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Robust hybrid watermarking techniques for different color imaging systems

机译:适用于不同彩色成像系统的鲁棒混合水印技术

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Digital watermarking is an efficient and promising mechanism for protecting the copyright of the transmitted multimedia information. Thus, this paper presents two robust hybrid color image watermarking techniques. The objective of the proposed watermarking techniques is to increase the immunity of the watermarked color images against attacks and to achieve adequate perceptual quality. The first proposed hybrid technique is the homomorphic transform based Singular Value Decomposition (SVD) in Discrete Wavelet Transform (DWT) domain. Firstly, the DWT is employed to divide an image into non-overlapping bands. Then, the reflectance components of the LL sub-bands are extracted using the homomorphic transform of each of the RGB (Red, Green, and Blue) color image components. After that, the watermark is embedded by applying the SVD on these reflectance components. The second proposed hybrid technique is the three-level Discrete Stationary Wavelet Transform (DSWT) in Discrete Cosine Transform (DCT) domain. In this technique, the RGB components of the host color image are separated, and then the DCT is applied on each separated color component. The three-level DSWT is employed to divide the DCT components into four sub-bands. These sub-bands are the A, H, V, and D matrices, which have the same host image size. The watermark image is then embedded into the determined matrix A. The two proposed hybrid watermarking techniques are compared with the current state-of-the-art techniques. This paper also presents a comparative study of the proposed techniques for different color imaging systems to determine their robustness and stability. The comparisons are based on the subjective visual results to detect any degradation in the watermarked image in addition to the objective results of the Peak Signal-to-Noise Ratio (PSNR) of the watermarked image, and the Normalized Correlation (NC) of the extracted watermark to test and evaluate the performance efficiency of the proposed watermarking techniques. Extensive experimental results show that the proposed hybrid watermarking techniques are both robust and have adequate immunity against different types of attacks compared to the traditional watermarking techniques. They achieve not only very good perceptual quality with appreciated PSNR values, but also high correlation coefficient values in the presence of different multimedia attacks.
机译:数字水印是一种有效且有前途的机制,用于保护传输的多媒体信息的版权。因此,本文提出了两种鲁棒的混合彩色图像水印技术。提出的水印技术的目的是增加水印的彩色图像对攻击的免疫力并获得足够的感知质量。首先提出的混合技术是离散小波变换(DWT)域中基于同态变换的奇异值分解(SVD)。首先,采用DWT将图像划分为不重叠的频带。然后,使用每个RGB(红色,绿色和蓝色)彩色图像分量的同态变换来提取LL子带的反射分量。之后,通过在这些反射率组件上应用SVD嵌入水印。第二种提出的混合技术是离散余弦变换(DCT)域中的三级离散平稳小波变换(DSWT)。在该技术中,将主体彩色图像的RGB分量分离,然后将DCT应用于每个分离的彩色分量。采用三级DSWT将DCT分量划分为四个子带。这些子带是A,H,V和D矩阵,它们具有相同的主机图像大小。然后将水印图像嵌入到确定的矩阵A中。将两种提出的混合水印技术与当前的最新技术进行比较。本文还提出了对不同彩色成像系统所提出技术的比较研究,以确定其鲁棒性和稳定性。这些比较基于主观视觉结果,以检测水印图像的峰值信噪比(PSNR)和提取图像的归一化相关性(NC)的客观结果,从而检测出水印图像中的任何劣化。水印,以测试和评估所提出的水印技术的性能效率。大量的实验结果表明,与传统的水印技术相比,提出的混合水印技术既健壮,又具有针对不同类型攻击的足够的免疫力。它们不仅具有令人赞赏的PSNR值,还具有非常好的感知质量,而且在存在不同的多媒体攻击的情况下,还具有很高的相关系数值。

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