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A Color Image Watermarking Approach Based on Synchronization Correction

机译:基于同步校正的彩色图像水印方法

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Digital watermarking has been proposed as an effective technology of copyright protection and content authentication, yet up to now, research on the robust watermarking against geometric attacks is still a challenging task. This paper presents a novel robust watermarking algorithm in nonsubsampled shearlet transform (NSST) domain using quaternion polar harmonic transform (PHT) and least squares support vector regression (LS-SVR), which is a recently developed geometric correction algorithm for digital color image. The major innovative works of the proposed approach lie in that (1) the NSST is applied to embed the watermark, which can provide the image function with nearly optimal approximation and employ fully the properties of human visual system (HVS), (2) the robust 2D transform, namely quaternion PHT is introduced to represent the characteristics of color image, and (3) the novel synchronous correction method is proposed using the excellent LS-SVR and quaternion PHTs, which can accurately estimate the geometric distortions parameters. In our experiments, we applied the proposed method to the standard color image test dataset, and the experimental results demonstrate that the proposed algorithm is not only invisible, but also robustness against common signal processing operations and geometric attacks.
机译:已经提出数字水印作为版权保护和内容认证的有效技术,但是到目前为止,针对几何攻击的鲁棒水印的研究仍然是一项艰巨的任务。本文提出了一种新的鲁棒水印算法,该算法使用四元数极性谐波变换(PHT)和最小二乘支持向量回归(LS-SVR)在非下采样的小波变换(NSST)域中,这是一种最近开发的数字彩色图像几何校正算法。该方法的主要创新之处在于:(1)应用NSST嵌入水印,它可以提供接近最佳近似的图像功能,并充分利用人类视觉系统(HVS)的特性,(2)引入了鲁棒的2D变换,即四元数PHT来表示彩色图像的特征;(3)提出了一种使用出色的LS-SVR和四元数PHT的同步校正方法,该方法可以准确估计几何失真参数。在我们的实验中,我们将提出的方法应用于标准的彩色图像测试数据集,并且实验结果表明,提出的算法不仅是不可见的,而且还具有针对常见信号处理操作和几何攻击的鲁棒性。

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