DocumentCode
921911
Title
Joint source/channel coding of statistically multiplexed real-time services on packet networks
Author
Garrett, Mark W. ; Vetterli, Martin
Author_Institution
Bell Communications Res., Morristown, NJ, USA
Volume
1
Issue
1
fYear
1993
fDate
2/1/1993 12:00:00 AM
Firstpage
71
Lastpage
80
Abstract
The interaction of congestion control with the partitioning of source information into components of varying importance for variable-bit-rate packet voice and packet video is investigated. High-priority transport for the more important signal components results in substantially increased objective service quality. Using a Markov chain voice source model with simple PCM speech encoding and a priority queue, simulation results show a signal-to-noise ratio improvement of 45 dB with two priorities over an unprioritized system. Performance is sensitive to the fraction of traffic placed in each priority, and the optimal partition depends on network loss conditions. When this partition is optimized dynamically, quality degrades gracefully over a wide range of load values. Results with DCT encoded speech and video samples show similar behavior. Variations are investigated such as further partition of low-priority information into multiple priorities. A simulation with delay added to represent other network nodes shows general insensitivity to delay of network feedback information. A comparison is made between dropping packets on buffer overflow and timeout based on service requirements
Keywords
Markov processes; discrete cosine transforms; multiplexing; packet switching; queueing theory; speech coding; visual communication; voice communication; DCT encoded speech; Markov chain voice source model; PCM speech encoding; congestion control; joint source/channel coding; packet networks; packet video; priority queue; signal-to-noise ratio; statistically multiplexed real-time services; variable-bit-rate packet voice; Added delay; Channel coding; Degradation; Discrete cosine transforms; Performance loss; Phase change materials; Signal to noise ratio; Speech; Telecommunication traffic; Traffic control;
fLanguage
English
Journal_Title
Networking, IEEE/ACM Transactions on
Publisher
ieee
ISSN
1063-6692
Type
jour
DOI
10.1109/90.222908
Filename
222908
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