Real time call admission control for ATM networks with heterogeneous bursty traffic

Tsern-Huei Lee*, Kuen Chu Lai, Shii Tyng Duann

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contribution

6 Scopus citations

Abstract

In this paper we propose a real time computation algorithm based on the bufferless fluid flow model for call admission control in ATM networks with heterogeneous bursty traffic. Cell loss probability is adopted as the measure of quality of service. Our proposed computation algorithm requires a constant memory size and needs only two multiplications and one division to decide whether a connection request can be accepted or not. It is known [6] that the individual cell loss probability for each type of traffic sources may not meet the requirement even though the global one does. We provide in this paper a tight upper bound for individual cell loss probability which can be evaluated easily by our proposed computation algorithm. Numerical examples using typical traffic parameters are studied.

Original languageEnglish
Title of host publicationConference Record - International Conference on Communications
PublisherPubl by IEEE
Pages80-85
Number of pages6
ISBN (Print)0780318269
DOIs
StatePublished - 1 Jan 1994
EventProceedings of the 1994 IEEE International Conference on Communications - New Orleans, LA, USA
Duration: 1 May 19945 May 1994

Publication series

NameConference Record - International Conference on Communications
Volume1
ISSN (Print)0536-1486

Conference

ConferenceProceedings of the 1994 IEEE International Conference on Communications
CityNew Orleans, LA, USA
Period1/05/945/05/94

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  • Cite this

    Lee, T-H., Lai, K. C., & Duann, S. T. (1994). Real time call admission control for ATM networks with heterogeneous bursty traffic. In Conference Record - International Conference on Communications (pp. 80-85). (Conference Record - International Conference on Communications; Vol. 1). Publ by IEEE. https://doi.org/10.1109/ICC.1994.369018