DocumentCode :
1501283
Title :
Object-Based 2D-to-3D Video Conversion for Effective Stereoscopic Content Generation in 3D-TV Applications
Author :
Feng, Yue ; Ren, Jinchang ; Jiang, Jianmin
Author_Institution :
Digital Media & Syst. Re search Inst., Univ. of Bradford, Bradford, UK
Volume :
57
Issue :
2
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
500
Lastpage :
509
Abstract :
Three-dimensional television (3D-TV) has gained increasing popularity in the broadcasting domain, as it enables enhanced viewing experiences in comparison to conventional two-dimensional (2D) TV. However, its application has been constrained due to the lack of essential contents, i.e., stereoscopic videos. To alleviate such content shortage, an economical and practical solution is to reuse the huge media resources that are available in monoscopic 2D and convert them to stereoscopic 3D. Although stereoscopic video can be generated from monoscopic sequences using depth measurements extracted from cues like focus blur, motion and size, the quality of the resulting video may be poor as such measurements are usually arbitrarily defined and appear inconsistent with the real scenes. To help solve this problem, a novel method for object-based stereoscopic video generation is proposed which features (i) optical-flow based occlusion reasoning in determining depth ordinal, (ii) object segmentation using improved region-growing from masks of determined depth layers, and (iii) a hybrid depth estimation scheme using content-based matching (inside a small library of true stereo image pairs) and depth-ordinal based regularization. Comprehensive experiments have validated the effectiveness of our proposed 2D-to-3D conversion method in generating stereoscopic videos of consistent depth measurements for 3D-TV applications.
Keywords :
computer graphics; content management; image matching; image segmentation; image sequences; spatial variables measurement; stereo image processing; television broadcasting; three-dimensional television; 2D-3D conversion method; 3DTV application; content shortage; content-based matching; depth measurement; depth-ordinal based regularization; hybrid depth estimation scheme; media resource; monoscopic sequence; object based 2D-3D video conversion; object segmentation; object-based stereoscopic video generation; optical flow based occlusion reasoning; stereo image pair; stereoscopic 3D; stereoscopic content generation; stereoscopic video; three dimensional television; two dimensional TV; Cameras; Cognition; Estimation; Optical imaging; Pixel; Stereo vision; Three dimensional displays; 2D-to-3D conversion; 3D-TV; Broadcasting; computer vision; multimedia systems;
fLanguage :
English
Journal_Title :
Broadcasting, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9316
Type :
jour
DOI :
10.1109/TBC.2011.2131030
Filename :
5754617
Link To Document :
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