Title :
Temporally recursive robust detail reconstruction from stereo 3D sequences
Author :
Brüggemann, Matthias ; Kays, Rüdiger ; Springer, Paul ; Nishi, Toru ; Erdler, Oliver
Author_Institution :
Commun. Technol. Inst., Tech. Univ. Dortmund, Dortmund, Germany
Abstract :
Current HD and 3D TV sets still have to cope with various input content resolutions that have to be displayed in native Full HD or higher resolution. Typical up-scaling methods only make use of spatial information in order to compute a high resolution output. Most of these methods show a low ability to reconstruct high frequency details. In this paper a method for reconstructing details from multiple input frames of a Stereo 3D sequence and generating a high detail output is presented. Utilizing temporally recursive processing, a memory efficient method is realized, which can be used for detail level enhancement post-processing in current 3D TV sets. Due to internal reliability estimation for motion and disparity vectors, the proposed method shows a high robustness against artifacts from erroneous motion and disparity compensation.
Keywords :
high definition television; image reconstruction; image resolution; motion estimation; reliability; stereo image processing; three-dimensional television; 3DTV; HDTV; detail level enhancement post-processing; disparity vectors; high frequency detail reconstruction; high resolution output; input content resolutions; internal reliability estimation; memory efficient method; motion vectors; spatial information; stereo 3D sequences; temporally recursive processing; temporally recursive robust detail reconstruction; up-scaling methods; Estimation; Image reconstruction; Image resolution; Robustness; Signal resolution; Vectors; Stereo 3D; Super-Resolution; detail reconstruction; recursive image enhancement; vector reliability;
Conference_Titel :
Consumer Electronics - Berlin (ICCE-Berlin), 2012 IEEE International Conference on
Conference_Location :
Berlin
Print_ISBN :
978-1-4673-1546-3
DOI :
10.1109/ICCE-Berlin.2012.6336505