DocumentCode
806612
Title
Generalized processor sharing with light-tailed and heavy-tailed input
Author
Borst, Sem ; Mandjes, Michel ; Van Uitert, Miranda
Author_Institution
Centre for Math. & Comput. Sci., Amsterdam, Netherlands
Volume
11
Issue
5
fYear
2003
Firstpage
821
Lastpage
834
Abstract
We consider a queue fed by a mixture of light-tailed and heavy-tailed traffic. The two traffic flows are served in accordance with the generalized processor sharing (GPS) discipline. GPS-based scheduling algorithms, such as weighted fair queueing, have emerged as an important mechanism for achieving service differentiation in integrated networks. We derive the asymptotic workload behavior of the light-tailed traffic flow under the assumption that its GPS weight is larger than its traffic intensity. The GPS mechanism ensures that the workload is bounded above by that in an isolated system with the light-tailed flow served in isolation at a constant rate equal to its GPS weight. We show that the workload distribution is in fact asymptotically equivalent to that in the isolated system, multiplied with a certain pre-factor, which accounts for the interaction with the heavy-tailed flow. Specifically, the pre-factor represents the probability that the heavy-tailed flow is backlogged long enough for the light-tailed flow to reach overflow. The results provide crucial qualitative insight in the typical overflow scenario.
Keywords
Markov processes; probability; queueing theory; telecommunication networks; telecommunication traffic; GPS queue; GPS-based scheduling algorithms; Markov fluid; asymptotic workload behavior; generalized processor sharing; heavy-tailed input; heavy-tailed traffic; integrated networks; isolated system; light-tailed input; light-tailed traffic; lower bound; overflow; overflow scenario; probability; service differentiation; traffic intensity; upper bound; weighted fair queueing; workload distribution; Computer science; Delay; Global Positioning System; Mathematics; Processor scheduling; Scheduling algorithm; Streaming media; Telecommunication traffic; Traffic control; Video sharing;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/TNET.2003.818195
Filename
1237459
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