首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Vibration control for the parametrically excited van der Pol oscillator by nonlocal feedback
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Vibration control for the parametrically excited van der Pol oscillator by nonlocal feedback

机译:非局部反馈对参激范德波尔振荡器的振动控制

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摘要

A nonlocal feedback is used for the control of nonlinear vibrations in a parametrically excited van der Pol oscillator. A nonlocal control force is introduced in order to obtain a third-order nonlinear differential equation (jerk dynamics). Using the asymptotic perturbation method, two slow flow equations on the amplitude and phase of the response are obtained, and subsequently the performance of the control strategy is investigated. Parametric excitation-response and frequency-response curves are shown. Uncontrolled and controlled systems are compared, and the appropriate choices of the feedback gains for reducing the amplitude peak of the response are found. Energy considerations are used in order to study the existence and characteristics of limit cycles of the slow flow equations. A limit cycle corresponds to a two-period modulated motion for the van der Pol oscillator. To exclude the possibility of quasi-periodic motion and to reduce the amplitude peak of the parametric resonance, appropriate choices of the feedback gains are found. Numerical simulation confirms the validity of the new method.
机译:非局部反馈用于控制参数激发的范德波尔振荡器中的非线性振动。为了获得三阶非线性微分方程(急动动力学),引入了非局部控制力。使用渐近摄动法,得到了响应幅度和相位的两个慢流方程,随后研究了控制策略的性能。显示了参数激励响应曲线和频率响应曲线。比较了不受控制的系统和受控制的系统,并找到了用于减小响应幅度峰值的反馈增益的适当选择。为了研究慢流方程极限环的存在和特性,使用了能量方面的考虑。极限周期对应于范德波尔振荡器的两周期调制运动。为了排除准周期运动的可能性并减小参数共振的振幅峰值,找到了适当的反馈增益选择。数值模拟证实了该方法的有效性。

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