TY - GEN
T1 - An information fusion algorithm based on dopplerlet-hough transformation
AU - Deng, Minghui
AU - Zeng, Qingshuang
AU - Zhang, Lanying
PY - 2013
Y1 - 2013
N2 - In this paper, a robust image watermarking method with S-Hough transformation is proposed which is robust against geometric distortion. This watermarking is detected by a linear frequency change. 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. But the two-dimensional Radon-Wigner transformation needs too much difficult computing. We propose a modified Hough transformation to provide improved energy concentration of the Dopplerlet transform. The proposed scheme can resolve the time-frequency localization in a better way than the standard Dopplerlet transformation. The watermark is embedded in the 1D improved Dopplerlet transformation domains. The watermark thus generated is invisible and performs well in 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, a robust image watermarking method with S-Hough transformation is proposed which is robust against geometric distortion. This watermarking is detected by a linear frequency change. 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. But the two-dimensional Radon-Wigner transformation needs too much difficult computing. We propose a modified Hough transformation to provide improved energy concentration of the Dopplerlet transform. The proposed scheme can resolve the time-frequency localization in a better way than the standard Dopplerlet transformation. The watermark is embedded in the 1D improved Dopplerlet transformation domains. The watermark thus generated is invisible and performs well in 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 - Dopplerlet-hough transform
KW - Geometrical attack
KW - Information fusion
UR - https://www.scopus.com/pages/publications/84871681717
U2 - 10.4028/www.scientific.net/AMR.605-607.2211
DO - 10.4028/www.scientific.net/AMR.605-607.2211
M3 - 会议稿件
AN - SCOPUS:84871681717
SN - 9783037855447
T3 - Advanced Materials Research
SP - 2211
EP - 2216
BT - Advanced Designs and Researches for Manufacturing
T2 - 2nd International Conference on Materials and Products Manufacturing Technology, ICMPMT 2012
Y2 - 22 September 2012 through 23 September 2012
ER -