DocumentCode
2728496
Title
Efficient Depth Image Compression Using Accurate Depth Discontinuity Detection and Prediction
Author
Farrugia, Reuben A.
Author_Institution
Dept. of Commun. & Comput. Eng., Univ. of Malta, Msida, Malta
fYear
2012
fDate
25-29 Nov. 2012
Firstpage
29
Lastpage
35
Abstract
This paper presents a novel depth image compression algorithm for both 3D Television (3DTV) and Free Viewpoint Television (FVTV) services. The proposed scheme adopts the K-means clustering algorithm to segment the depth image into K segments. The resulting segmented image is losslessly compressed and transmitted to the decoder. The depth image is then compressed using a bi-modal block encoder, where the smooth blocks are predicted using direct spatial prediction. On the other hand, blocks containing depth discontinuities are approximated using a novel depth discontinuity predictor. The residual information is then compressed using a lossy compression strategy and transmitted to the receiver. Simulation results indicate that the proposed scheme outperforms the state of the art spatial video coding systems available today such as JPEG and H.264/AVC Intra. Moreover, the proposed scheme manages to outperform specialized depth image compression algorithms such as the one proposed by Zanuttigh and Cortelazzo.
Keywords
image coding; image segmentation; pattern clustering; three-dimensional television; video coding; 3D television services; 3DTV services; FVTV services; H.264/AVC intra; JPEG; art spatial video coding systems; bimodal block encoder; decoder; depth discontinuity detection; depth discontinuity prediction; depth discontinuity predictor; depth image compression algorithm; direct spatial prediction; free viewpoint television services; k-means clustering algorithm; lossy compression strategy; residual information; segmented image; Compression algorithms; Decoding; Image coding; Image segmentation; Streaming media; Transform coding; Video coding; 3D video compression; depth-image compression; predictive coding; segmentation;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Image Technology and Internet Based Systems (SITIS), 2012 Eighth International Conference on
Conference_Location
Naples
Print_ISBN
978-1-4673-5152-2
Type
conf
DOI
10.1109/SITIS.2012.15
Filename
6395069
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