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Anti‐Synchronization of Fractional‐Order Chaotic Circuit with Memristor via Periodic Intermittent Control

Author

Listed:
  • Fanqi Meng
  • Xiaoqin Zeng
  • Zuolei Wang
  • Xinjun Wang

Abstract

In this paper, the anti‐synchronization of fractional‐order chaotic circuit with memristor (FCCM) is investigated via a periodic intermittent control scheme. Based on the principle of periodic intermittent control and the Lyapunov stability theory, a novel criterion is adopted to realize the anti‐synchronization of FCCM. Finally, some examples of numerical simulations are exploited to verify the feasibility of theoretical analysis.

Suggested Citation

  • Fanqi Meng & Xiaoqin Zeng & Zuolei Wang & Xinjun Wang, 2020. "Anti‐Synchronization of Fractional‐Order Chaotic Circuit with Memristor via Periodic Intermittent Control," Advances in Mathematical Physics, John Wiley & Sons, vol. 2020(1).
  • Handle: RePEc:wly:jnlamp:v:2020:y:2020:i:1:n:5158489
    DOI: 10.1155/2020/5158489
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    References listed on IDEAS

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    1. Deissenberg, Christophe, 1980. "Optimal Control of Linear Econometric Models with Intermittent Controls," Economic Change and Restructuring, Springer, vol. 16(1), pages 49-56.
    2. Dmitri B. Strukov & Gregory S. Snider & Duncan R. Stewart & R. Stanley Williams, 2009. "Erratum: The missing memristor found," Nature, Nature, vol. 459(7250), pages 1154-1154, June.
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