基于混沌的图像加密的集成混淆-扩散机制

S. C. Koduru, V. Chandrasekaran
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引用次数: 46

摘要

大多数基于混沌理论的分组密码图像加密方案都有用于混淆和扩散过程的独立模块。目前的方案都没有在扩散模块中使用混沌理论,因此没有充分利用混沌的能力。我们可以做得更好:我们将这些机制集成到一个步骤中,从而使加密过程变得高效。本文提出了三个新颖之处:(a)我们通过使用8位二进制形式的灰度图像强度将2D图像扩展到3D; (b)我们通过应用基于3D Baker map的混淆算法将扩散机制嵌入到混淆中。因此,扩散过程是通过在第三维二进制位的排列来完成的,消除了对单独扩散过程的需要,并且(c)我们通过使用24位颜色信息将所提出的方法扩展到彩色图像。彩色图像加密通常是将每个通道单独加密,然后将它们组合起来得到加密后的图像。我们证明,使用这种简单的方法,即使解密单个通道也会揭示图像中包含的合理信息。在我们的方法中,由于所有通道中包含的数据之间存在固有的依赖性,因此消除了这一缺点,从而突出了所提出算法在彩色图像安全方面的固有优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated Confusion-Diffusion Mechanisms for Chaos Based Image Encryption
Most block-cipher image encryption schemes based on chaos theory have independent modules for confusion and diffusion processes. None of the current schemes use chaos theory in the diffusion modules - thus not utilizing the capabilities of chaos to the fullest extent. We can do better: we integrate these mechanisms into a single step, thus making the encryption process efficient. This paper presents three novelties: (a) we extend 2D images to 3D by using grayscale image intensities in 8-bit binary form (b) we embed the diffusion mechanism into confusion by applying the 3D Baker map based confusion algorithm. Thus, the diffusion process is accomplished by a permutation of binary bits in the third dimension, eliminating the need for a separate diffusion process and (c) we extend the proposed method to color images by using the 24-bit color information. Color image encryption is usually performed by encrypting each channel independently and then combining these to get the encrypted image. We demonstrate that with this simplistic approach, decrypting even a single channel would reveal reasonable information contained in the image. In our approach, this drawback is eliminated because of the inherent dependence between the data contained in all the channels, thus highlighting the inherent superiority of the proposed algorithm for color image security.
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