Title :
Scalable shared-risk group management in shared mesh restorable wavelength routed networks
Author :
Shiomoto, Kohei ; Imajuku, Wataru ; Oki, Eiji ; Okamoto, Satoru ; Yamanaka, Naoaki
Author_Institution :
NTT Network Innovation Labs., NTT Corp., Tokyo, Japan
Abstract :
The paper proposes a scaleable SRG-based restoration method in shared mesh wavelength-routed networks. We introduce a backup-SRG concept to identify which SRG is backed up by individual links. We have developed an admission control method for the backup path using the backup-SRG concept to achieve 100% recovery performance. The proposed method is extended to support networks with a large number of SRGs by introducing a hierarchical SRG assignment technique. Through computer simulation on the NSF network model, we confirmed that the proposed method achieves 100% recovery performance assuming a single link failure at the expense of 28.6% extra wavelength resource compared to the non-backup method. The proposed method requires less than 56.3% wavelength resource than that of the protection scheme while keeping 100% recovery performance. The hierarchical SRG assignment technique reduces the number of backup-SRGs to be used in admission control at each node at the expense of very little throughput degradation.
Keywords :
optical fibre networks; telecommunication congestion control; telecommunication network reliability; telecommunication network routing; admission control; backup path; recovery performance; restorable networks; scalable shared-risk group management; shared mesh networks; throughput; wavelength resource; wavelength routed networks; Admission control; Computer simulation; Degradation; Intelligent networks; Laboratories; Protection; Signal restoration; Technological innovation; Throughput; Wavelength routing;
Conference_Titel :
High Performance Switching and Routing, 2003, HPSR. Workshop on
Print_ISBN :
0-7803-7710-9
DOI :
10.1109/HPSR.2003.1226703