4.3 Article

A new multi-scroll Chua's circuit with composite hyperbolic tangent-cubic nonlinearity: Complex dynamics, Hardware implementation and Image encryption application

期刊

INTEGRATION-THE VLSI JOURNAL
卷 81, 期 -, 页码 71-83

出版社

ELSEVIER
DOI: 10.1016/j.vlsi.2021.05.011

关键词

Multi-scroll Chua's circuit; Coexisting multiple attractors; Intermittent chaos; Offset boosting; FPGA; Image encryption

资金

  1. National Natural Science Foundation of China [61504013, 61702052, 61674054]
  2. Natural Science Foundation of Hunan Province, China [2019JJ50648, 2020JJ4622, 2020JJ4221]
  3. Guangxi Key Laboratory of Cryptography and Information Security, China [GCIS201919]
  4. Postgraduate Training Innovation Base Construction Project of Hunan Province, China [2020-17248]
  5. Postgraduate Scientific Research Innovation Project of Hunan Province, China [CX20200884]
  6. Scientific Research Fund of Hunan Provincial Education Department [18A137]
  7. young teacher development program project of Changsha university of science and technology, China [2019QJCZ013]

向作者/读者索取更多资源

This paper presents a new method for generating multi-scroll chaotic attractors and analyzes the basic dynamic characteristics of the system, as well as its application in chaotic image encryption and security performance evaluation. The feasibility and usability of the proposed new multi-scroll Chua's system are verified through numerical simulation and FPGA experimental results.
In this paper, a new method for generating multi-scroll chaotic attractors via constructing a compound hyperbolic tangent-cubic nonlinear function in canonical Chua's circuit is presented. The basic dynamic characteristics of the system are analyzed, including equilibrium points, bifurcation diagrams, Lyapunov exponents, phase portraits, time-domain diagrams and attractive basins. What is surprising is that the proposed multi-scroll Chua's circuit also exhibits rich dynamic behaviors like coexisting multiple attractors, transient period, intermittent chaos and offset boosting. In addition, we put forward the application of the system in chaotic image encryption, and analyzed some security performance evaluation indexes to show that the new Chua's chaotic cipher system has high security and reliable encryption performance. Finally, the hardware design and experiments of the chaotic digital circuits and image encryption are carried out. Both numerical simulation and FPGA experimental results verify the feasibility and usability of the proposed new multi-scroll Chua's system.

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