Secure communication and image encryption scheme based on synchronisation of fractional order chaotic systems using backstepping

M. Shukla, B. Sharma
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引用次数: 3

Abstract

Synchronisation strategy of fractional order nonlinear dynamical systems is utilised to address the problem of secure communication by introducing additional security features. Initially, a backstepping-based controller is designed for synchronisation of two similar fractional order chaotic systems in master-slave configuration. The controller obtained is divided into two parts with one part transmitted through the communication channel whereas the other part has to be designed at the receiver end so as to obtain synchronisation between master and slave system. Further, only two signals are transmitted out of which one has an embedded message signal and the other is a complex combination of master states which will be used for synchronisation purpose at the receiver end for recovery of message signal. The initial conditions, system parameters, fractional orders, the structure of controller and the combination of master system states form a large key set which should be known is advance in order to breach the security. Here, the scheme for secure transmission of speech signal is presented first and further a scheme for image encryption is given. The simulation results and security analysis using different quantitative measures are presented at the end to demonstrate the applicability and effectiveness of the proposed scheme.
基于反步同步的分数阶混沌系统安全通信与图像加密方案
利用分数阶非线性动力系统的同步策略,通过引入额外的安全特性来解决安全通信问题。首先,针对两个相似的分数阶混沌系统在主从结构下的同步问题,设计了一种基于backstepping的控制器。所得到的控制器分为两部分,一部分通过通信信道传输,另一部分必须在接收端设计,以实现主从系统之间的同步。此外,仅传输两个信号,其中一个具有嵌入式消息信号,另一个是主状态的复杂组合,该主状态将在接收端用于同步目的,以恢复消息信号。初始条件、系统参数、分数阶数、控制器结构和主系统状态的组合构成了一个大的密钥集,要突破安全性,必须事先知道这个密钥集。本文首先提出了语音信号的安全传输方案,然后给出了图像加密方案。最后给出了仿真结果和采用不同定量指标的安全性分析,验证了所提方案的适用性和有效性。
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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