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A block chaotic image encryption scheme based on self-adaptive modelling

机译:基于自适应建模的块混沌图像加密方案

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摘要

In this paper, we suggest a block image encryption algorithm which can give us an efficient scheme to hide and encrypt image data. Only the diffusion function, instead of classical permutation plus diffusion operations, is adopted. The plain-image is firstly divided into two equal parts randomly by vertical, horizontal, or diagonal directions. Then encryption of one part depends on the other part, in which the keystream is generated by the plain-image, i.e., one of the two parts. An error concept is added in the initial conditions in every round. It means that the keystreams are different in the process of encryption steps. The error may be positive or negative decided by a rule of sign function. Experiment results show that the proposed method can provide a high security of cryptosystem, and can reduce the computation redundancy compared with that of the traditional architectures such as Arnold map based method, and totally shuffling based method. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出了一种块图像加密算法,该算法可以为我们提供一种有效的方案来隐藏和加密图像数据。仅采用扩散函数,而不采用经典置换加扩散运算​​。首先,按垂直,水平或对角线方向将普通图像随机分为两个相等的部分。然后,一部分的加密取决于另一部分,在另一部分中,密钥流是由纯图像生成的,即两部分之一。在每个回合的初始条件中都会添加一个错误概念。这意味着密钥流在加密步骤的过程中是不同的。该误差可以是正负号,由符号函数规则决定。实验结果表明,与基于Arnold map和基于完全改组的传统体系结构相比,该方法可以提供较高的密码系统安全性,并且可以减少计算的冗余。 (C)2014 Elsevier B.V.保留所有权利。

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