Title :
Reference Sharing Mechanism for Watermark Self-Embedding
Author :
Zhang, Xinpeng ; Wang, Shuozhong ; Qian, Zhenxing ; Feng, Guorui
Author_Institution :
Sch. of Commun. & Inf. Eng., Shanghai Univ., Shanghai, China
Abstract :
This paper proposes two novel self-embedding watermarking schemes based upon a reference sharing mechanism, in which the watermark to be embedded is a reference derived from the original principal content in different regions and shared by these regions for content restoration. After identifying tampered blocks, both the reference data and the original content in the reserved area are used to recover the principal content in the tampered area. By using the first scheme, the original data in five most significant bit layers of a cover image can be recovered and the original watermarked image can also be retrieved when the content replacement is not too extensive. In the second scheme, the host content is decomposed into three levels, and the reference sharing methods with different restoration capabilities are employed to protect the data at different levels. Therefore, the lower the tampering rate, the more levels of content data are recovered, and the better the quality of restored results.
Keywords :
content-based retrieval; image restoration; image retrieval; image watermarking; content replacement; content restoration; cover image; data protection; original content; original watermarked image; reference data; reference sharing mechanism; reference sharing methods; restoration capability; self-embedding watermarking schemes; tampered blocks identification; tampering rate; watermark self-embedding; Data mining; Equations; Image restoration; Mathematical model; PSNR; Pixel; Watermarking; Fragile watermarking; image authentication; self-embedding;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2010.2066981