1 April 2009 Pyramid-structure-based reversible fragile watermarking
F. H. Yeh, Gregory C. Lee
Author Affiliations +
Abstract
This paper presents a novel reversible fragile watermarking scheme based on a pyramidal structure. The similarities among the detail components of a pyramid-structure image are exploited to select appropriate embedding areas, and then the cryptographic watermarks are embedded into selected wavelet coefficients using a difference-expansion method. An adaptive embedding method is proposed to avoid needing extra space to store parts of the original image and the watermark location map. The cryptographic signatures are created using a watermark generation function that comprises a hashing function and a public-key encryption function. To resist counterfeiting attack, block relationships are created using toral automorphism to increase the security and implementation practicability. Experimental results show that the proposed reversible fragile watermarking scheme can successfully obtain the original image if the protected image is unaltered, and unauthorized manipulations can be correctly identified and localized even when protected images undergo a cropping attack.
©(2009) Society of Photo-Optical Instrumentation Engineers (SPIE)
F. H. Yeh and Gregory C. Lee "Pyramid-structure-based reversible fragile watermarking," Optical Engineering 48(4), 047001 (1 April 2009). https://doi.org/10.1117/1.3115473
Published: 1 April 2009
Lens.org Logo
CITATIONS
Cited by 3 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Digital watermarking

Wavelets

Image restoration

Image compression

Image processing

Optical engineering

Digital imaging

RELATED CONTENT

Research on image registration based on D-Nets
Proceedings of SPIE (June 19 2017)
Lossless data embedding for all image formats
Proceedings of SPIE (April 29 2002)
Image compression for radiology and telemedicine
Proceedings of SPIE (September 21 1994)

Back to Top