Design, analysis and application of Non-Hamiltonian conservative chaotic system based on memristor

IF 2.2 3区 工程技术 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Integration-The Vlsi Journal Pub Date : 2024-11-19 DOI:10.1016/j.vlsi.2024.102307
Jie Zhang, Nana Cheng, Jiangang Zuo, Pengyuan Wang, Xiaodong Wei
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Abstract

A new four-dimensional memristor conservative chaotic system (MCCS) is constructed by introducing a sine magnetic memristor into the Sprott-A system in this paper. Through the analysis of the dynamic behavior of the MCCS, it is found that the system is a non-Hamiltonian chaotic system, exhibiting continuous chaotic intervals and high complexity. At the same time, a series of special phenomena have been observed in MCCS, such as multiple stability, parameter-controllable multi-scrolls, bursty oscillations, and distinctive spike oscillations. Additionally, the correctness of the mathematical model of the MCCS is confirmed through analog and FPGA digital circuit. Finally, a synchronous encryption system with strong attack resistance is designed by combining MCCS with RNA algorithm.
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基于忆阻器的非哈密顿保守混沌系统的设计、分析与应用
本文通过在 Sprott-A 系统中引入正弦磁性忆阻器,构建了一个新的四维忆阻器保守混沌系统(MCCS)。通过分析 MCCS 的动态行为,发现该系统是一个非哈密顿混沌系统,表现出连续的混沌区间和较高的复杂性。同时,在 MCCS 中观察到了一系列特殊现象,如多重稳定性、参数可控的多卷、突发振荡和独特的尖峰振荡等。此外,还通过模拟和 FPGA 数字电路证实了 MCCS 数学模型的正确性。最后,通过将 MCCS 与 RNA 算法相结合,设计了一种具有较强抗击打能力的同步加密系统。
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来源期刊
Integration-The Vlsi Journal
Integration-The Vlsi Journal 工程技术-工程:电子与电气
CiteScore
3.80
自引率
5.30%
发文量
107
审稿时长
6 months
期刊介绍: Integration''s aim is to cover every aspect of the VLSI area, with an emphasis on cross-fertilization between various fields of science, and the design, verification, test and applications of integrated circuits and systems, as well as closely related topics in process and device technologies. Individual issues will feature peer-reviewed tutorials and articles as well as reviews of recent publications. The intended coverage of the journal can be assessed by examining the following (non-exclusive) list of topics: Specification methods and languages; Analog/Digital Integrated Circuits and Systems; VLSI architectures; Algorithms, methods and tools for modeling, simulation, synthesis and verification of integrated circuits and systems of any complexity; Embedded systems; High-level synthesis for VLSI systems; Logic synthesis and finite automata; Testing, design-for-test and test generation algorithms; Physical design; Formal verification; Algorithms implemented in VLSI systems; Systems engineering; Heterogeneous systems.
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