Title :
LBP-Guided Depth Image Filter
Author :
Rui Zhong ; Ruimin Hu ; Zhongyuan Wang ; Lu Liu ; Zhen Han
Author_Institution :
Nat. Eng. Res. Center for Multimedia Software, Wuhan Univ., Wuhan, China
Abstract :
The multi-view video plus depth (MVD) format has been put forward for the call for proposals in free view video (FVV) and 3DTV. Since representing the 3D scene geometry, depth maps are used for synthesizing virtual views. However, compression artifacts of the depth images always lead to geometry distortions in synthesized views. By exploiting LBP features of the corresponding color samples, we propose a novel local binary pattern (LBP) guided depth filter which enables the local neighborhood samples those are in the same object of the current pixel to be filtering input. In recognition of its ability for describing the object edges, the LBP operator is used to calculate the weighted values of the local depth pixels for the depth-map filter. Furthermore, the filter is incorporated into the framework of H.264/MVC as an in-loop filter. The experimental results demonstrate that the proposed approach offers 0.45dB and 0.66dB average PSNR gains in terms of video rendering quality and depth coding efficiency, as well as significant subjective improvement in rendering views.
Keywords :
data compression; feature extraction; filtering theory; image representation; image sampling; object recognition; three-dimensional television; video coding; 3D scene geometry representation; 3DTV; FVV; H.264-MVC framework; LBP features; LBP operator; LBP-guided depth image filter; MVD format; average PSNR gains; color samples; depth image compression artifacts; depth maps; free view video; gain 0.45 dB; gain 0.66 dB; geometry distortions; in-loop filter; input filtering; local binary pattern guided depth filter; local depth pixel weighted value calculation; local neighborhood samples; multiview video plus depth format; object edge recognition; video depth coding efficiency; video rendering quality; virtual view synthesis; Color; Educational institutions; Encoding; Geometry; Multimedia communication; Rendering (computer graphics); Robustness;
Conference_Titel :
Data Compression Conference (DCC), 2013
Conference_Location :
Snowbird, UT
Print_ISBN :
978-1-4673-6037-1
DOI :
10.1109/DCC.2013.115