DocumentCode
3484015
Title
Optimizing light-trail assignment to WDM networks for dynamic IP centric traffic
Author
Gumaste, Ashwin ; Kuper, Gabriel ; Chlamtac, Imrich
fYear
2004
fDate
25-28 April 2004
Firstpage
113
Lastpage
118
Abstract
The rapid growth of IP centric communication in worldwide networks and the parallel mass deployment of fiber based WDM networks have propelled IP over WDM being considered as an eventual solution for bandwidth on demand to customers. Contemporary optical networks are, however, based on lightpath communication and a lightpath represents end-to-end optical circuits from source to destination. Light-trails are a generalization of lightpaths, such that multiple nodes along a trail can participate in time differentiated communication over the same established trail. Managing and setting up of light-trails in order to cater to IP centric traffic is a key to the success of IP centric communication at the optical layer. A light-trail represents an open optical path that allows multiple users to communicate without the need for switch reconfiguration at any user node, the light-trail itself being static. IP communication on the other hand represents a bursty traffic flow often characterized by spurts or bursts of data. The goal of this paper is to show how to create efficient light-trails based virtual topology for a given network traffic flow. We first describe a tree-shaped variant of light-trail, called the clustered light-trail (CLT) and then present optimization techniques for satisfying the given IP centric communication requirements, using the light-trails framework that is very flexible, despite being basically a static mechanism.
Keywords
IP networks; network topology; optical fibre networks; optimisation; telecommunication traffic; wavelength division multiplexing; IP centric communication; WDM networks; bursty traffic flow; clustered light-trail; dynamic IP centric traffic; end-to-end optical circuits; fiber based WDM networks; light-trail assignment; lightpath communication; mesh network design; optimization techniques; virtual topology; Bandwidth; Circuits; Communication switching; Optical fiber communication; Optical fiber networks; Optical switches; Propulsion; Telecommunication traffic; WDM networks; Wavelength division multiplexing;
fLanguage
English
Publisher
ieee
Conference_Titel
Local and Metropolitan Area Networks, 2004. LANMAN 2004. The 13th IEEE Workshop on
Print_ISBN
0-7803-8551-9
Type
conf
DOI
10.1109/LANMAN.2004.1338414
Filename
1338414
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