Title :
Kinect-Like Depth Compression with 2D+T Prediction
Author :
Fu, Jingjing ; Miao, Dan ; Yu, Weiren ; Wang, Shiqi ; Lu, Yan ; Li, Shipeng
Author_Institution :
Media Comput. Group, Microsoft Res. Asia, Beijing, China
Abstract :
The Kinect-like depth compression becomes increasingly important due to the growing requirement on Kinect depth data transmission and storage. Considering the temporal inconsistency of Kinect depth introduced by the random depth measurement error, we propose 2D+T prediction algorithm aiming at fully exploiting the temporal depth correlation to enhance the Kinect depth compression efficiency. In our 2D+T prediction, each depth block is treated as a subsurface, and it the motion trend is detected by comparing with the reliable 3D reconstruction surface, which is integrated by accumulated depth information stored in depth volume. The comparison is implemented under the error tolerant rule, which is derived from the depth error model. The experimental results demonstrate our algorithm can remarkably reduce the bitrate cost and the compression complexity. And the visual quality of the 3D reconstruction results generated from our reconstructed depth is similar to that of traditional video compression algorithm.
Keywords :
correlation methods; data compression; image motion analysis; image reconstruction; video coding; 2D+T prediction algorithm; 3D reconstruction surface; Kinect depth compression efficiency; Kinect depth data transmission; Kinect-like depth compression; bitrate cost; compression complexity; data storage; depth block; depth error model; depth volume; error tolerant rule; motion trend; random depth measurement error; temporal depth correlation; video compression algorithm; visual quality; Bit rate; Cameras; Encoding; Image reconstruction; Prediction algorithms; Radiation detectors; Surface reconstruction; 2D+T prediction; Kinect-like depth; depth volume; lossy compression;
Conference_Titel :
Multimedia and Expo Workshops (ICMEW), 2012 IEEE International Conference on
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-4673-2027-6
DOI :
10.1109/ICMEW.2012.110