论文标题
基于中文剩余定理的加密域中的可逆数据隐藏方案用于秘密图像共享
A Reversible Data hiding Scheme in Encrypted Domain for Secret Image Sharing based on Chinese Remainder Theorem
论文作者
论文摘要
基于对称或公共密钥加密的加密域(RDH-ED)方案中隐藏的可逆数据主要应用于端到端通信的安全性。旨在为多方安全场景提供可靠的技术支持,以基于中国剩余定理(CRT)的秘密图像共享为可分离的RDH-ED计划。在应用(t,n)秘密图像共享的应用中,该图像首先共享到Ciphertext的n个不同股份中。只有在不少于t共享的情况下,才能重建原始图像。在我们的方案中,可以将其他数据嵌入图像共享中。为了从图像共享中实现数据提取和重建图像,提出了两种数据隐藏方法:一个是加密域(HDE-ED)中同质差异的扩展,该域(HDE-ED)支持从重建图像中提取的数据通过利用CRT秘密共享的加法同源性来提取。另一个是图像共享中的差异扩展(DE-IS)支持图像重建之前从标记的共享中提取数据的差异。实验结果表明,与大多数现有的RDH-ED算法相比,所提出的方案不仅可以维持秘密共享系统的安全性和阈值功能,而且还可以获得更好的可逆性和效率。 HDE-ED的最大嵌入速率可以达到每个像素的0.5000位,并且DE-IS的平均嵌入速率为每位密文的0.0545位。
Reversible data hiding in encrypted domain (RDH-ED) schemes based on symmetric or public key encryption are mainly applied to the security of end-to-end communication. Aimed at providing reliable technical supports for multi-party security scenarios, a separable RDH-ED scheme for secret image sharing based on Chinese remainder theorem (CRT) is presented. In the application of (t, n) secret image sharing, the image is first shared into n different shares of ciphertext. Only when not less than t shares obtained, can the original image be reconstructed. In our scheme, additional data could be embedded into the image shares. To realize data extraction from the image shares and the reconstructed image separably, two data hiding methods are proposed: one is homomorphic difference expansion in encrypted domain (HDE-ED) that supports data extraction from the reconstructed image by utilizing the addition homomorphism of CRT secret sharing; the other is difference expansion in image shares (DE-IS) that supports the data extraction from the marked shares before image reconstruction. Experimental results demonstrate that the proposed scheme could not only maintain the security and the threshold function of secret sharing system, but also obtain a better reversibility and efficiency compared with most existing RDH-ED algorithms. The maximum embedding rate of HDE-ED could reach 0.5000 bits per pixel and the average embedding rate of DE-IS is 0.0545 bits per bit of ciphertext.