DocumentCode :
1114140
Title :
A Flexible Scalable Solution for All-Optical Multifiber Multicasting: SLAM
Author :
Köksal, Fatih ; Ersoy, Cem
Author_Institution :
Bogazici Univ., Istanbul
Volume :
25
Issue :
9
fYear :
2007
Firstpage :
2653
Lastpage :
2666
Abstract :
We previously proposed a mixed-integer linear-programming formulation, solved by CPLEX, which is a state-of-the-art optimization tool, and two heuristic solutions, layered all-optical multicasting algorithm (LAMA) and conservative fiber and wavelength assignment (C-FWA), for all-optical multicasting in wavelength-routed multifiber wavelength-division multiplexed networks with sparse wavelength conversion and light-splitting restrictions. However, LAMA was not suitable for large and dynamic multicasting problems. In this paper, we evaluate and propose scalable layered all-optical multicasting (SLAM), which is a scalable version of LAMA, for any size static or dynamic multicasting problems. We demonstrate that SLAM performs very close to the optimal (the lower bound/CPLEX) and LAMA, and significantly better than the existing work and C-FWA in terms of nearly all metrics, including the session- and group- blocking probabilities (SBPs and GBPs), since it does not separate routing and fiber-wavelength assignment steps as compared to the other candidates like the existing work and C-FWA. Additionally, transmitter-optimized SLAM, which is a version of SLAM that is specifically tuned to minimize the number of transmitters used, spends three times less extra transmitters than SLAM, without a performance loss in other metrics (one extra transmitter for 12 multicast sessions). Therefore, the adjustable parameters of SLAM make it very flexible to balance different objectives.
Keywords :
integer programming; linear programming; multicast communication; optical fibre networks; optical transmitters; optical wavelength conversion; probability; telecommunication network routing; wavelength assignment; wavelength division multiplexing; CPLEX; all-optical multifiber multicasting; conservative fiber; dynamic multicasting problems; flexible scalable solution; group-blocking probabilities; light-splitting restrictions; mixed-integer linear-programming formulation; scalable layered all-optical multicasting algorithm; session-blocking probabilities; sparse wavelength conversion; state-of-the-art optimization tool; transmitter-optimized SLAM; wavelength assignment; wavelength-routed multifiber wavelength-division multiplexed networks; All-optical networks; Computer networks; Multicast protocols; Network topology; Optical fiber networks; Optical transmitters; Optical wavelength conversion; Simultaneous localization and mapping; WDM networks; Wavelength division multiplexing; All-optic; multicast; multifiber; optic; sparse light splitting; sparse wavelength conversion; wavelength division multiplexing;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2007.902773
Filename :
4298990
Link To Document :
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