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A robust blind hybrid image watermarking scheme in RDWT-DCT domain using Arnold scrambling

机译:使用Arnold加扰的RDWT-DCT域中的鲁棒盲混合图像水印方案

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摘要

To compromise between imperceptibility and robustness property of robust image watermarking technique, a RDWT-DCT based blind image watermarking scheme using Arnold scrambling is presented in this paper. Firstly, RDWT (Redundant Discrete Wavelet Transform) is applied to each gray scale cover image block after the image is decomposed into fixed size non overlapping blocks. Secondly, the binary watermark logo is encrypted by Arnold chaotic map and reshaped to a sequence to improve the security of the logo. In the subsequent step, DCT (Discrete Cosine Transform) is employed on each LH subband of the non-overlapping host image block. Finally, after zigzag scanning of each DCT block a binary bit of watermark is embedded into each block by adjusting some middle significant AC coefficients using repetition code. Experimental results show that robustness is achieved by recovering satisfactory watermark data from the reconstructed cover image after applying common geometric transformation attacks (like rotation, cropping, scaling, shearing and deletion of lines or column operation etc.), common enhancement technique attacks (like lowpass filtering, histogram equalization, sharpening, gamma correction, noise addition etc.) and JPEG compression attacks. The proposed scheme is also tested to verify the robustness performance against standard benchmark software "Checkmark" and satisfactory results are achieved against the Checkmark attacks such as Hard and Soft Thresholding, Template Removal, Warping, Dithering, Remodulation and Downsampling/Upsampling etc.
机译:为了在鲁棒性图像水印技术的不可感知性和鲁棒性之间取得平衡,提出了一种基于Arnold加扰的基于RDWT-DCT的盲图像水印方案。首先,在将图像分解成固定大小的非重叠块之后,将RDWT(冗余离散小波变换)应用于每个灰度覆盖图像块。其次,二进制水印徽标通过Arnold混沌映射图进行加密,并重新整形为一个序列,以提高徽标的安全性。在随后的步骤中,在不重叠的主机图像块的每个LH子带上采用DCT(离散余弦变换)。最后,在对每个DCT块进行锯齿形扫描之后,通过使用重复码调整一些中间有效AC系数,将水印的二进制位嵌入到每个块中。实验结果表明,在应用常见的几何变换攻击(例如旋转,裁剪,缩放,剪切和删除线或列操作等),常见的增强技术攻击(例如低通)之后,通过从重建的封面图像中恢复令人满意的水印数据可实现鲁棒性过滤,直方图均衡,锐化,伽玛校正,噪声添加等)和JPEG压缩攻击。还测试了所提出的方案,以针对标准基准测试软件“ Checkmark”验证其鲁棒性,并且针对诸如硬阈值和软阈值,模板移除,翘曲,抖动,重新调制和下采样/上采样等Checkmark攻击获得了令人满意的结果。

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