Title :
Performance improvement of segmentation-based depth representation in 3D imagery by region merging
Author :
De Raffaele, C. ; Camilleri, K.P. ; Farrugia, Reuben A. ; Debono, Carl J.
Author_Institution :
Dept. of Syst. & Control Eng., Univ. of Malta, Msida, Malta
Abstract :
The feasible implementation of immersive 3D video systems entails the need for a substantial reduction in the amount of image information necessary for representation. Multiview image rendering algorithms based on depth data have radically reduced the number of images required to reconstruct a 3D scene. Nonetheless, the compression of depth maps still poses several challenges due to the particular nature and characteristics of the data. To this end, this paper outlines a depth representation technique, developed in our earlier work, that exploits the correlation intrinsically present between color intensity and depth images capturing a natural scene. In this technique, a segmentation-based algorithm that is backwards compatible with conventional video coding systems is implemented. The effectiveness of our previous technique is enhanced in this contribution by a region merging process on the segmented regions, which results in a decrease in the amount of information necessary for transmission or storage of multiview image data by a factor of 20.5 with respect to the reference H.264/AVC coding methodology. This is furthermore achieved whilst maintaining a 3D image reconstruction and viewing quality which is quasi identical to the referenced approach.
Keywords :
image reconstruction; image representation; image segmentation; rendering (computer graphics); video coding; 3D image reconstruction; 3D imagery; 3D scene; H.264/AVC coding; color intensity; depth map compression; image information; immersive 3D video systems; multiview image rendering; natural scene; region merging; segmentation-based depth representation; video coding; Cameras; Decoding; Image coding; Image color analysis; Image reconstruction; Image segmentation; Video coding; 3D scene processing; depth-map representation; multiview images; segmentation-based video coding;
Conference_Titel :
Advanced Technologies for Communications (ATC), 2012 International Conference on
Conference_Location :
Hanoi
Print_ISBN :
978-1-4673-4351-0
DOI :
10.1109/ATC.2012.6404243