JOURNAL ARTICLE

Dynamic adaptive playout algorithm using interarrival jitter and dual use of

Younchan JungJ. William Atwood

Year: 2006 Journal:   IEE Proceedings - Communications Vol: 153 (2)Pages: 279-279   Publisher: Institution of Engineering and Technology

Abstract

Two algorithms have been used as the basis for playout of packet-based voice. The first one identifies jitter level using the metric of the difference between the observed network delay for a new packet and the estimated average for previous packets. The new value of the estimated jitter level is a weighted combination of the previous value of the estimated jitter level and the new value of the observed jitter level. The second one is based on the difference in the arrival times of successive packets. The value of α used in the weighted combination is normally fixed. ThE paper proposes the use of two values of the weighting factor α to make the estimate of jitter level react quickly when jitter increases, but react slowly when it decreases. Four playout algorithms are evaluated using several jitter patterns obtained experimentally for 30 paths. The results indicate that the dynamic playout algorithm using αLOW=0.995 and αHIGH=0.998002 can produce significant reductions in the lateness loss rates, especially for high jitter conditions. It is also shown that the interarrival time jitter metric used in the dynamic playout algorithm results in better lateness loss performances especially in low jitter conditions. Finally, given the tendency to lower network delay, it is shown that increasing the buffering delay permits achieving significantly lower lateness loss, while still maintaining acceptable overall delay.

Keywords:
Jitter Network packet Computer science Metric (unit) Real-time computing Weighting Algorithm Control theory (sociology) Computer network Telecommunications Engineering Artificial intelligence Acoustics Physics

Metrics

4
Cited By
0.64
FWCI (Field Weighted Citation Impact)
17
Refs
0.66
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Speech and Audio Processing
Physical Sciences →  Computer Science →  Signal Processing
Advanced Data Compression Techniques
Physical Sciences →  Computer Science →  Computer Vision and Pattern Recognition
Wireless Communication Networks Research
Physical Sciences →  Computer Science →  Computer Networks and Communications

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