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Bifurcation control of a flexible beam under principal parametric excitation

机译:主参量激励下柔性梁的分叉控制

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A new approach is proposed in this paper for the nonlinear control of a flexible cantilever beam which is excited under a principal parametric vibration. The approach is based on a bifurcation control principle that combines linear and nonlinear feedback control strategies. A simplified nonlinear vibration model that accounts for the beam's flexibility and the control feedback, is first derived by using the method of multiple scales. The analysis of stability based on Krasovskii's theorem is then applied to the above system. Simulation results show that the proposed approach is effective for use in the case of parametric vibration control.
机译:本文提出了一种新的方法来非线性控制挠性悬臂梁,该悬臂梁在主参数振动下被激发。该方法基于结合线性和非线性反馈控制策略的分叉控制原理。首先,使用多尺度方法推导了简化的非线性振动模型,该模型考虑了梁的柔韧性和控制反馈。然后将基于Krasovskii定理的稳定性分析应用于上述系统。仿真结果表明,该方法在参数振动控制中是有效的。

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