DocumentCode
1505157
Title
A Digital Blind Watermarking for Depth-Image-Based Rendering 3D Images
Author
Lin, Yu-Hsun ; WU, JA-LING
Author_Institution
Nat. Taiwan Univ., Taipei, Taiwan
Volume
57
Issue
2
fYear
2011
fDate
6/1/2011 12:00:00 AM
Firstpage
602
Lastpage
611
Abstract
The content protection for image-based 3D data is getting more importance with the advance of low cost 3D display devices. The depth-image-based rendering (DIBR) 3D image is one of the image-based 3D data which consists of the center image and the depth image generated by the content provider. The left-eye image and the right-eye image are rendered from the center image and the depth image at the content consumer side. The blind watermarking for DIBR 3D image is rarely studied in the literature. In this paper, a novel blind multiple watermarking scheme is proposed to deal with the content protection problem of DIBR 3D images. Besides the usual requirement of mutual orthogonality among reference patterns for multiple watermark embedding, we found that proper embedding order plays an even more important role in watermarking the DIBR 3D images. Experimental results show that the proposed scheme is robust against the JPEG compression and noise adding attacks. More interestingly, it is found that the proposed watermarking can also tolerate large range variations of the depth image during rendering.
Keywords
image coding; image watermarking; rendering (computer graphics); 3D display devices; DIBR 3D image; JPEG compression; blind multiple watermarking scheme; center image; content consumer side; content protection problem; content provider; depth image; depth-image-based rendering 3D images; digital blind watermarking; embedding order; image-based 3D data; left-eye image; multiple watermark embedding; mutual orthogonality; noise adding attacks; reference patterns; right-eye image; Image color analysis; Noise; Pixel; Rendering (computer graphics); Robustness; Three dimensional displays; Watermarking; Blind watermarking; color plus depth map 3D image; depth-image-based Rendering (DIBR); multiple watermarking;
fLanguage
English
Journal_Title
Broadcasting, IEEE Transactions on
Publisher
ieee
ISSN
0018-9316
Type
jour
DOI
10.1109/TBC.2011.2131470
Filename
5756463
Link To Document