Title :
PCR-based fair intelligent bandwidth allocation for rate adaptive video traffic
Author :
Yu, Xiaomei ; Hoang, Doan B. ; Feng, David D.
Author_Institution :
Dept. of Comput. Sci., Sydney Univ., NSW, Australia
Abstract :
In this paper, we propose a network bandwidth sharing algorithm, Peak Cell Rate (PCR)-based Fair Intelligent Bandwidth Allocation (PFIBA) for transporting rate-adaptive video traffic using feedback, and report on its performance under a general PCR-based share policies. Through extensive simulations, we obtained following results. The PFIBA algorithm is capable of allocating bandwidth fairly for the minimum cell rate (MCR) plus PCR-proportional fairness criteria among competitive rate-adaptive video sources, is capable to reallocate smoothly when there are renegotiations of the minimum guaranteed cell rate or PCR by some connections, is able to reallocate smoothly when a new connection is admitted, and is able to reallocate smoothly when a connection is throttled somewhere earlier along the connection path. Furthermore, we show the algorithm prevents congestion, especially during the initial periods when buffer queues can build up significantly
Keywords :
bandwidth allocation; data compression; feedback; video coding; PCR-based fair intelligent bandwidth allocation; buffer queues; competitive rate-adaptive video sources; feedback; minimum cell rate; peak cell rate; rate adaptive video traffic; rate-adaptive video traffic; simulations; Bandwidth; Channel allocation; Communication system traffic control; Convergence; Feedback control; Signal processing algorithms; Switches; Traffic control; Video compression; Video sharing;
Conference_Titel :
Intelligent Multimedia, Video and Speech Processing, 2001. Proceedings of 2001 International Symposium on
Conference_Location :
Hong Kong
Print_ISBN :
962-85766-2-3
DOI :
10.1109/ISIMP.2001.925352