DocumentCode :
1304468
Title :
Architectures for Fast Transcoding of H.264/AVC to Quality-Scalable SVC Streams
Author :
De Cock, Jan ; Notebaert, Stijn ; Lambert, Peter ; Van de Walle, Rik
Author_Institution :
Dept. of Electron. & Inf. Syst. (ELIS), Ghent Univ. - IBBT, Ghent, Belgium
Volume :
11
Issue :
7
fYear :
2009
Firstpage :
1209
Lastpage :
1224
Abstract :
The scalable extension of H.264/AVC (SVC) was recently standardized, and offers scalability at a minor penalty in rate-distortion efficiency when compared to single-layer H.264/AVC coding. In SVC, a scaled version of the original video sequence can easily be extracted by dropping layers from the stream. However, most of the video content nowadays is still produced in a single-layer format. While decoding and reencoding is a possible solution to introduce scalability in the existing bitstreams, this is an approach which requires a tremendous amount of time and effort. In this paper, we show that transcoding can be used to intelligently derive scalable bitstreams from existing single-layer streams. We focus on SNR scalability, and introduce techniques that are able to create multiple quality layers in the bitstreams. We also discuss bitstream rewriting from SVC to H.264/AVC, and examine how our newly proposed architectures can benefit from the changes that were introduced for bitstream rewriting. Architectures with different rate distribution flexibility and computational complexity are discussed. Rate-distortion performance of transcoding is shown to be comparable to that of reencoding at a fraction of the time needed for the latter.
Keywords :
computational complexity; image sequences; rate distortion theory; transcoding; video coding; H.264/AVC; architectures; bitstream rewriting; computational complexity; fast transcoding; quality-scalable SVC streams; rate-distortion; video sequence; H.264/AVC; scalable video coding (SVC); video transcoding;
fLanguage :
English
Journal_Title :
Multimedia, IEEE Transactions on
Publisher :
ieee
ISSN :
1520-9210
Type :
jour
DOI :
10.1109/TMM.2009.2030606
Filename :
5210142
Link To Document :
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