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Authenticity and copyright verification of printed images

机译:打印图像的真实性和版权验证

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Perceptual image hashing and digital watermarking are two of the extensively investigated techniques for content authentication and copyright verification of digital images, respectively. One of the significant challenges of perceptual image hashing is a better tradeoff between robustness and discrimination. On the other hand, a major objective of digital watermarking techniques is to provide enhanced robustness and imperceptibility. In this paper, we present extensive experimental analysis, detailed laboratory forensic investigations, and application of the wave atom transform (WAT) based perceptual image hashing and digital watermarking techniques for printed images. Authenticity and copyright of printed images are verified via image hashing and digital watermarking techniques which are resilient against print-scan process distortions. To fulfill the requirement of a good balance between print-scan robustness and discrimination capabilities, we propose a compact, hybrid image hash using lower and middle frequency scale bands in the wave atom coefficients tiling. The hybrid image hash generation strategy is also advantageous due to its computational simplicity and reduced size of the hash value. Furthermore, we propose an enhanced multipurpose scheme which can support multiple applications, such as image authentication and copyright protection, simultaneously, for both digital-only and print-scanned images. Experimental analysis demonstrates the ability of wave atom based image hashing and watermarking schemes to provide authenticity and copyright verification for printed color images.
机译:感知图像哈希和数字水印分别是广泛研究的两种用于数字图像的内容认证和版权验证的技术。感知图像哈希的重大挑战之一是在鲁棒性和辨别力之间更好地权衡。另一方面,数字水印技术的主要目的是提供增强的鲁棒性和不可感知性。在本文中,我们介绍了广泛的实验分析,详细的实验室法医研究以及基于波原子变换(WAT)的感知图像哈希和数字水印技术在打印图像中的应用。打印图像的真实性和版权通过图像哈希和数字水印技术进行验证,这些技术可以抵抗打印扫描过程的失真。为了满足在打印扫描鲁棒性和辨别能力之间取得良好平衡的要求,我们提出了一个紧凑的混合图像哈希,在波原子系数平铺中使用较低和中频频段。混合图像散列生成策略由于其计算简单性和减小的散列值大小而也具有优势。此外,我们提出了一种增强的多用途方案,该方案可以同时支持纯数字图像和打印扫描图像的多种应用,例如图像认证和版权保护。实验分析证明了基于波原子的图像哈希和水印方案能够为打印的彩色图像提供真实性和版权验证。

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