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Normalized blind STDM watermarking scheme for images and PDF documents robust against fixed gain attack

机译:用于图像和PDF文件的标准化盲人STDM水印方案对固定增益攻击的鲁棒

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摘要

Spread Transform Dither Modulation (STDM), a special case of Quantization Index Modulation (QIM), has been widely used in digital watermarking. STDM has good performance in robustness against re-quantization and random noise attacks, but it is largely vulnerable to the Fixed Gain Attack (FGA). In addition to digital images and videos watermarking applications, copyright protection for digital text such as Portable Document Format (PDF) has received particular attention and interest. In this paper, we modify the STDM watermarking scheme by making the quantization step dependent on the original samples during the embedding process and on the watermarked samples during the decoding process to resist the FGA attack and enhance the robustness against the Additive White Gaussian Noise (AWGN) attack and JPEG compression attack in both the spatial domain and frequency domain regardless of the source of elements used as cover work. Experimentations have been conducted distinctly on digital images and text PDF documents. The tested images were watermarked with a uniform fidelity, where SSIM is fixed to 0.982 and 0.953. Our approach achieves significant robustness against the FGA attack with an improvement of 98% in terms of Bit Error Rates (BER) compared to traditional STDM. As for the AWGN attack, an improvement of 21% is shown. The proposed method also presents robustness against a variety of filtering and geometric attacks, while preserving a high level of transparency.
机译:扩展变换抖动调制(STDM),量化指数调制(QIM)的特殊情况,已广泛用于数字水印。 STDM对重新量化和随机噪声攻击的鲁棒性具有良好的性能,但它大大容易受到固定增益攻击(FGA)的影响。除了数字图像和视频水印应用之外,数字文本(如便携式文档格式(PDF))的版权保护还接受了特别的关注和兴趣。在本文中,我们通过使依赖于嵌入过程中的原始样本以及在解码过程中的水印样本上的量化步骤来修改STDM水印方案,以抵抗FGA攻击并增强对添加剂白色高斯噪声的鲁棒性(AWGN )无论用作覆盖工作的元素源,都在空间域和频域中的攻击和JPEG压缩攻击。在数字图像和文本PDF文件中明确进行了实验。测试的图像用均匀的保真度水印,其中SSIM固定在0.982和0.953。与传统的STDM相比,我们的方法在比特错误率(BER)方面,对FGA攻击进行了重大稳健性。至于AWGN攻击,显示了21%的提高。该方法还具有针对各种滤波和几何攻击的鲁棒性,同时保留了高水平的透明度。

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