DocumentCode
3139913
Title
Bitplane Based Wyner-Ziv Coding using Unequal Error Protection
Author
Weerakkody, W.A.R.J. ; Fernando, W.A.C. ; Adikari, A.B.B. ; Fang, Q.
Author_Institution
Sch. of Eng. & Design, Brunel Univ., Uxbridge
fYear
2006
fDate
38838
Firstpage
1192
Lastpage
1195
Abstract
In this paper, we discuss a novel approach to distributed video coding (DVC) using bitplane based unequal error protection. Distributed video coding (DVC) has recently attracted a vast amount of attention from the video coding community all around the world, since it could prove very well suited for some applications where low-complexity encoders are a must. The primary feature of DVC is its modified complexity balance in the encoder and decoder, in contrast to its traditional competitors. When considering each pixel of the frame, out of the 8 bits it constitutes, each bit position has a different significance decreasing gradually from the MSB to the LSB. Therefore a scheme which protects the initial bitplanes better would undoubtedly be desirable. Here we propose to protest each bitplane considering its significance using variable memory length in the encoder. Since increasing the memory length results in higher computational complexity, the optimum mix of the memory length is to be evaluated for the codec to operate within the conceptual restrictions of low-complex encoder in DVC. In this paper, the proposed codec is compared for peformance with another DVC codec which uses a fixed memory length over the whole sequence with comparable complexity. Simulation results show that the proposed method outperforms its fixed memory length counterpart t by a significant margin
Keywords
computational complexity; turbo codes; video codecs; video coding; Wyner-Ziv coding; bitplane based unequal error protection; computational complexity; distributed video coding; turbo coding; variable memory length; video codec; Biomedical monitoring; Codecs; Costs; Decoding; Error correction codes; Mobile communication; Signal processing; Statistics; Streaming media; Video coding; DVC; Turbo coding; Wyner-Ziv coding;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical and Computer Engineering, 2006. CCECE '06. Canadian Conference on
Conference_Location
Ottawa, Ont.
Print_ISBN
1-4244-0038-4
Electronic_ISBN
1-4244-0038-4
Type
conf
DOI
10.1109/CCECE.2006.277416
Filename
4054844
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