Crisis‐induced coexisting multiple attractors in a second‐order nonautonomous memristive diode bridge‐based circuit |
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Authors: | Q Xu QL Zhang H Qian HG Wu BC Bao |
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Affiliation: | School of Information Science and Engineering, Changzhou University, Changzhou, Jiangsu, China |
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Abstract: | This paper reports a second‐order nonautonomous memristive diode bridge‐based circuit, upon which a system model is established. The AC and DC equilibrium points and their stability evolutions are theoretically analyzed, and the mechanisms of complex dynamical behaviors are explored in detail. Furthermore, the stimulus‐dependent dynamical behaviors are numerically performed by the single‐parameter bifurcation diagrams, Lyapunov exponents, and phase portraits. Of particular concern, it should be highly emphasized that multiple kinds of crisis scenarios associated with the initial conditions are found in a specified parameter region, resulting in that coexisting multiple attractors under different initial conditions are discovered for the fixed system parameters. Additionally, hardware experiments and PSpice circuit simulations are used to confirm the numerically simulated results. |
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Keywords: | coexisting multiple attractors crisis memristive diode bridge stimulus‐dependent dynamics |
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