DocumentCode
1611194
Title
Multilink Performance of the Load-Level-Based Admission Control Mechanism for OBS Networks
Author
Moraes, Igor M. ; Duarte, Otto Carlos M B
Author_Institution
Grupo de Teleinformatica e Automacao, Univ. Fed. do Rio de Janeiro, Rio de Janeiro
fYear
2008
Firstpage
40
Lastpage
44
Abstract
In this paper, we analyze the performance of the load-level-based admission control mechanism (LLAC) for optical burst-switched networks in a multilink scenario. The goal of this mechanism is to differentiate the blocking probability of a given service class according to the network load and a class-associated parameter, called load level. For the proposed mechanism, we develop a multilink analytical model based on the reduced load approximation method, which provides a more accurate blocking probability estimation than a single-link model. With the multilink model, the performance of the load-level- based mechanism is even better than using a single-link model. For the analyzed scenarios, high-priority bursts experiences a blocking probability up to 60% lower than the one provided by the single-link model. The results also show that the load- level-based mechanism effectively differentiates the services in all analyzed scenarios, when compared to other similar mechanisms.
Keywords
approximation theory; optical burst switching; optical fibre networks; optical links; probability; telecommunication congestion control; blocking probability estimation; load approximation method; load-level-based admission control mechanism; multilink scenario; optical burst-switched network; Admission control; Analytical models; Bandwidth; Communications Society; Optical buffering; Optical fiber networks; Optical packet switching; Performance analysis; Quality of service; Wavelength division multiplexing;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 2008. ICC '08. IEEE International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4244-2075-9
Electronic_ISBN
978-1-4244-2075-9
Type
conf
DOI
10.1109/ICC.2008.16
Filename
4533052
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