一种新的鲁棒性水印算法
A New Robust Watermarking Algorithm
DOI: 10.12677/CSA.2015.54015, PDF, HTML, XML, 下载: 2,297  浏览: 4,871 
作者: 郭凌霄, 王 晅:陕西师范大学物理学与信息技术学院,陕西 西安
关键词: Radon变换离散小波变换奇异值分解盲水印鲁棒性Radon Transform Discrete Wavelet Transform Singular Value Decomposition Blind Watermarking Robustness
摘要: 本文提出了一种新的基于Radon变换、离散小波变换(DWT)与分块奇异值分解(SVD)相结合的数字图像水印算法。该算法利用Radon变换、小波变换和矩阵奇异值本身的特性,将原始图像进行Radon变换,然后将变换之后的图像作小波分解并将小波分解得到的高频子带进行分块,对每一块进行奇异值分解后,选取每块中最大的奇异值通过量化的方法嵌入水印信息。水印的检测和提取不需要原始图像。经过仿真实验证明,该方法对于旋转,缩放,平移等攻击具有很好鲁棒性的同时,对于普通的加噪,滤波,JPEG压缩攻击也具有很好的鲁棒性。
Abstract: This paper presents a new robust digital watermarking algorithm based on Radon transform, dis-crete wavelet transform (DWT) and block singular value decomposition (SVD). This algorithm uses the properties of the Radon transform, wavelet transform and singular value, and needs to be done in five steps: firstly, making the Radon transform of the original image; secondly, doing discrete wavelet transform (DWT) of the resulting image; thirdly, taking the high-frequency sub-band divided into blocks; fourthly, doing singular value decomposition (SVD) for every block; finally, selecting each largest singular value to embed the watermark information by the quantization method. The algorithm is a blind watermarking algorithm, because we can detect and extract the watermark information without the original image. The simulation results show that the method has good robustness not only for the rotation, scaling, translation and other attacks, but also for ordinary adding noise, filtering, and JPEG compression attack.
文章引用:郭凌霄, 王晅. 一种新的鲁棒性水印算法[J]. 计算机科学与应用, 2015, 5(4): 116-124. http://dx.doi.org/10.12677/CSA.2015.54015

参考文献

[1] 王颖, 黄志蓓 (2003) 数字水印. 电子工业出版社, 北京.
[2] 马兰, 张新荣 (2003) 数字水印技术述评. 电视技术, 4, 56-59 ,71.
[3] 陶峰 (2009) 基于DWT-SVD的图像盲水印研究. 信息化纵横, 5, 62-65.
[4] 刘瑞桢, 谭铁牛 (2001) 基于奇异值分解的数字图像水印方法. 电子学报, 2, 168-171.
[5] 王颖, 肖俊, 王蕴红 (2007) 数字水印原理与技术. 北京科学出版社, 北京.
[6] Rastegar, S., Namazi, F., Yaghmaie, K. and Aliabadian, A. (2011) Hybrid watermarking algorithm based on singular value decomposition and radon transform. International Journal of Electronics and Communications (AEÜ), 65, 658-663.
[7] Vahedi, E., Zoroofi, R.A. and Shiva Toward, M. (2012) A new wavelet-based watermarking approach for color images using bio-inspired optimization principles digit. Signal Process, 22, 153-162.