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Blind image watermarking method based on linear canonical wavelet transform and QR decomposition

机译:基于线性经典小波变换和QR分解的盲图像水印方法

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Inspired by the fact that wavelet transform can be written as a classical convolution form, a new linear canonical wavelet transform (LCWT) based on generalised convolution theorem associated with linear canonical transform (LCT) is proposed recently. The LCWT not only inherits the advantages of multi-resolution analysis of wavelet transform (WT), but also has the capability of image representations in the LCT domain. Based on these good properties, the authors propose a novel image watermarking method using LCWT and QR decomposition. Compared with the existing image watermarking methods based on discrete WT or QR, this novel image watermarking method provides more flexibility in the image watermarking. Peak signal-to-noise ratio, normalised cross and structural similarity index measure are used to verify the advantages of the proposed method in simulation experiments. The experiment results show that the proposed method is not only feasible, but also robust to some geometry attacks and image processing attacks.
机译:受到小波变换可以写成经典卷积形式的启发,最近提出了一种基于广义卷积定理的线性正则小波变换(LCWT)。 LCWT不仅继承了小波变换(WT)的多分辨率分析的优势,而且还具有在LCT域中进行图像表示的能力。基于这些良好的特性,作者提出了一种使用LCWT和QR分解的新颖图像水印方法。与现有的基于离散WT或QR的图像水印方法相比,这种新颖的图像水印方法在图像水印方面提供了更大的灵活性。峰值信噪比,归一化交叉和结构相似性指标被用来验证该方法在仿真实验中的优势。实验结果表明,该方法不仅可行,而且对某些几何攻击和图像处理攻击具有较强的鲁棒性。

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