Title :
A fluid model analysis of streaming media in the presence of time-varying bandwidth
Author :
Bosman, J.W. ; van der Mei, R.D. ; Nunez-Queija, R.
Abstract :
This paper is motivated by the increasing popularity of streaming media applications that are offered via the Internet. Packet streams generated by media application servers are distorted due to variability in the available bandwidth; at the receiving end, a play-out buffer compensates for the distortion. We study the dynamics of this system in a queuing-theoretical setting, using fluid analysis. To this end, we consider a model in which a constant bit-rate (CBR) media application is streamed over an unreliable network. Our model consists of a tandem of two fluid queues. The first queue is a Markov Modulated fluid queue that models the network congestion, and the second queue represents the play-out buffer. For this model the distribution of the total amount of fluid in the congestion and play-out buffers corresponds to the distribution of the maximum attained level of the first buffer. We show that the distribution of the total amount of fluid converges to a Gumbel extreme value distribution. From this result, we derive a simple closed-form expression for the initial playout-buffer level that provides a probabilistic guarantee for undisturbed playback.
Keywords :
Markov processes; distortion; media streaming; queueing theory; statistical distributions; telecommunication congestion control; CBR media application; Gumbel extreme value distribution; Internet; Markov modulated fluid queue; bandwidth availability; constant bit-rate media application; distortion; fluid model analysis; media application server; media streaming; network congestion; packet stream; play-out buffer; probabilistic guarantee; queuing-theoretical setting; system dynamics; time-varying bandwidth; undisturbed playback; Bandwidth; Generators; IP networks; Markov processes; Queueing analysis; Streaming media;
Conference_Titel :
Teletraffic Congress (ITC 24), 2012 24th International
Conference_Location :
Krakow
Print_ISBN :
978-1-4673-1292-9
Electronic_ISBN :
978-0-9836283-3-0