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Wavelet transform modulus maxima-based robust logo watermarking

机译:基于小波变换模数最大的鲁棒徽标水印

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摘要

Digital image watermarking is used to protect the copyright of digital images. In this study, a novel blind logo image watermarking technique for RGB images is proposed. The proposed technique exploits the error correction capabilities of the human visual system. It embeds two different watermarks in the wavelet/multiwavelet domains. The two watermarks are embedded in different sub-bands, are orthogonal, and serve different purposes. One is a high capacity multi-bit watermark used to embed the logo, and the other is a 1-bit watermark which is used for the detection and reversal of geometrical attacks. The two watermarks are both embedded using a spread spectrum approach, based on a pseudo-random noise sequence and a unique secret key. Robustness against geometric attacks such as rotation, scaling, and translation (RST) is achieved by embedding the 1-bit watermark in the wavelet transform modulus maximacoefficients of the wavelet transform. The experimental results show that the proposed watermarking technique has better distortion parameter detection capabilities and compares favourably against existing techniques in terms of robustness against geometrical attacks such as RST.
机译:数字图像水印用于保护数字图像的版权。在该研究中,提出了一种用于RGB图像的新型盲徽图像水印技术。所提出的技术利用人类视觉系统的纠错能力。它在小波/多灯泡域中嵌入了两个不同的水印。两个水印嵌入在不同的子带中,是正交的,并提供不同的目的。一个是用于嵌入徽标的高容量多位水印,另一个是一个1位水印,用于检测和逆转几何攻击。基于伪随机噪声序列和唯一的秘密密钥,两种水印都使用扩频方法嵌入。通过在小波变换的小波变换模量最大化的小波变换模量中嵌入1位水印来实现诸如旋转,缩放和翻译(RST)的几何攻击的鲁棒性。实验结果表明,所提出的水印技术具有更好的失真参数检测能力,并在对诸如RST等几何攻击的鲁棒性方面对现有技术进行比较。

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