DocumentCode :
1378737
Title :
MAC-Layer Active Dropping for Real-Time Video Streaming in 4G Access Networks
Author :
She, James ; Hou, Fen ; Shihada, Basem ; Ho, Pin-Han
Author_Institution :
Comput. Lab., Univ. of Cambridge, Cambridge, UK
Volume :
4
Issue :
4
fYear :
2010
Firstpage :
561
Lastpage :
572
Abstract :
This paper introduces a MAC-layer active dropping scheme to achieve effective resource utilization, which can satisfy the application-layer delay for real-time video streaming in time division multiple access based 4G broadband wireless access networks. When a video frame is not likely to be reconstructed within the application-layer delay bound at a receiver for the minimum decoding requirement, the MAC-layer protocol data units of such video frame will be proactively dropped before the transmission. An analytical model is developed to evaluate how confident a video frame can be delivered within its application-layer delay bound by jointly considering the effects of time-varying wireless channel, minimum decoding requirement of each video frame, data retransmission, and playback buffer. Extensive simulations with video traces are conducted to prove the effectiveness of the proposed scheme. When compared to conventional cross-layer schemes using prioritized-transmission/retransmission, the proposed scheme is practically implementable for more effective resource utilization, avoiding delay propagation, and achieving better video qualities under certain conditions.
Keywords :
4G mobile communication; access protocols; broadband networks; decoding; image reconstruction; image sequences; radio access networks; video coding; video streaming; wireless channels; MAC-layer active dropping; MAC-layer protocol; data retransmission; minimum decoding; multiple access based 4G broadband wireless access networks; playback buffer; real-time video streaming; time-varying wireless channel; video frame; video quality; video reconstruction; IEEE 802.16 Standards; Real time systems; Video streaming; WiMAX; Application-layer delay; IEEE 802.16; LTE; WiMAX; cross-layer design; dropping; real-time video streaming;
fLanguage :
English
Journal_Title :
Systems Journal, IEEE
Publisher :
ieee
ISSN :
1932-8184
Type :
jour
DOI :
10.1109/JSYST.2010.2086870
Filename :
5635430
Link To Document :
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