DocumentCode
1407024
Title
Call admission for prerecorded sources with packet loss
Author
Reisslein, Martin ; Ross, Keith W.
Author_Institution
Dept. of Syst. Eng., Pennsylvania Univ., Philadelphia, PA, USA
Volume
15
Issue
6
fYear
1997
fDate
8/1/1997 12:00:00 AM
Firstpage
1167
Lastpage
1180
Abstract
We develop call admission policies for statistically multiplexing prerecorded sources over a bufferless transmission link. Our model is appropriate for video on demand, as well as other on-demand multimedia applications. In particular, we allow users to specify when the sources begin transmission; we also allow the user to invoke VCR actions such as pause and temporal jumps. We suppose that the quality of service (QoS) requirement allows for a small amount of packet loss. We develop a stochastic model which captures the random phases of the sources. We then apply large deviation theory to our model to develop global admission rules. The accuracy of the large deviation approximation is verified with simulation experiments employing importance sampling techniques. We also propose a refined admission rule which combines the global test and a myopic test. Numerical results are presented for the Star Wars trace; we find that the statistical multiplexing gain is potentially high and often insensitive to the QoS parameter. Finally, we develop efficient schemes for the real-time implementation of our global test. In particular, we demonstrate that the Taylor series expansion of the logarithmic moment generating function of the frame size distribution allows for fast and accurate admission decisions
Keywords
image sampling; interactive video; multimedia communication; packet switching; series (mathematics); statistical analysis; telecommunication congestion control; visual communication; QoS; Star Wars trace; Taylor series expansion; VCR actions; bufferless transmission link; call admission; frame size distribution; global admission rules; global test; importance sampling techniques; large deviation approximation; large deviation theory; logarithmic moment generating function; myopic test; on-demand multimedia applications; packet loss; prerecorded sources; quality of service; random phases; real time implementation; refined admission rule; simulation experiments; statistical multiplexing gain; stochastic model; video on demand; Monte Carlo methods; Propagation losses; Quality of service; Stochastic processes; Taylor series; Telecommunication traffic; Testing; Traffic control; Video on demand; Video recording;
fLanguage
English
Journal_Title
Selected Areas in Communications, IEEE Journal on
Publisher
ieee
ISSN
0733-8716
Type
jour
DOI
10.1109/49.611166
Filename
611166
Link To Document