DocumentCode
986093
Title
On Channel Capacity Estimation and Prediction for Rate-Adaptive Wireless Video
Author
Cho, Yongju ; Karande, Shirish ; Misra, Kiran ; Radha, Hayder ; Yoo, Jeongju ; Hong, Jinwoo
Author_Institution
Electron. & Telecommun. Res. Inst. (ETRI), Daejeon
Volume
10
Issue
7
fYear
2008
Firstpage
1419
Lastpage
1426
Abstract
Packet drops caused by residue errors (MAC-layer errors) can severely deteriorate the wireless video quality. Prior studies have shown that this loss of quality can be circumvented by using forward error correction (FEC) to recover information from the corrupted packets. The performance of FEC encoded video streaming is critically dependent upon the choice of source and channel coding rates. In practice, the wireless channel conditions can vary significantly, thus altering the optimal rate choices. Thus, it is essential to develop an architecture which can estimate the channel capacity and utilize this estimate for rate allocation. In this paper we develop such a framework. Our contributions consist of two parts. In the first part we develop a prediction framework that leverages the received packets´ signal to silence ratio (SSR) indications and MAC-layer checksum as side information to predict the operational channel capacity. In the second part, we use this prediction framework for rate allocation. The optimal rate allocation is dependent upon the channel capacity, the distribution of the (capacity) prediction error and the rate-distortion (RD) characteristics of the video source. Consequently, we propose a framework that utilizes the aforementioned statistics for RD optimal rate adaptation. We exhibit the efficacy of the proposed scheme by simulations using actual 802.11b wireless traces, an RD model for the video source and an ideal FEC model. Simulations using source RD models derived from five different popular video codecs (including H.264), show that the proposed framework provides up-to 5-dB improvements in peak signal-to-noise ratio (PSNR) when compared with conventional rate-adaptive schemes.
Keywords
channel allocation; channel capacity; channel estimation; forward error correction; video coding; video streaming; wireless LAN; 802.11b wireless traces; FEC encoded video streaming; MAC-layer errors; channel capacity estimation; forward error correction; information recovery; peak signal-to-noise ratio; prediction error; rate allocation; rate-adaptive schemes; rate-adaptive wireless video; rate-distortion characteristics; residue errors; signal to silence ratio; video codecs; Channel quality prediction; coding rate; rate adaptation; wireless LAN; wireless video;
fLanguage
English
Journal_Title
Multimedia, IEEE Transactions on
Publisher
ieee
ISSN
1520-9210
Type
jour
DOI
10.1109/TMM.2008.2004901
Filename
4671044
Link To Document