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Vibration suppression of a viscoelastic isolation system by nonlinear integral resonant controller

机译:非线性整体谐振控制器的粘弹性隔离系统的振动抑制

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摘要

The nonlinear integral resonant controller (NIRC) is implemented and analyzed to control the vibration of a viscoelastic isolation system under harmonic excitation. The NIRC consists of a first-order resonant integrator, which provides additional damping in the closed-loop system to reduce the high-amplitude vibration near the resonance frequency. The method of multiple scales is applied to analytically find the relationship of the amplitude-frequency response of the viscoelastic isolation system. Besides, the equation of the backbone curve satisfied is derived. Meanwhile, the suppression performance is verified based on time-domain analysis. It is found that the NIRC can effectively suppress vibration and improve stability of the viscoelastic isolation system. Furthermore, the influence of the detuning parameters, the real-power exponent, the viscoelastic damping, and the external excitation amplitude on the stability regions is investigated. Overall, the vibration reduction mechanism of the NIRC on the viscoelastic isolation system is revealed.
机译:实施和分析非线性整体谐振控制器(NIRC)以控制谐波激发下粘弹性隔离系统的振动。 NIRC由一阶谐振积分器组成,其在闭环系统中提供额外的阻尼,以减小谐振频率附近的高幅度振动。应用多个尺度的方法来分析地找到粘弹性隔离系统的幅度频率响应的关系。此外,满足骨干曲线的等式。同时,根据时域分析验证抑制性能。结果发现,NIRC可以有效地抑制振动并提高粘弹性隔离系统的稳定性。此外,研究了静谐参数,实际功率指数,粘弹性阻尼和稳定区域上的外部激励幅度的影响。总的来说,揭示了NIRC在粘弹性隔离系统上的减振机制。

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