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A Hybrid Digital-Signature and Zero-Watermarking Approach for Authentication and Protection of Sensitive Electronic Documents

机译:用于认证和保护敏感电子文档的混合数字签名和零水印方法

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This paper addresses the problems and threats associated with verification of integrity, proof of authenticity, tamper detection, and copyright protection for digital-text content. Such issues were largely addressed in the literature for images, audio, and video, with only a few papers addressing the challenge of sensitive plain-text media under known constraints. Specifically, with text as the predominant online communication medium, it becomes crucial that techniques are deployed to protect such information. A number of digital-signature, hashing, and watermarking schemes have been proposed that essentially bind source data or embed invisible data in a cover media to achieve its goal. While many such complex schemes with resource redundancies are sufficient in offline and less-sensitive texts, this paper proposes a hybrid approach based on zero-watermarking and digital-signature-like manipulations for sensitive text documents in order to achieve content originality and integrity verification without physically modifying the cover text in anyway. The proposed algorithm was implemented and shown to be robust against undetected content modifications and is capable of confirming proof of originality whilst detecting and locating deliberate/nondeliberate tampering. Additionally, enhancements in resource utilisation and reduced redundancies were achieved in comparison to traditional encryption-based approaches. Finally, analysis and remarks are made about the current state of the art, and future research issues are discussed under the given constraints.
机译:本文解决了与验证完整性,真实性证明,篡改检测和数字文本内容的版权保护相关的问题和威胁。这些问题在很大程度上在很大程度上在图像,音频和视频的文献中解决了,只有几篇论文在已知的约束下解决了敏感纯文本媒体的挑战。具体而言,通过文本作为主要的在线通信介质,可以将技术部署以保护此类信息变得至关重要。已经提出了许多数字签名,散列和水印方案,其基本上绑定了源数据或在覆盖媒体中嵌入不可见数据以实现其目标。虽然具有资源冗余的许多这些复杂方案在离线和更少敏感的文本中足够了,但是本文提出了一种基于零水印和数字签名的操作的混合方法,用于敏感文本文档,以实现内容原创性和完整性验证而没有无论如何,在物理上修改封面文本。所提出的算法被实施并显示为稳健,抵抗未检测到的内容修改,并且能够确认原创性证明,同时检测和定位故意/非窃贼篡改。此外,与传统的加密的方法相比,实现了资源利用和减少冗余的增强。最后,对现有技术的分析和备注进行了分析和备注,并且在给定的限制下讨论了未来的研究问题。

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