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A robust image watermarking technique based on quantization noise visibility thresholds

机译:基于量化噪声可见度阈值的鲁棒图像水印技术

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A tremendous amount of digital multimedia data is broadcasted daily over the internet. Since digital data can be very quickly and easily duplicated, intellectual property right protection techniques have become important and first appeared about fifty years ago (see [I.J. Cox, M.L. Miller, The First 50 Years of Electronic Watermarking, EURASIP J. Appl. Signal Process. 2 (2002) 126-132. [52]] for an extended review). Digital watermarking was born. Since its inception, many watermarking techniques have appeared, in all possible transformed spaces. However, an important lack in watermarking literature concerns the human visual system models. Several human visual system (HVS) model based watermarking techniques were designed in the late 1990's. Due to the weak robustness results, especially concerning geometrical distortions, the interest in such studies has reduced. In this paper, we intend to take advantage of recent advances in HVS models and watermarking techniques to revisit this issue. We will demonstrate that it is possible to resist too many attacks, including geometrical distortions, in HVS based watermarking algorithms. The perceptual model used here takes into account advanced features of the HVS identified from psychophysics experiments conducted in our laboratory. This model has been successfully applied in quality assessment and image coding schemes M. Carnec, P. Le Callet, D. Barba, An image quality assessment method based on perception of structural information, IEEE Internat. Conf. Image Process. 3 (2003) 185-188, N. Bekkat, A. Saadane, D. Barba, Masking effects in the quality assessment of coded images, in: SPIE Human Vision and Electronic Imaging V, 3959 (2000) 211-219. In this paper the human visual system model is used to create a perceptual mask in order to optimize the watermark strength. The optimal watermark obtained satisfies both invisibility and robustness requirements. Contrary to most watermarking schemes using advanced perceptual masks, in order to best thwart the de-synchronization problem induced by geometrical distortions, we propose here a Fourier domain embedding and detection technique optimizing the amplitude of the watermark. Finally, the robustness of the scheme obtained is assessed against all attacks provided by the Stirmark benchmark. This work proposes a new digital rights management technique using an advanced human visual system model that is able to resist various kind of attacks including many geometrical distortions.
机译:每天都会通过Internet广播大量的数字多媒体数据。由于可以非常快速,轻松地复制数字数据,因此知识产权保护技术已经变得很重要,大约在50年前就出现了(请参阅[IJ Cox,ML Miller,电子水印的前50年,EURASIP J. Appl。Signal Process 2(2002)126-132。[52]]进行扩展审查)。数字水印诞生了。自成立以来,在所有可能的转换空间中出现了许多水印技术。但是,水印文献的一个重要不足是人类视觉系统模型。在1990年代后期,设计了几种基于人类视觉系统(HVS)模型的水印技术。由于鲁棒性结果较弱,尤其是在几何变形方面,因此对此类研究的兴趣降低了。在本文中,我们打算利用HVS模型和水印技术的最新进展重新审视此问题。我们将证明,在基于HVS的水印算法中,有可能抵御太多的攻击,包括几何失真。这里使用的感知模型考虑了从我们实验室进行的心理物理学实验中识别出的HVS的高级功能。该模型已成功应用于质量评估和图像编码方案中。M. Carnec,P。Le Callet,D。Barba,一种基于结构信息感知的图像质量评估方法,IEEE Internat。 Conf。图像处理。 3(2003)185-188,N。Bekkat,A。Saadane,D。Barba,编码图像质量评估中的掩蔽效果,见:SPIE Human Vision and Electronic Imaging V,3959(2000)211-219。在本文中,人类视觉系统模型用于创建感知蒙版,以优化水印强度。获得的最佳水印既满足隐身性要求,又满足鲁棒性要求。与大多数使用高级感知蒙版的水印方案相反,为了最好地阻止由几何失真引起的去同步问题,我们在此提出一种可优化水印幅度的傅里叶域嵌入和检测技术。最后,针对Stirmark基准测试提供的所有攻击评估了所获得方案的鲁棒性。这项工作提出了一种使用高级人类视觉系统模型的新的数字版权管理技术,该模型能够抵抗包括多种几何变形在内的各种攻击。

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