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首页> 外文期刊>Mathematical Problems in Engineering >Fractional-Order Adaptive Backstepping Control of a Noncommensurate Fractional-Order Ferroresonance System
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Fractional-Order Adaptive Backstepping Control of a Noncommensurate Fractional-Order Ferroresonance System

机译:非相称分数阶铁磁谐振系统的分数阶自适应反步控制

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摘要

In this paper, fractional calculus is applied to establish a novel fractional-order ferroresonance model with fractional-order magnetizing inductance and capacitance. Some basic dynamic behaviors of this fractional-order ferroresonance system are investigated. And then, considering non commensurate orders of inductance and capacitance and unknown parameters in an actual ferroresonance system, this paper presents a novel fractional-order adaptive backstepping control strategy for a class of noncommensurate fractional-order systems with multiple unknown parameters. The virtual control laws and parameter update laws are designed in each step. Thereafter, a novel fractional-order adaptive controller is designed in terms of the fractional Lyapunov stability theorem. The proposed control strategy requires only one control input and can force the output of the chaotic system to track the reference signal asymptotically. Finally, the proposed method is applied to a noncommensurate fractional-order ferroresonance system withmultiple unknown parameters. Numerical simulation confirms the effectiveness of the proposed method. In addition, the proposed control strategy also applies to commensurate fractional-order systems with unknown parameters.
机译:本文应用分数阶微积分技术建立了具有分数阶励磁电感和电容的分数阶铁磁谐振模型。研究了该分数阶铁磁共振系统的一些基本动力学行为。然后,考虑到实际铁磁谐振系统中电感和电容的不等阶和未知参数,本文针对一类具有多个未知参数的不等分数阶系统提出了一种新颖的分数阶自适应反推控制策略。在每个步骤中都设计了虚拟控制法则和参数更新法则。此后,根据分数Lyapunov稳定性定理设计了一种新颖的分数阶自适应控制器。所提出的控制策略仅需要一个控制输入,并且可以迫使混沌系统的输出渐近跟踪参考信号。最后,将所提出的方法应用于具有多个未知参数的非相称分数阶铁磁共振系统。数值模拟证实了该方法的有效性。另外,所提出的控制策略也适用于参数未知的相应分数阶系统。

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