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Design and application of multisroll conservative chaotic system with no-equilibrium, dynamics analysis, circuit implementation

Author

Listed:
  • Zuo, Jiangang
  • Zhang, Jie
  • Wei, Xiaodong
  • Yang, Liu
  • Cheng, Nana
  • Lv, Jiliang

Abstract

Compared to dissipative chaotic systems (DCS), conservative chaotic systems (CCS) have the feature of zero-sum for the Lyapunov exponents, which holds unique research significance. This paper proposes a novel design method for a multiscroll conservative chaotic system (MSCCS). Firstly, a new cosine magneto-memristor is proposed. Then, based on the Sprott-A system, a new four-dimensional memristive conservative chaotic system (4D MCCS) is introduced. Finally, by introducing piecewise linear functions into the 4D MCCS, A one-directional multisroll conservative chaotic system (1D-MSCCS) and a two-directional multisroll conservative chaotic system (2D-MSCCS) are proposed. The dynamical analysis of the system shows that MSCCS has no-equilibrium points and possesses hidden attractors, belonging to the class of non-Hamiltonian conservative chaotic systems (non-HCCS), with larger Lyapunov exponents compared to other CCS. As parameters vary, the system exhibits various attractor structures. By introducing external bias, the system exhibits offset-boosting behavior. Under different numbers of initial conditions, the system displays dynamical phenomenon such as coexistence of attractors, multistability, and super multistability. Complexity analysis results demonstrate that the MSCCS has higher complexity compared with other CCS. The accuracy and practical existence for the MSCCS math model are tested by analog circuits. Additionally, MSCCS is implemented through digital circuits using the STM32 microcontroller. The article closes based on the MSCCS, a finite-time synchronization system with controllable synchronization time is designed. MSCCS can be applied in various fields such as communication security, random number generation, nonlinear control, chaos modulation, sensor networks, and embedded systems.

Suggested Citation

  • Zuo, Jiangang & Zhang, Jie & Wei, Xiaodong & Yang, Liu & Cheng, Nana & Lv, Jiliang, 2024. "Design and application of multisroll conservative chaotic system with no-equilibrium, dynamics analysis, circuit implementation," Chaos, Solitons & Fractals, Elsevier, vol. 187(C).
  • Handle: RePEc:eee:chsofr:v:187:y:2024:i:c:s096007792400883x
    DOI: 10.1016/j.chaos.2024.115331
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    1. Li, Chunbiao & Sprott, Julien Clinton & Kapitaniak, Tomasz & Lu, Tianai, 2018. "Infinite lattice of hyperchaotic strange attractors," Chaos, Solitons & Fractals, Elsevier, vol. 109(C), pages 76-82.
    2. Enzeng Dong & Xiaodong Jiao & Shengzhi Du & Zengqiang Chen & Guoyuan Qi, 2020. "Modeling, Synchronization, and FPGA Implementation of Hamiltonian Conservative Hyperchaos," Complexity, Hindawi, vol. 2020, pages 1-13, April.
    3. Ding, Dawei & Xu, Xinyue & Yang, Zongli & Zhang, Hongwei & Zhu, Haifei & Liu, Tao, 2024. "Extreme multistability of fractional-order hyperchaotic system based on dual memristors and its implementation," Chaos, Solitons & Fractals, Elsevier, vol. 183(C).
    4. Ali, Karmina K. & Faridi, Waqas Ali & Tarla, Sibel, 2024. "Phase trajectories and Chaos theory for dynamical demonstration and explicit propagating wave formation," Chaos, Solitons & Fractals, Elsevier, vol. 182(C).
    5. Zhang, Xiaohong & Xu, Jingjing & Moshayedi, Ata Jahangir, 2024. "Design and FPGA implementation of a hyperchaotic conservative circuit with initial offset-boosting and transient transition behavior based on memcapacitor," Chaos, Solitons & Fractals, Elsevier, vol. 179(C).
    6. Bao, Han & Ding, Ruoyu & Chen, Bei & Xu, Quan & Bao, Bocheng, 2023. "Two-dimensional non-autonomous neuron model with parameter-controlled multi-scroll chaotic attractors," Chaos, Solitons & Fractals, Elsevier, vol. 169(C).
    7. Jia, Hongyan & Liu, Jingwen & Li, Wei & Du, Meng, 2023. "A family of new generalized multi-scroll Hamiltonian conservative chaotic flows on invariant hypersurfaces and FPGA implementation," Chaos, Solitons & Fractals, Elsevier, vol. 172(C).
    8. Zhang, Jie & Zuo, Jiangang & Wang, Meng & Guo, Yan & Xie, Qinggang & Hou, Jinyou, 2024. "Design and application of multiscroll chaotic attractors based on a novel multi-segmented memristor," Chaos, Solitons & Fractals, Elsevier, vol. 181(C).
    9. Dong, Qing & Zhou, Shihua & Zhang, Qiang & Kasabov, Nikola K., 2023. "A new five-dimensional non-Hamiltonian conservative hyperchaos system with multistability and transient properties," Chaos, Solitons & Fractals, Elsevier, vol. 175(P1).
    10. Xu, Wanjiang & Shi, Xuerong & Jiang, Haibo & Yu, Jianjiang & Zhang, Liping & Zhuang, Lizhou & Wang, Zuolei, 2024. "A simple 4D no-equilibrium chaotic system with only one quadratic term and its application in pseudo-random number generator," Chaos, Solitons & Fractals, Elsevier, vol. 182(C).
    11. Lin, Hairong & Wang, Chunhua & Du, Sichun & Yao, Wei & Sun, Yichuang, 2023. "A family of memristive multibutterfly chaotic systems with multidirectional initial-based offset boosting," Chaos, Solitons & Fractals, Elsevier, vol. 172(C).
    12. Y. J. F. Kpomahou & A. Adomou & J. A. Adéchinan & A. E. Yamadjako & I. V. Madogni & Jesus M. Munoz-Pacheco, 2022. "Chaotic Behaviors and Coexisting Attractors in a New Nonlinear Dissipative Parametric Chemical Oscillator," Complexity, Hindawi, vol. 2022, pages 1-16, March.
    13. Aleksandra Tutueva & Timur Karimov & Denis Butusov, 2020. "Semi-Implicit and Semi-Explicit Adams-Bashforth-Moulton Methods," Mathematics, MDPI, vol. 8(5), pages 1-10, May.
    14. Lin, Hairong & Wang, Chunhua & Sun, Jingru & Zhang, Xin & Sun, Yichuang & Iu, Herbert H.C., 2023. "Memristor-coupled asymmetric neural networks: Bionic modeling, chaotic dynamics analysis and encryption application," Chaos, Solitons & Fractals, Elsevier, vol. 166(C).
    15. Lai, Qiang & Chen, Zhijie, 2023. "Dynamical analysis and finite-time synchronization of grid-scroll memristive chaotic system without equilibrium," Chaos, Solitons & Fractals, Elsevier, vol. 176(C).
    16. Zhou, Shuang & Qiu, Yuyu & Qi, Guoyuan & Zhang, Yingqian, 2023. "A new conservative chaotic system and its application in image encryption," Chaos, Solitons & Fractals, Elsevier, vol. 175(P1).
    17. Aiguo Wu & Shijian Cang & Ruiye Zhang & Zenghui Wang & Zengqiang Chen, 2018. "Hyperchaos in a Conservative System with Nonhyperbolic Fixed Points," Complexity, Hindawi, vol. 2018, pages 1-8, April.
    18. Loïc Beuken & Olivier Cheffert & Aleksandra Tutueva & Denis Butusov & Vincent Legat, 2022. "Numerical Stability and Performance of Semi-Explicit and Semi-Implicit Predictor–Corrector Methods," Mathematics, MDPI, vol. 10(12), pages 1-14, June.
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