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Link adaptation and power control for streaming services in EGPRS wireless networks

Authors :
Kapil K. Chawla
Kin K. Leung
Xiaoxin Qiu
Peter F. Driessen
Source :
IEEE Journal on Selected Areas in Communications. 19:2029-2039
Publication Year :
2001
Publisher :
Institute of Electrical and Electronics Engineers (IEEE), 2001.

Abstract

Using the MPEG-4 advanced audio coder (AAC) music as an example of streaming applications, we investigate the improvement of error performance for the streaming service by link adaptation and power control techniques in an enhanced general packet radio services (EGPRS) cellular network. A low packet error rate and variability are essential in providing a short error-burst length so that error concealment techniques can be effectively applied to music packets. We study the effects of a combined link adaptation and power control scheme (referred to as the error-based scheme) for achieving a target error rate and reducing error variability. By simulation, we compare the error performance of the error-based scheme at both the EGPRS block and AAC frame level with another adaptation algorithm (referred to as the throughput-based scheme) with a goal of maximizing overall network throughput. It is found that when offered with a similar traffic load, the former scheme can provide noticeable improvement of music quality over the throughput-based scheme. To achieve a similar AAC frame error rate, our results also show that the error-based scheme can increase the link throughput over the throughput-based scheme by 66.7% in one of our examples. These results reveal that by aiming at required error targets and thus reducing error variability, the error-based scheme for link adaptation and power control are helpful in improving quality and capacity for streaming applications.

Details

ISSN :
07338716
Volume :
19
Database :
OpenAIRE
Journal :
IEEE Journal on Selected Areas in Communications
Accession number :
edsair.doi...........aa6ec0285f943628ceb9e411f16b1509
Full Text :
https://doi.org/10.1109/49.957316