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Quasi-commutative watermarking and encryption for secure media content distribution

机译:准交换水印和加密,用于安全的媒体内容分发

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Commutative Watermarking and Encryption (CWE) provides a solution for interoperation between watermarking and encryption. It realizes the challenging operation that embeds a watermark into the encrypted multimedia data directly, which avoids the decryption-watermarking-encryption triples. Till now, few CWE schemes have been reported. They often obtain the commutative property by partitioning multimedia data into independent parts (i.e., the encryption part and the watermarking part). Since the two parts are isolated, it can not keep secure enough against replacement attacks. To avoid the disadvantage, a novel quasi-commutative watermarking and encryption (QCWE) scheme based on quasi-commutative operations is proposed in this paper. In the proposed scheme, the encryption operation and watermarking operation are applied to the same data part. Since the two operations are homogenous with commutative properties, their orders can be commutated. As an example, the scheme for MPEG2 video encryption and watermarking is presented. In this example, the DCs in intra macroblocks are encrypted or watermarked based on random module addition, while the DCs in other macroblocks and all the ACs' signs are encrypted with a stream cipher or block cipher. Analysis and experiments show that the scheme obtains high perceptual security and time efficiency, and the watermarking and encryption operations can be commutated. These properties make the scheme a suitable choice for efficient media content distribution. Additionally, the paper shows the availability of constructing the commutative watermarking and encryption scheme with homogenous operations, which is expected to activate the new research topic.
机译:可交换水印和加密(CWE)为水印和加密之间的互操作提供了一种解决方案。它实现了将水印直接嵌入到加密的多媒体数据中的挑战性操作,避免了解密-水印-加密三元组。到目前为止,几乎没有关于CWE计划的报道。它们通常通过将多媒体数据划分为独立的部分(即,加密部分和水印部分)来获得交换特性。由于这两个部分是隔离的,因此无法足够安全地抵抗替换攻击。为避免这一缺点,提出了一种基于准交换操作的新型准交换水印加密方案。在提出的方案中,加密操作和水印操作被应用于相同的数据部分。由于这两个操作具有可交换性质,因此它们的顺序可以交换。作为示例,提出了用于MPEG2视频加密和水印的方案。在该示例中,基于随机模块添加,对内部宏块中的DC进行加密或加水印,而使用流密码或块密码对其他宏块中的DC和所有AC的符号进行加密。分析和实验表明,该方案具有较高的感知安全性和时间效率,并且可以交换水印和加密操作。这些特性使该方案成为有效分发媒体内容的合适选择。此外,本文还展示了构造具有同构操作的可交换水印和加密方案的可能性,有望激活新的研究主题。

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