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A new chaos-based image encryption system

机译:一种新的基于混沌的图像加密系统

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摘要

During the last decade, a variety of chaos-based cryptosystems has been introduced to protect the content of the transmitted images. In this paper, we propose a new fast, simple, and robust chaos-based cryptosystem structure and we analyze its performances. The cryptosystem uses a diffusion layer followed by a bit-permutation layer, instead of byte-permutation, to shuffle the positions of the image pixels. Moreover, the permutation layer is achieved by a new proposed formulation of the 2D cat map that allows an efficient implementation, measured by the time complexity, in terms of arithmetic and logic operations, and also, in terms of clock cycles, of the key-dependent permutation process in comparison with the standard one. Hence, it provides a very fast diffusion process to spread the influence of a single bit over the others. The new cryptosystem includes a robust and uniform chaotic pseudo-random generator (a very simplified version of a generator published in our patent) to change the control parameters in each round of the encryption/decryption processes. The generator is highly nonlinear and produces robust sequences of discrete values having very long orbits. The proposed cryptosystem is defined on finite numbers, and its speed is faster than many chaos-based cryptosystems, while having a very high security level. The security analysis and the obtained simulation results show that the proposed cryptosystem is resistant to various types of attacks and it is efficient for hardware and software implementation. (C) 2015 Elsevier B.V. All rights reserved.
机译:在过去的十年中,已经引入了各种基于混沌的密码系统来保护传输图像的内容。在本文中,我们提出了一种新的快速,简单且健壮的基于混沌的密码系统结构,并对其性能进行了分析。密码系统使用扩散层,然后是位置换层,而不是字节置换,来对图像像素的位置进行混洗。此外,置换层是通过新提出的2D猫形图公式来实现的,该公式允许以时间复杂度(就算术和逻辑运算而言)以及就时钟周期而言,对密钥-与标准排列相比,依赖排列过程。因此,它提供了非常快速的扩散过程,以将单个位的影响散布在其他位上。新的密码系统包括一个鲁棒且统一的混沌伪随机发生器(在我们的专利中公开了一种非常简化的发生器版本),用于在每一轮加密/解密过程中更改控制参数。发生器是高度非线性的,并产生具有很长轨道的离散值的鲁棒序列。所提出的密码系统是在有限数量上定义的,其速度比许多基于混沌的密码系统要快,同时具有很高的安全级别。安全性分析和获得的仿真结果表明,所提出的密码系统能够抵抗各种类型的攻击,并且对于硬件和软件实现都是有效的。 (C)2015 Elsevier B.V.保留所有权利。

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