DocumentCode
1765253
Title
High Efficiency 3D Video Coding Using New Tools Based on View Synthesis
Author
Domanski, Marek ; Stankiewicz, Olgierd ; Wegner, Krzysztof ; Kurc, Maciej ; Konieczny, Jacek ; Siast, Jakub ; Stankowski, Jakub ; Ratajczak, Robert ; Grajek, Tomasz
Author_Institution
Dept. of Multimedia Telecommun. & Microelectron., Poznan Univ. of Technol., Poznań, Poland
Volume
22
Issue
9
fYear
2013
fDate
Sept. 2013
Firstpage
3517
Lastpage
3527
Abstract
We propose a new coding technology for 3D video represented by multiple views and the respective depth maps. The proposed technology is demonstrated as an extension of the recently developed high efficiency video coding (HEVC). One base views are compressed into a standard bitstream (like in HEVC). The remaining views and the depth maps are compressed using new coding tools that mostly rely on view synthesis. In the decoder, those views and the depth maps are derived via synthesis in the 3D space from the decoded baseview and from data corresponding to small disoccluded regions. The shapes and locations of those disoccluded regions can be derived by the decoder without any side information transmitted. To achieve high compression efficiency, we propose several new tools such as depth-based motion prediction, joint high frequency layer coding, consistent depth representation, and nonlinear depth representation. The experiments show high compression efficiency of the proposed technology. The bitrate needed for transmission of two side views with depth maps is mostly less than 50% than that of the bitrate for a single-view video.
Keywords
data compression; image representation; video codecs; video coding; HEVC; MVD representation; coding tools; compression efficiency; depth based motion prediction; depth maps; disoccluded region coding; high efficiency 3D video coding; joint high frequency layer coding; nonlinear depth representation; view synthesis; 3D video; HEVC; MVD representation; coding; compression; depth maps;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2013.2266580
Filename
6530664
Link To Document