Title :
Group-scheduling for optical burst switched (OBS) networks
Author :
Charcranoon, Saravut ; El-bawab, Tarek S. ; Cankaya, Hakki C. ; Shin, Jong-Dug
Author_Institution :
Network Strategy Group, Alcatel USA, Plano, TX, USA
Abstract :
To date, all of the proposals for burst-scheduling techniques have considered scheduling individual bursts. We introduce a new scheme called OBS group scheduling. In this approach, a burst is represented by an interval of time. The process of scheduling a number of bursts, thus, turns to be a process of fitting a set of the corresponding time intervals on a channel time line that represents a channel-time resource. By doing so, we can formulate the scheduling process as a combinatorial optimization problem. Then, graph theory is applied to schedule as many non-overlapping intervals as possible onto the channel time line. The underlying concept of the group scheduling is that of briefly delaying the scheduling of a burst so that a much better decision can be made about a number of bursts all-together. This scheme is shown, through simulations, to improve performance in terms of burst loss probability and channel utilization over existing schemes.
Keywords :
channel allocation; graph theory; optical fibre networks; optimisation; probability; telecommunication switching; OBS group scheduling; burst loss probability; burst-scheduling technique; channel time line; channel utilization; channel-time resource; combinatorial optimization problem; graph theory; optical burst switched network; scheduling individual burst; Delay effects; Fitting; Graph theory; Optical burst switching; Optical fiber networks; Optical losses; Optical packet switching; Performance loss; Proposals; Resource management;
Conference_Titel :
Global Telecommunications Conference, 2003. GLOBECOM '03. IEEE
Print_ISBN :
0-7803-7974-8
DOI :
10.1109/GLOCOM.2003.1258735