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On a nonlinear dynamical system with both chaotic and nonchaotic behaviors: a new fractional analysis and control

机译:关于混沌和非混沌行为的非线性动力系统:新的分数分析和控制

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In this paper, we aim to analyze the complicated dynamical motion of a quarter-car suspension system with a sinusoidal road excitation force. First, we consider a new mathematical model in the form of fractional-order differential equations. In the proposed model, we apply the Caputo–Fabrizio fractional operator with exponential kernel. Then to solve the related equations, we suggest a quadratic numerical method and prove its stability and convergence. A?deep investigation in the framework of time-domain response and phase-portrait shows that both the chaotic and nonchaotic behaviors of the considered system can be identified by the fractional-order mathematical model. Finally, we present a?state-feedback controller and a chaos optimal control to overcome the system chaotic oscillations. Simulation results demonstrate the effectiveness of the proposed modeling and control strategies.
机译:在本文中,我们的目的是分析四分之一汽车悬架系统的复杂动态运动,具有正弦道励磁力。 首先,我们考虑一种以分数级微分方程形式的新数学模型。 在拟议的模型中,我们使用指数内核应用Caputo-Fabrizio分数运算符。 然后解决相关方程式,我们建议一种二次数值方法并证明其稳定性和收敛性。 a?在时域响应框架和相位肖像框架中的深入调查表明,可以通过分数阶数学模型来识别所考虑系统的混沌和非混沌行为。 最后,我们提出了一个?状态反馈控制器和混沌最佳控制,以克服系统混沌振荡。 仿真结果表明了建议的建模和控制策略的有效性。

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