TY - GEN
T1 - Robust image watermarking against shearing based on Hilbert-Huang transformation
AU - Deng, Minghui
AU - Zeng, Qingshuang
AU - Zhou, Xiuli
PY - 2010
Y1 - 2010
N2 - In this paper, we introduce a robust image watermarking method based on Hilbert-Huang Transform against geometric distortion. This watermarking is detected by a linear frequency change. The Hilbert-Huang transformation is used to detect the watermark. The chirp signals are used as watermarks and this type of signals is resistant to all stationary filtering methods and exhibits geometrical symmetry. In the two-dimensional Radon-Wigner transformation domain, the chirp signals used as watermarks change only its position in space/spatial-frequency distribution, after applying linear geometrical attack, such as scale rotation and cropping. But the two-dimensional Radon-Wigner transformation needs too much difficult computing. So the image is put into a series of 1D signal by choosing scalable local time windows. The watermark embedded in the HHT transformation domain. The watermark thus generated is invisible and performs well in StirMark test and is robust to geometrical attacks. Compared with other watermarking algorithms, this algorithm is more robust, especially against geometric distortion, while having excellent frequency properties.
AB - In this paper, we introduce a robust image watermarking method based on Hilbert-Huang Transform against geometric distortion. This watermarking is detected by a linear frequency change. The Hilbert-Huang transformation is used to detect the watermark. The chirp signals are used as watermarks and this type of signals is resistant to all stationary filtering methods and exhibits geometrical symmetry. In the two-dimensional Radon-Wigner transformation domain, the chirp signals used as watermarks change only its position in space/spatial-frequency distribution, after applying linear geometrical attack, such as scale rotation and cropping. But the two-dimensional Radon-Wigner transformation needs too much difficult computing. So the image is put into a series of 1D signal by choosing scalable local time windows. The watermark embedded in the HHT transformation domain. The watermark thus generated is invisible and performs well in StirMark test and is robust to geometrical attacks. Compared with other watermarking algorithms, this algorithm is more robust, especially against geometric distortion, while having excellent frequency properties.
KW - Digital watermarking
KW - Geometrical attack
KW - Hilbert-Huang transformation
UR - https://www.scopus.com/pages/publications/79951595227
U2 - 10.1109/ICIECS.2010.5678334
DO - 10.1109/ICIECS.2010.5678334
M3 - 会议稿件
AN - SCOPUS:79951595227
SN - 9781424479412
T3 - 2nd International Conference on Information Engineering and Computer Science - Proceedings, ICIECS 2010
BT - 2nd International Conference on Information Engineering and Computer Science - Proceedings, ICIECS 2010
T2 - 2nd International Conference on Information Engineering and Computer Science, ICIECS 2010
Y2 - 25 December 2010 through 26 December 2010
ER -