DocumentCode
1520568
Title
From network design to dynamic provisioning and restoration in optical cross-connect mesh networks: an architectural and algorithmic overview
Author
Sengupta, Sudipta ; Ramamurthy, Ramu
Volume
15
Issue
4
fYear
2001
Firstpage
46
Lastpage
54
Abstract
This article presents a broad overview of the architectural and algorithmic aspects involved in deploying an optical cross-connect mesh network, starting from the network design and capacity planning phase to the real-time network operation phase involving dynamic provisioning and restoration of lightpaths and online algorithms for route computation. Frameworks for offline design and capacity planning of optical networks based on projected future lightpath demands are discussed. The essential components of an IP-centric control architecture for dynamic provisioning and restoration of lightpaths in optical networks are outlined. These include neighbor discovery, topology discovery, route computation, lightpath establishment, and lightpath restoration. Online algorithms for route computation of unprotected, 1+1 protected and mesh-restored lightpaths are discussed in both the centralized and distributed scenarios
Keywords
Internet; network topology; optical fibre networks; telecommunication network planning; telecommunication network routing; 1+1 protected lightpaths; IP-centric control architecture; capacity planning; centralized scenario; distributed scenario; dynamic provisioning; lightpaths; mesh-restored lightpaths; neighbor discovery; network design; online algorithms; optical cross-connect mesh networks; optical networks; real-time network operation; restoration; route computation; topology discovery; unprotected lightpaths; Algorithm design and analysis; Capacity planning; Computer architecture; Computer networks; Lighting control; Mesh networks; Optical computing; Optical control; Optical design; Optical fiber networks;
fLanguage
English
Journal_Title
Network, IEEE
Publisher
ieee
ISSN
0890-8044
Type
jour
DOI
10.1109/65.941836
Filename
941836
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