DocumentCode
1921845
Title
A Robust Image Watermarking Using Two Level DCT and Wavelet Packets Denoising
Author
Taherinia, A.H. ; Jamzad, M.
Author_Institution
Sharif Univ. of Technol., Tehran
fYear
2009
fDate
16-19 March 2009
Firstpage
150
Lastpage
157
Abstract
In this paper we present a blind low frequency watermarking scheme on gray level images, which is based on DCT transform and spread spectrum communications technique. We compute the DCT of non overlapping 8times8 blocks of the hostimage, then using the DC coefficients of each block we construct a low-resolution approximation image. We apply block based DCT on this approximation image, then a pseudo random noise sequence is added into its high frequencies. For detection, we extract the approximation image from the watermarked image, then the same pseudo random noise sequence is generated, and its correlation is computed with high frequencies of the watermarked approximation image. In our method, higher robustness is obtained because of embedding the watermark in low frequency. In addition, higher imperceptibility is gained by scattering the watermark´s bit in different blocks. We evaluated the robustness of the proposed technique against many common attacks such as JPEG compression, additive Gaussian noise and median filter. Compared with related works, our method proved to be highly resistant in cases of compression and additive noise, while preserving high PSNR for the watermarked images.
Keywords
AWGN; data compression; discrete cosine transforms; feature extraction; image coding; image denoising; median filters; random sequences; watermarking; wavelet transforms; JPEG compression; additive Gaussian noise; blind low frequency watermarking scheme; discrete cosine transform; gray level images; low-resolution approximation image; median filter; pseudo random noise sequence; robust image watermarking; spread spectrum communications technique; two level DCT transform; wavelet packets denoising; Additive noise; Discrete cosine transforms; Frequency; Image coding; Low-frequency noise; Noise reduction; Noise robustness; Spread spectrum communication; Watermarking; Wavelet packets; Blind Digital Watermarking; DCT; JPEG compression; Spread Spectrum Watermarking;
fLanguage
English
Publisher
ieee
Conference_Titel
Availability, Reliability and Security, 2009. ARES '09. International Conference on
Conference_Location
Fukuoka
Print_ISBN
978-1-4244-3572-2
Electronic_ISBN
978-0-7695-3564-7
Type
conf
DOI
10.1109/ARES.2009.132
Filename
5066467
Link To Document