DocumentCode :
2517839
Title :
Heterogeneous on-off sources in the bufferless fluid flow model
Author :
Mao, Guoqiang ; Habibi, Daryoush
Author_Institution :
Edith Cowan Univ., Perth, WA, Australia
fYear :
2000
fDate :
2000
Firstpage :
307
Lastpage :
312
Abstract :
There are several methods to analyze the cell loss in a network: queuing analysis, large deviation approximation and bufferless fluid flow approximation. Bufferless fluid flow approximation is frequently used in the literature for its simplicity. However there is no effective means to investigate the cell loss in the bufferless fluid flow model. In this paper we define the cell loss rate function (CLRF) and suggest it for studying the cell loss of traffic sources in the bufferless fluid flow model. Properties of the CLRF are discussed. These properties enable us to decompose the complex analysis of the aggregation of several traffic sources into the simpler analysis of the individual sources. An important theorem about heterogeneous on-of sources is proved using the CLRF. The applications of the CLRF and the theorem in cell loss analysis and connection admission control are presented. A real-time CAC scheme using on-line measurements is designed. This CAC scheme needs only simple information about traffic sources. Simulation studies are presented which are indicative of good performance of the CAC scheme
Keywords :
approximation theory; digital simulation; queueing theory; telecommunication congestion control; telecommunication traffic; bufferless fluid flow approximation; bufferless fluid flow model; cell loss analysis; cell loss rate function; connection admission control; heterogeneous Bernoulli sources; heterogeneous on-of sources; heterogeneous on-off sources; large deviation approximation; network cell loss; on-line measurements; performance; queuing analysis; real-time CAC; simulation studies; traffic sources; Admission control; Asynchronous transfer mode; Communication system traffic control; Delay; Fluid flow; Global communication; Intelligent networks; Quality of service; Queueing analysis; Traffic control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Networks, 2000. (ICON 2000). Proceedings. IEEE International Conference on
Print_ISBN :
0-7695-0777-8
Type :
conf
DOI :
10.1109/ICON.2000.875806
Filename :
875806
Link To Document :
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