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Efficient targeted energy transfer of bistable nonlinear energy sink: application to optimal design

机译:高效的目标电能下降能量转移:优化设计应用

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This paper is dedicated to the optimal design of a bistable nonlinear energy sink (NES) for the vibration control of a periodically excited linear oscillator. This system with negative linear and cubic nonlinear coupling is analytically studied with the method of multiple scales. As a result, a slow invariant manifold is obtained and is applied to predict four typical response regimes at different energy levels. Moreover, asymptotic analysis and Melnikov analysis are, respectively, used to obtain the thresholds of these typical responses. Through their efficiency comparison, it is observed that the bistable NES can be efficient and robust in a broad range of excitation amplitude. With the Hilbert transform and wavelet transform, targeted energy transfer with transient or permanent 1:1 resonance is found to be responsible for the effectiveness of such responses as strongly modulated response and 1:1 resonance. Finally, an optimal design criterion and a corresponding parameter configuration are proposed to guide the application of this type of NES.
机译:本文专用于用于周期性激发线性振荡器的振动控制的双稳态非线性能量水槽(NES)的最佳设计。用多个尺度的方法分析具有负线性和立方非线性耦合的该系统。结果,获得了慢速歧管,并应用于在不同能量水平下预测四个典型的响应制度。此外,分别用于获得这些典型反应的阈值的渐近分析和Melnikov分析。通过其效率比较,观察到在广泛的激励幅度方面可以是有效和稳健的。通过Hilbert变换和小波变换,发现具有瞬态或永久性的有针对性的能量转移:1谐振是负责这种反应的效应的有效性,以及1:1的共振。最后,提出了最佳设计标准和相应的参数配置来指导这种类型的NE的应用。

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