Non-blind digital watermarking with enhanced image embedding capacity using DMeyer wavelet decomposition, SVD, and DFT
- Authors: Savakar D.G.1, Ghuli A.2,3
-
Affiliations:
- Department of Computer Science
- Department of Computer Applications
- Affiliated to Visvesvaraya Technological University
- Issue: Vol 27, No 3 (2017)
- Pages: 511-517
- Section: Representation, Processing, Analysis, and Understanding of Images
- URL: https://journals.rcsi.science/1054-6618/article/view/195141
- DOI: https://doi.org/10.1134/S1054661817030257
- ID: 195141
Cite item
Abstract
Amongst the requirements of digital color image watermarking–capacity is the major component to be addressed effectively. To address the same we proposed a method for inserting a color image into another color image of same size using non-blind watermarking scheme. From this method we achieved reasonably good perceptual similarity by measuring acceptable peak signal to noise ratio (PSNR) and structural similarity (SSIM) index. The method uses DMeyer single level discrete wavelet transformation (DWT) to get approximation coefficients-where most of the image information is stored, discrete Fourier transformation (DFT) is used to get set of components which are sufficient to describe the whole image and singular value decomposition (SVD) to get reliable orthogonal matrix of computationally sustainable components of the transformed image. The method is robust against attacks like–rotation, cropping, JPEG compression and for noises–salt and pepper, gaussian, speckle.
Keywords
About the authors
D. G. Savakar
Department of Computer Science
Author for correspondence.
Email: dgsavakar@gmail.com
India, Belagavi, Karnataka, 591156
A. Ghuli
Department of Computer Applications; Affiliated to Visvesvaraya Technological University
Email: dgsavakar@gmail.com
India, Vijayapur, Karnataka, 586103; Belagavi, Karnataka
Supplementary files
