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Dynamic Behaviors and the Equivalent Realization of a Novel Fractional-Order Memristor-Based Chaotic Circuit

机译:动态行为与基于新型分数级忆忆混沌电路的等效实现

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This paper proposed a novel fractional-order memristor-based chaotic circuit. A memristive diode bridge cascaded with a fractional-order RL filter constitutes the generalized fractional-order memristor. The mathematical model of the proposed fractional-order chaotic circuit is established by extending the nonlinear capacitor and inductor in the memristive chaotic circuit to the fractional order. Detailed theoretical analysis and numerical simulations are carried out on the dynamic behavior of the proposed circuit by investigating the stability of equilibrium points and the influence of circuit parameters on bifurcations. The results show that the order of the fractional-order circuit has a great influence on the dynamical behavior of the system. The system may exhibit complicated nonlinear dynamic behavior such as bifurcation and chaos with the change of the order. The equivalent circuits of the fractional-order inductor and capacitor are also given in the paper, and the parameters of the equivalent circuits are solved by an undetermined coefficient method. Circuit simulations of the equivalent fractionalorder memristive chaotic circuit are carried out in order to validate the correctness of numerical simulations and the practicability of using the integer-order equivalent circuit to substitute the fractional-order element.
机译:本文提出了一种新颖的分数级忆阻器的混沌电路。用分数级RL滤波器级联的忆阻二极管桥构成广义分数阶Memitristor。所提出的分数顺序混沌电路的数学模型通过将非线性电容器和忆内混沌电路中的电感延伸到分数阶来建立。通过研究平衡点的稳定性和电路参数对分叉电路参数的影响,对提出的电路的动态行为进行了详细的理论分析和数值模拟。结果表明,分数级电路的顺序对系统的动态行为产生了很大影响。该系统可以表现出复杂的非线性动态行为,例如随机的变化而分叉和混沌。本文还给出了分数级电感器和电容器的等效电路,并且通过未确定的系数方法解决了等效电路的参数。执行等效分数码忆失调电路的电路模拟,以验证数值模拟的正确性以及使用整数等效电路代替分数阶元素的实用性。

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