DocumentCode
1413064
Title
Control architecture in optical burst-switched WDM networks
Author
Xiong, Yijun ; Vandenhoute, Marc ; Cankaya, Hakki C.
Author_Institution
Alcatel Corp. Res. Center, Richardson, TX, USA
Volume
18
Issue
10
fYear
2000
Firstpage
1838
Lastpage
1851
Abstract
Optical burst switching (OBS) is a promising solution for building terabit optical routers and realizing IP over WDM. In this paper, we describe the basic concept of OBS and present a general architecture of optical core routers and electronic edge routers in the OBS network. The key design issues related to the OBS are also discussed, namely, burst assembly (burstification), channel scheduling, burst offset-time management, and some dimensioning rules. A nonperiodic time-interval burst assembly mechanism is described. A class of data channel scheduling algorithms with void filling is proposed for optical routers using a fiber delay line buffer. The LAUC-VF (latest available unused channel with void filling) channel scheduling algorithm is studied in detail. Initial results on the burst traffic characteristics and on the performance of optical routers in the OBS network with self-similar traffic as inputs are reported in the paper.
Keywords
Internet; computer network management; optical fibre networks; protocols; scheduling; telecommunication channels; telecommunication control; telecommunication network routing; telecommunication traffic; wavelength division multiplexing; IP; Internet protocol; LAUC-VF; OBS; burst assembly; burst offset-time management; burst traffic characteristics; burstification; channel scheduling; control architecture; data channel scheduling algorithms; design; dimensioning rules; electronic edge routers; fiber delay line buffer; latest available unused channel with void filling; nonperiodic time-interval burst assembly mechanism; optical burst-switched WDM networks; optical core routers; performance; self-similar traffic; terabit optical routers; void filling; Assembly; Buildings; Filling; Optical buffering; Optical burst switching; Optical control; Optical fiber networks; Scheduling algorithm; Telecommunication traffic; WDM networks;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/49.887906
Filename
887906
Link To Document