Title :
Lightpath- and Light-Tree-Based Groupcast Routing and Wavelength Assignment in Mesh Optical Networks
Author :
Rahman, Tanvir ; Ellinas, Georgios ; Ali, Mohamed
Author_Institution :
Network Strategy & Product Archit., T-Mobile, Bellevue, WA, USA
fDate :
7/1/2009 12:00:00 AM
Abstract :
With wide deployment of optical transport networks and the emergence of bandwidth-intensive applications, the idea of multicasts and groupcasts in optical networks stems from the ability to set up optical point-to-multipoint (multicast) and multipoint-to-multipoint (groupcast) sessions in wavelength-routed networks. As the technology for intelligent optical networks grows, optical groupcast applications (such as grid computing, distributed interactive simulations, multimedia-rich interactive services, virtual private network services, personal-customized content authoring services, and Ethernet LAN services) will become widely popular. In this paper we introduce the concept of groupcast routing and wavelength assignment (GC-RWA) and evaluate the performance of GC-RWA for light-forests corresponding to the groupcast sessions, when these light-forests are composed of lightpaths and light-trees.
Keywords :
bandwidth allocation; intelligent networks; multicast communication; optical fibre networks; telecommunication network routing; telecommunication network topology; trees (mathematics); wavelength assignment; wavelength division multiplexing; Ethernet LAN service; GC-RWA; bandwidth-intensive application; distributed interactive simulation; grid computing; intelligent optical network; light-tree-based groupcast routing; lightpath-based groupcast routing; mesh optical wavelength-routed transport network; multicast routing; multimedia-rich interactive service; optical multipoint-to-multipoint session; optical point-to-multipoint session; personal-customized content authoring service; virtual private network service; wavelength assignment; wavelength-division multiplexing; Computational modeling; Distributed computing; Ethernet networks; Grid computing; Intelligent networks; Optical fiber networks; Optimized production technology; Virtual private networks; Wavelength assignment; Wavelength routing; Fiber optics and optical communications; Networks, multicast; Wavelength assignment; Wavelength routing;
Journal_Title :
Optical Communications and Networking, IEEE/OSA Journal of
DOI :
10.1364/JOCN.1.000A44