DocumentCode
863780
Title
Two-Dimensional Channel Coding Scheme for MCTF-Based Scalable Video Coding
Author
Wang, Yu ; Fang, Tao ; Chau, Lap-Pui ; Yap, Kim-Hui
Author_Institution
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ.
Volume
9
Issue
1
fYear
2007
Firstpage
37
Lastpage
45
Abstract
The motion-compensated temporal filtering (MCTF)-based scalable video coding (SVC) provides a full scalability including spatial, temporal and signal-to-noise ratio (SNR) scalability with fine granularity, each of which may result in different visual effect. This paper addresses a novel approach of two-dimensional unequal error protection (2D UEP) for the scalable video with a combined temporal and quality (SNR) scalability over packet-erasure channel. The bit-stream is divided into scalable subbitstreams based on the structure of MCTF. Each subbitstream is further divided into several quality layers. Unequal quantities of bits are allocated to protect different layers to obtain acceptable quality video with smooth degradation under different transmission error conditions. Experimental results are presented to show the advantage of the proposed 2D UEP scheme over the traditional one-dimensional unequal error protection (1D UEP) scheme. Comparing the proposed method with the 1D UEP scheme on SNR layers, our method gives up to 0.81-dB improvement for some video sequences
Keywords
channel coding; error correction codes; filtering theory; genetic algorithms; motion compensation; signal denoising; video coding; 2D UEP scheme; 2D channel coding scheme; 2D unequal error protection; MCTF-based SVC; SNR scalability; genetic algorithm; motion-compensated temporal filtering; scalable video coding; signal-to-noise ratio; Channel coding; Degradation; Error correction codes; Filtering; Scalability; Signal to noise ratio; Static VAr compensators; Video coding; Video sequences; Visual effects; Channel coding; FEC; MCTF; UEP; scalable video coding;
fLanguage
English
Journal_Title
Multimedia, IEEE Transactions on
Publisher
ieee
ISSN
1520-9210
Type
jour
DOI
10.1109/TMM.2006.886339
Filename
4032622
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