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A Symmetric Image Encryption Scheme Using Chaotic Baker Map and Lorenz System

机译:基于混沌贝克图和Lorenz系统的对称图像加密方案

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Chaos-based image encryption techniques have recently been extensively studied due to their superior properties in efficiency. However, many of the proposed schemes suffer from known/chosen plaintext attacks as the key stream used in diffusion stage is usually solely determined by the key. This paper suggests a chaos-based symmetric image cipher with a plaintext-related key stream generation mechanism. In the diffusion stage, the state variables of Lorenz system are selected according to the plain pixel. As a result, the quantified key stream is related to both the key and the plain image, which makes known/chosen plaintext attack practically infeasible. Moreover, compared with 1D chaotic maps that commonly employed in existing ciphers, the Lorenz system has more complicated dynamical property and number of state variables, which further enhance the security of the cryptosystem. Thorough security tests are carried out with detailed analysis, demonstrating the high security of the new scheme.
机译:基于混沌的图像加密技术由于其卓越的效率特性,最近已得到广泛研究。然而,许多提议的方案遭受已知/选择的明文攻击,因为在扩散阶段使用的密钥流通常仅由密钥确定。本文提出了一种具有明文相关密钥流生成机制的基于混沌的对称图像密码。在扩散阶段,根据普通像素选择Lorenz系统的状态变量。结果,量化的密钥流与密钥和纯图像都相关,这使得已知/选择的明文攻击实际上是不可行的。此外,与通常在现有密码中使用的一维混沌映射相比,Lorenz系统具有更复杂的动态特性和状态变量数量,这进一步提高了密码系统的安全性。进行了详尽的安全测试,并进行了详细的分析,证明了新方案的高度安全性。

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