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Image Encryption Scheme Based On 3d Baker With Dynamical Compound Chaotic Sequence Cipher Generator

机译:基于动态复合混沌序列密码发生器的3d Baker图像加密方案

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The design of the new compound two-dimensional chaotic function is presented by exploiting two one-dimensional chaotic functions which switch randomly, and the design is used as a chaotic sequence generator which is proved by Devaney's definition proof of chaos. The properties of compound chaotic functions are also proved. A new image encryption scheme is proposed using the new compound chaos by selecting one of the two one-dimensional chaotic functions randomly and an image pixel permutation, 3D baker scheme is described in detail. In the scheme a new dynamic block dividing of the 3D baker scheme is put forward using the compound chaotic map. The entropy analysis, differential analysis, weak-keys analysis, statistical analysis, cipher random analysis, and cipher sensibility analysis depending on key and plaintext are introduced to test the security of the new image encryption scheme. Through the comparison to compound chaos with 2D baker and DES encryption methods, we come to the conclusion that the new image encryption method with speed and high security solves the problem unable to resist chosen plaintext attack and low precision of one-dimensional chaotic function by perturbation.
机译:利用两个随机切换的一维混沌函数,提出了新的复合二维混沌函数的设计方法,并将其作为混沌序列生成器,并通过Devaney的混沌定义证明进行了证明。还证明了复合混沌函数的性质。通过随机选择两个一维混沌函数中的一个,提出了一种利用新的复合混沌的新图像加密方案,并详细描述了图像像素排列,3D贝克方案。在该方案中,使用复合混沌映射图提出了一种新的3D baker方案动态块划分方法。引入了基于密钥和明文的熵分析,差分分析,弱密钥分析,统计分析,密码随机分析和密码敏感度分析,以测试新图像加密方案的安全性。通过与2D baker和DES加密方法对复合混沌的比较,我们得出结论,新的具有高速度和高安全性的图像加密方法解决了无法抵抗选择的明文攻击和一维混沌函数精度低的问题。 。

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