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Reversible Data Hiding in Encrypted 2D Vector Graphics Based on Reversible Mapping Model for Real Numbers

机译:基于实数可逆映射模型的可加密二维矢量图形中的可逆数据隐藏

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Currently, much attention has been paid to reversible data hiding (RDH) in an encrypted domain due to the popular deployment of cloud storage. However, nearly all existing RDH schemes in the encrypted domain are proposed for raster images, and very little work has been done to 2D vector graphics, which are represented in real numbers. In this paper, a reversible mapping model for real numbers is first built. It maps the points in R-n to 2(s) non-intersecting subsets in R-n, which guarantees that s bits can be embedded into each real number. Rased on the model, an RDH scheme in encrypted 2D vector graphics is put forward. In the scheme, a user encrypts 2D engineering graphics and stores them in the cloud, and then the cloud service provider can perform information hiding, extraction, and even recover the encrypted 2D vector graphics. For the authorized user, it can acquire the recovered 2D vector graphics from the cloud and obtain their original versions after decryption. For an unauthorized user, he can only acquire the encrypted 2D vector graphics with a hidden message, and only approximate 2D vector graphics can be obtained even if he knows the decryption key but does not know the hiding key. The experimental results and analysis show that it can strike a good balance between security, distortion, and capacity. It provides a new paradigm for RDH in the encrypted domain for the data represented in real numbers.
机译:当前,由于云存储的流行部署,已经非常关注加密域中的可逆数据隐藏(RDH)。但是,在加密域中几乎所有现有的RDH方案都被提出用于光栅图像,而对于以实数表示的2D矢量图形则做得很少。本文首先建立了一个可逆的实数映射模型。它将R-n中的点映射到R-n中的2个不相交的子集,这保证了s位可以嵌入每个实数中。在该模型的基础上,提出了一种加密的二维矢量图形中的RDH方案。在该方案中,用户对2D工程图形进行加密并将其存储在云中,然后云服务提供商可以执行信息隐藏,提取甚至恢复加密的2D矢量图形。对于授权用户,它可以从云中获取恢复的2D矢量图形,并在解密后获得其原始版本。对于未经授权的用户,他只能获得带有隐藏消息的加密2D矢量图形,即使他知道解密密钥但不知道隐藏密钥,也只能获得近似的2D矢量图形。实验结果和分析表明,它可以在安全性,失真和容量之间取得良好的平衡。它为以实数表示的数据在加密域中为RDH提供了新的范例。

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