Vibration Suppression of a Harmonically Forced Oscillator via a Parametrically Excited Centrifugal Pendulum

Aakash Gupta, Wei-Che Tai
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Abstract

Vibration suppression has been a widely studied topic for a long time, with various modifications in passive vibration mitigation devices to improve the efficacy. One such modification is the addition of the inerter. The inerter has been integrated into various vibration mitigation devices, whose mass amplification effect could be used to enhance the performance of dynamic vibration absorbers. In the current study, we consider an inerter based pendulum vibration absorber (IPVA) system and conduct a theoretical study on vibration suppression of the device. The IPVA system operates based on the principle of nonlinear energy transfer, wherein the energy of the primary structure is transferred into the pendulum vibration absorber. This is the result of parametric resonance of the pendulum, where the primary resonance of the system becomes unstable and a harmonic regime containing a frequency half the resonant frequency emerges (referred to as secondary regime). We use the harmonic balance method along with bifurcation analysis using Floquet theory to study the stability of primary resonance. It is observed that a pitchfork bifurcation and period-doubling bifurcation are necessary for nonlinear energy transfer to occur. Furthermore, we integrate the IPVA with a linear, harmonically forced oscillator to demonstrate its efficacy compared with a linear benchmark. We also examine the effects of various system parameters on the occurrence of the secondary regime. Moreover, we verify the nonlinear energy transfer phenomenon (due to the occurrence of the secondary regime) by numerical Fourier analysis.
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参数激振离心摆对谐波强迫振荡器的抑制
长期以来,振动抑制一直是一个广泛研究的课题,人们对被动振动抑制装置进行了各种修改,以提高其效果。其中一种修改是增加干涉器。该干涉器已被集成到各种减振装置中,其质量放大效应可用于提高动态吸振器的性能。在本研究中,我们考虑了一种基于干涉器的摆振吸收器(IPVA)系统,并对该装置的振动抑制进行了理论研究。IPVA系统基于非线性能量传递原理工作,其中主结构的能量传递到摆振减振器中。这是摆参量共振的结果,系统的主共振变得不稳定,出现了频率为谐振频率一半的谐波区(称为次级区)。利用谐波平衡法,结合Floquet理论的分岔分析,研究了主共振的稳定性。观察到非线性能量传递的发生需要干草叉分岔和倍周期分岔。此外,我们将IPVA与线性谐波强制振荡器集成,以证明其与线性基准相比的有效性。我们还研究了各种系统参数对次级状态发生的影响。此外,我们通过数值傅里叶分析验证了非线性能量传递现象(由于二次区的出现)。
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