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A Multidimensional Hyperjerk Oscillator: Dynamics Analysis Analogue and Embedded Systems Implementation and Its Application as a Cryptosystem

机译:多维Hyperjerk振荡器:动力学分析模拟和嵌入式系统的实现及其作为密码系统的应用

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摘要

A lightweight image encryption algorithm is presented based on chaos induction via a 5-dimensional hyperjerk oscillator (5DHO) network. First, the dynamics of our 5DHO network is investigated and shown to exhibit up to five coexisting hidden attractors in the state space that depend exclusively on the system’s initial values. Further, a simple implementation of the circuit was used to validate its ability to exhibit chaotic dynamical properties. Second, an Arduino UNO platform is used to confirm the usability of our oscillator in embedded system implementation. Finally, an efficient image encryption application is executed using the proposed chaotic networks based on the use of permutation-substitution sequences. The superior qualities of the proposed strategy are traced to the dynamic set of keys used in the substitution process which heralds the generation of the final ciphered image. Based on the average results obtained from the entropy analysis (7.9976), NPCR values (99.62), UACI tests (33.69) and encryption execution time for 512 × 512 images (0.1141 s), the proposed algorithm is adjudged to be fast and robust to differential and statistical attacks relative to similar approaches.
机译:提出了一种轻量级的图像加密算法,该算法基于经由5维超冲击振荡器(5DHO)网络的混沌感应而产生。首先,我们对5DHO网络的动力学进行了调查,并显示出在状态空间中最多展示五个共存的隐藏吸引子,这些吸引子完全取决于系统的初始值。此外,该电路的简单实现用于验证其展现混沌动力学特性的能力。其次,使用Arduino UNO平台来确认振荡器在嵌入式系统实现中的可用性。最后,基于置换置换序列的使用,使用提出的混沌网络执行有效的图像加密应用程序。所提出策略的卓越品质可追溯到替代过程中使用的动态密钥集,这预示了最终加密图像的生成。根据从熵分析(7.9976),NPCR值(99.62),UACI测试(33.69)和512×512图像(0.1141 s)的加密执行时间获得的平均结果,该算法被裁定为快速且可靠相对于类似方法的差异和统计攻击。

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