A New Image Encryption Scheme Using Dual Chaotic Map Synchronization

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Abstract

Chaotic systems behavior attracts many researchers in the field of image encryption. The major advantage of using chaos as the basis for developing a crypto-system is due to its sensitivity to initial conditions and parameter tunning as well as the random-like behavior which resembles the main ingredients of a good cipher namely the confusion and diffusion properties. In this article, we present a new scheme based on the synchronization of dual chaotic systems namely Lorenz and Chen chaotic systems and prove that those chaotic maps can be completely synchronized with other under suitable conditions and specific parameters that make a new addition to the chaotic based encryption systems. This addition provides a master-slave configuration that is utilized to construct the proposed dual synchronized chaos-based cipher scheme. The common security analyses are performed to validate the effectiveness of the proposed scheme. Based on all experiments and analyses, we can conclude that this scheme is secure, efficient, robust, reliable, and can be directly applied successfully for many practical security applications in insecure network channels such as the Internet
一种基于双混沌映射同步的图像加密新方案
混沌系统的行为吸引了众多图像加密领域的研究者。使用混沌作为开发密码系统的基础的主要优点是由于它对初始条件和参数调整的敏感性,以及类似于一个好的密码的主要成分的随机行为,即混乱和扩散特性。本文提出了一种基于双混沌系统即Lorenz和Chen混沌系统同步的新方案,并证明了在适当的条件和特定的参数下,这些混沌映射可以与其他混沌映射完全同步,从而为混沌加密系统增加了新的内容。这个补充提供了一个主从配置,用于构造所提出的基于双同步混沌的密码方案。进行了通用安全性分析,验证了所提方案的有效性。实验和分析表明,该方案安全、高效、鲁棒、可靠,可直接成功应用于Internet等不安全网络通道中的许多实际安全应用
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