Secure Communication System Based on Synchronized 3D Spherical Chaotic Systems

José-Cruz Nuñez Pérez, V. Adeyemi, Sergio Eduardo Gutierrez Osuna, Yuma Sandoval Ibarra, E. T. Cuautle
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引用次数: 2

Abstract

This article presents a 3-dimensional chaotic system that generates spherical attractor. The basis of the chaotic system is the Shilnikov criterion. For the first time in literature and which is the first contribution, this investigation shows the synchronization of two of the chaotic spherical systems in a master-slave topology using Hamiltonian forms and observer approach. As a second contribution, the article demonstrates further the implementation of a secure communication system using the synchronized master-slave system. To verify the secure communication system, the transmission system uses states x1, x2, and x3 as transmission variables to send and receive grayscale and RGB images. The performance analyses of the results, which examine the security and reliability which the transmission system, show that the system is very effective, robust against exhaustive attack, and removes relativity between the original and encrypted images with correlation coefficient very close to zero. Variables x1 and x3 give the best result in transmission of the grayscale and RGB images, respectively, based on the correlation coefficient between the original and encrypted images.
基于同步三维球面混沌系统的保密通信系统
本文给出了一个产生球形吸引子的三维混沌系统。混沌系统的基础是希尔尼科夫准则。本文首次在文献中利用哈密顿形式和观测器方法展示了主从拓扑中两个混沌球面系统的同步,这是第一个贡献。作为第二个贡献,本文进一步演示了使用同步主从系统的安全通信系统的实现。为了验证安全通信系统,传输系统使用状态x1、x2和x3作为传输变量,分别发送和接收灰度和RGB图像。性能分析结果验证了该传输系统的安全性和可靠性,表明该系统具有较强的抗干扰能力,消除了原始图像与加密图像之间的相关性,相关系数接近于零。根据原始图像与加密图像之间的相关系数,变量x1和x3分别对灰度图像和RGB图像的传输效果最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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