DocumentCode :
178190
Title :
Kinect-Variety Fusion: A Novel Hybrid Approach for Artifacts-Free 3DTV Content Generation
Author :
Sharma, M. ; Chaudhury, S. ; Lall, B.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol., Delhi, Delhi, India
fYear :
2014
fDate :
24-28 Aug. 2014
Firstpage :
2275
Lastpage :
2280
Abstract :
This paper presents a novel low-cost hybrid Kinect-variety based content generation scheme for 3DTV displays. The integrated framework constructs an efficient consistent image-space parameterization of 3D scene structure using only sparse depth information of few reference scene points. Under full-perspective camera model, the enforced Euclidean constraints simplify the synthesis of high quality novel multiview content for distinct camera motions. The algorithm does not rely on complete precise scene geometry information, and are unaffected by scene complex geometric properties, unconstrained environmental variations and illumination conditions. It, therefore, performs fairly well under a wider set of operation condition where the 3D range sensors fail or reliability of depth-based algorithms are suspect. The robust integration of vision algorithm and visual sensing scheme complement each other´s shortcomings. It opens new opportunities for envisioning vision-sensing applications in uncontrolled environments. We demonstrate that proposed robust integration provides guarantees on the completeness and consistency of the algorithm. This leads to improved reliability on an extensive set of experimental results.
Keywords :
computer vision; geometry; three-dimensional television; 3D scene structure; Euclidean constraints; artifacts-free 3DTV content generation; depth-based algorithms; distinct camera motions; full-perspective camera model; hybrid approach; illumination conditions; image-space parameterization; kinect-variety fusion; operation condition; range sensors; reference scene points; scene complex geometric properties; sparse depth information; unconstrained environmental variations; uncontrolled environments; vision algorithm; visual sensing scheme; Cameras; Mathematical model; Polynomials; Rendering (computer graphics); Sensors; Three-dimensional displays;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pattern Recognition (ICPR), 2014 22nd International Conference on
Conference_Location :
Stockholm
ISSN :
1051-4651
Type :
conf
DOI :
10.1109/ICPR.2014.395
Filename :
6977107
Link To Document :
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