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An adaptive color image watermarking using RDWT-SVD and artificial bee colony based quality metric strength factor optimization

机译:采用RDWT-SVD和人工蜂菌落的基于质量度量强度因子优化的自适应彩色图像水印

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Image watermarking has emerged as a useful method for solving security issues like authenticity, copyright protection and rightful ownership of digital data. Existing watermarking schemes use either a binary or grayscale image as a watermark. This paper proposes a new robust and adaptive watermarking scheme in which both the host and watermark are the color images of the same size and dimension. The security of the proposed watermarking scheme is enhanced by scrambling both color host and watermark images using Arnold chaotic map. The host image is decomposed by redundant discrete wavelet transform (RDWT) into four sub-bands of the same dimension, and then approximate sub-band undergoes singular value decomposition (SVD) to obtain the principal component (PC). The scrambled watermark is then directly inserted into a principal component of scrambled host image, using an artificial bee colony optimized adaptive multi-scaling factor, obtained by considering both the host and watermark image perceptual quality to overcome the tradeoff between imperceptibility and robustness of the watermarked image. The hybridization of RDWT-SVD provides an advantage of no shift-invariant to achieve higher embedding capacity in the host image and preserving the imperceptibility and robustness by exploiting SVD properties. To measure the imperceptibility and robustness of the proposed scheme, both qualitative and quantitative evaluation parameters like peak signal to noise ratio (PSNR), structural similarity index metric (SSIM) and normalized cross-correlation (NC) are used. Experiments are performed against several image processing attacks and the results are analyzed and compared with other related existing watermarking schemes which clearly depict the usefulness of the proposed scheme. At the same time, the proposed scheme overcomes the major security problem of false positive error (FPE) that mostly occurs in existing SVD based watermarking schemes. (C) 2019 Elsevier B.V. All rights reserved.
机译:图像水印已成为解决安全问题,如真实性,版权保护和数字数据正确所有权的有用方法。现有的水印方案使用二进制或灰度图像作为水印。本文提出了一种新的鲁棒和自适应水印方案,其中主机和水印都是相同尺寸和尺寸的彩色图像。通过使用Arnold Chaotic Map扰乱颜色主机和水印图像,提高了所提出的水印方案的安全性。主机图像通过冗余离散小波变换(RDWT)分解成相同维度的四个子带,然后近似子带经历奇异值分解(SVD)以获得主组件(PC)。然后使用人造蜜蜂菌落优化的自适应多缩放因子直接插入加扰的宿主图像的主要成分中,通过考虑主机和水印图像感知质量来克服水印的难以察觉和鲁棒性之间的权衡图片。 RDWT-SVD的杂交提供了不换档不变的优点,以通过利用SVD属性来实现宿主图像中的更高的嵌入容量,并通过利用SVD属性来维护难忘性和鲁棒性。为了测量所提出的方案的难忘和稳健性,使用像峰值信号的定性和定量评估参数(PSNR),结构相似度指数度量(SSIM)和归一化交叉相关(NC)。针对几种图像处理攻击进行实验,并与其他相关的现有水印方案进行分析并与其他相关的水印方案进行分析,这清楚地描绘了所提出的方案的有用性。与此同时,该方案克服了主要发生在基于SVD的水印方案中的假误差(FPE)的主要安全问题。 (c)2019年Elsevier B.V.保留所有权利。

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