DocumentCode
1492517
Title
An efficient protocol architecture for error-resilient MPEG-2 video communications over ATM networks
Author
Cuenca, Pedro ; Garrido, Antonio ; Quiles, Francisco ; Orozco-Barbosa, Luis
Author_Institution
Dept. de Inf., Univ. de Castilla-La Mancha, Albacete, Spain
Volume
45
Issue
1
fYear
1999
fDate
3/1/1999 12:00:00 AM
Firstpage
129
Lastpage
140
Abstract
MPEG-2 video communications over ATM networks is one of the most active research areas in the field of computer communications. In the transmission process of a variable bit rate video signal over an ATM network, cells are inevitably exposed to delays, errors and losses due to the statistical multiplexing used in these networks. These phenomena affect the quality of the video signal and without adequate measures to control the propagation of the impairments the quality of the service may fall below acceptable levels. In this paper, we study the impact of cell losses on the quality of a MPEG-2 video sequence encoded in a variable bit rate mode. We introduce a set of control mechanisms at different levels of the protocol architecture to be used in MPEG-2-based video communications systems using ATM networks as their underlying transmission mechanism. Our results (using different video sequences) show the effectiveness to improve the video quality by using a structured set of control mechanisms to overcome for the loss of cells carrying VBR MPEG-2 video streams. We argue that in order to be able to create video systems able to cope with cell losses encountered in computer communications systems, a structured set of error-resilient protocol mechanisms is needed
Keywords
asynchronous transfer mode; computer networks; image sequences; protocols; quality of service; telecommunication control; variable rate codes; video coding; visual communication; ATM networks; computer communications; control mechanisms; delays; efficient protocol architecture; error-resilient MPEG-2 video communications; error-resilient protocol mechanisms; errors; losses; quality; statistical multiplexing; transmission mechanism; variable bit rate coding; variable bit rate video signal; video quality; video sequence; Asynchronous transfer mode; Bit rate; Communication system control; Computer architecture; Computer errors; Computer networks; Propagation losses; Protocols; Signal processing; Video sequences;
fLanguage
English
Journal_Title
Broadcasting, IEEE Transactions on
Publisher
ieee
ISSN
0018-9316
Type
jour
DOI
10.1109/11.754992
Filename
754992
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