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Hopf Bifurcation Control for Some Nonlinear Torsional Vibration System with Delayed Feedbacks

机译:具有时滞反馈的非线性扭振系统的Hopf分岔控制。

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Torsional vibration generally causes serious instability and great damage in many rotating machinery. Hopf bifurcation control for some nonlinear torsional vibration system with delayed feedbacks is investigated. On the basis of the generalized dissipation Lagrange’s equation, the dynamics equation of nonlinear torsional vibration system is established, and a nonlinear time-delayed feedback controller is proposed. Under the condition of primary resonance, perturbation analysis of the controlled system is carried out with the method of multiple scales. The influence of time delays on Hopf bifurcation and limit cycle in torsional vibration system is studied. The stability conditions and amplitude formula of limit cycle are given. Finally, numerical simulations are performed to verify the analytical results. The conclusion can provide theoretical reference for further research on more complexed mechanical drive system.
机译:扭转振动通常会在许多旋转机械中造成严重的不稳定性和巨大的损坏。研究了一类具有时滞反馈的非线性扭转振动系统的Hopf分岔控制。在广义耗散拉格朗日方程的基础上,建立了非线性扭转振动系统的动力学方程,并提出了一种非线性时滞反馈控制器。在一次共振条件下,采用多尺度法对受控系统进行扰动分析。研究了时滞对扭转振动系统中霍夫分支和极限环的影响。给出了极限环的稳定性条件和振幅公式。最后,进行数值模拟以验证分析结果。该结论可为进一步研究更复杂的机械传动系统提供理论参考。

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