DocumentCode
2169441
Title
Depth image based rendering with inverse mapping
Author
Farid, Muhammad Shahid ; Lucenteforte, Maurizio ; Grangetto, Marco
Author_Institution
Dipt. di Inf., Univ. di Torino, Turin, Italy
fYear
2013
fDate
Sept. 30 2013-Oct. 2 2013
Firstpage
135
Lastpage
140
Abstract
Three-dimensional video has gained much attention during the last decade due its vast applications in cinema, television, animation and virtual reality. The design of intermediate view synthesis algorithms that are efficient both in terms of computational complexity and visual quality is a paramount goal in the fields of 3D free view point television and displays. This papers focuses on the design of a low complexity view synthesis algorithm that produces better quality of the virtual image. A novel view synthesis technique to create a virtual view from two video sequences with corresponding depths is proposed. The technique employs low complexity integer pixel precision warping and a novel approach for hole filling based on inverse mapping. The proposed technique is tested over a number of video sequences and compared with existing state of the art methods, yielding excellent results both in terms of signal to noise ratio and visual quality.
Keywords
computational complexity; conformal mapping; image sequences; rendering (computer graphics); three-dimensional television; video signal processing; 3D free view point television; computational complexity; depth image based rendering; integer pixel precision warping; inverse mapping; signal to noise ratio; three-dimensional video; video sequences; view synthesis algorithm; virtual image quality; visual quality; Cameras; Equations; PSNR; Rendering (computer graphics); Software; Three-dimensional displays; Visualization; 3D warping; 3D-TV; Depth image based rendering; View synthesis;
fLanguage
English
Publisher
ieee
Conference_Titel
Multimedia Signal Processing (MMSP), 2013 IEEE 15th International Workshop on
Conference_Location
Pula
Type
conf
DOI
10.1109/MMSP.2013.6659277
Filename
6659277
Link To Document