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A security improved image encryption scheme based on chaotic Baker map and hyperchaotic Lorenz system

机译:基于混沌Baker映射和超混沌Lorenz系统的安全改进图像加密方案

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摘要

In recent years, chaos-based image cipher has been widely studied and a growing number of schemes based on permutation-diffusion architecture have been proposed. However, most of the existing schemes are based on low-dimensional chaotic systems and have the drawbacks of small key space and weak security. In this paper, we present a security improved image cipher which utilises chaotic Baker map and hyperchaotic Lorenz system for permutation and diffusion. Compared with ordinary chaotic systems, hyperchaotic systems, with more complex dynamical behaviours and number of system variables, offer greater potential for secure cryptosystem construction. In diffusion stage, a plain-image related key stream generation scheme is introduced, which further improves the security against known/chosen plaintext attack. Extensive security analysis has been performed on the proposed scheme, including the most important ones like key space analysis, key sensitivity analysis, differential analysis and various statistical analyses, which has demonstrated the satisfactory security of the proposed scheme.
机译:近年来,已经广泛研究了基于混沌的图像密码,并且提出了越来越多的基于置换-扩散体系结构的方案。然而,大多数现有方案都是基于低维混沌系统,并且具有密钥空间小和安全性较弱的缺点。在本文中,我们提出了一种利用混沌Baker映射和超混沌Lorenz系统进行置换和扩散的安全改进图像密码。与普通混沌系统相比,具有更复杂的动力学行为和更多系统变量的超混沌系统为安全密码系统的构建提供了更大的潜力。在扩散阶段,引入了与普通图像有关的密钥流生成方案,这进一步提高了针对已知/选择的纯文本攻击的安全性。对该方案进行了广泛的安全性分析,包括最重要的安全性分析,如密钥空间分析,密钥敏感性分析,差异分析和各种统计分析,证明了该方案的安全性。

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