基于多参数变换的图像加密方案的安全性研究

E. Elsheh, A. Youssef
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引用次数: 7

摘要

具有大量独立参数的信号处理变换的广义形式的最新发展,如多参数分数阶傅立叶变换和离散分数阶余弦变换,鼓励许多研究人员提出基于这些变换的单个或多个应用的图像加密算法。为了声称这些基于参数化转换的方案具有高水平的安全性,它们的作者通常使用加密图像在视觉上与随机噪声无法区分的论点。在本文中,我们证明了这些算法代表了不安全密码的典型教科书示例;这些方案的所有构建块都是线性的,因此,使用已知的明文攻击来破坏这些方案,相当于解决一组线性方程。我们还通过展示一个产生具有相同属性的密文图像的普通不安全系统的示例,推翻了依赖加密图像密文的视觉质量的论点。本文还对这些方案所声称的效率提出了一致意见。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the security of image encryption schemes based on Multiple Parameters Transforms
Recent developments of generalized forms of signal processing transforms with a large number of independent parameters, such as the Multiple Parameter Fractional Fourier Transform and the Discrete Fractional Cosine Transform, have encouraged many researchers to propose image encryption algorithms based on a single or multiple applications of these transforms. In order to claim a high level of security of these parameterized transforms-based schemes, their authors usually use the argument that the encrypted image is visually indistinguishable from random noise. In this paper, we show that these algorithms represent typical textbook examples of insecure ciphers; all the building blocks of these schemes are linear, and hence, breaking these scheme, using a known plaintext attack, is equivalent to solving a set of linear equations. We also invalidate the argument of relying on the visual quality of the encrypted image ciphertext by presenting an example for a trivially insecure system that produces ciphertext images with the same property. An agreement against the claimed efficiency of these schemes is also provided.
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