IEEE Trans Cybern. 2018 Apr;48(4):1163-1175. doi: 10.1109/TCYB.2017.2682561. Epub 2017 Mar 28.
The need for fast and strong image cryptosystems motivates researchers to develop new techniques to apply traditional cryptographic primitives in order to exploit the intrinsic features of digital images. One of the most popular and mature technique is the use of complex dynamic phenomena, including chaotic orbits and quantum walks, to generate the required key stream. In this paper, under the assumption of plaintext attacks we investigate the security of a classic diffusion mechanism (and of its variants) used as the core cryptographic primitive in some image cryptosystems based on the aforementioned complex dynamic phenomena. We have theoretically found that regardless of the key schedule process, the data complexity for recovering each element of the equivalent secret key from these diffusion mechanisms is only (1). The proposed analysis is validated by means of numerical examples. Some additional cryptographic applications of this paper are also discussed.
快速且强大的图像密码系统的需求促使研究人员开发新技术,将传统密码原语应用于数字图像的固有特征,以利用数字图像的固有特征。其中最受欢迎和成熟的技术之一是使用复杂的动态现象,包括混沌轨道和量子漫步,来生成所需的密钥流。在本文中,我们假设明文攻击,研究了经典扩散机制(及其变体)在一些基于上述复杂动态现象的图像密码系统中的核心密码原语的安全性。我们从理论上发现,无论密钥调度过程如何,从这些扩散机制中恢复等效秘密密钥的每个元素的数据复杂度仅为 (1)。通过数值实例验证了所提出的分析。本文还讨论了这种密码技术的一些其他加密应用。