nodes of POBS network as well as reactive contention resolution technique at core nodes for reducing the probability of burst drop in the network in order to increase the performance of the network. The simulation results show that the use of POBS network with the proposed Reactive Odd/Even Node ID Wavelength Assignment Technique (POBS-ROENIDWAT) shows a better performance in terms of reduced data loss rate and increased throughput compared to the performances of both POBS network with Sequential Wavelength Assignment Technique (POBS-SWAT) and OBS network with Burst Segmentation (OBS-BS). © Maxwell Scientific Organization, 2014.
author2 55639362100
author_facet 55639362100
Zaiter M.J.
Yussof S.
Abdelouhahab A.
Cheah C.L.
Salih A.I.
format Article
author Zaiter M.J.
Yussof S.
Abdelouhahab A.
Cheah C.L.
Salih A.I.
spellingShingle Zaiter M.J.
Yussof S.
Abdelouhahab A.
Cheah C.L.
Salih A.I.
A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks
author_sort Zaiter M.J.
title A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks
title_short A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks
title_full A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks
title_fullStr A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks
title_full_unstemmed A novel mechanism for contention resolution in Parallel Optical Burst Switching (POBS) networks
title_sort novel mechanism for contention resolution in parallel optical burst switching (pobs) networks
publisher Maxwell Science Publications
publishDate 2023
_version_ 1806426355896680448
score 13.19449