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Design and development of an Active Mass Damper for broadband vibration control

机译:主动质量阻尼器的设计和开发,用于宽带振动控制

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Civil structures experience vibrations due to natural dynamic forces such as earthquakes and wind loads. Often, mass-spring system is used to reduce such vibrations. The mass-spring system can either serve as absorbers or dampers. Usually, such system is tuned to absorb or damp a single frequency of excitation or resonance frequency respectively. However, ability to vary the absorber's natural frequency would allow broadband vibration absorption. In this paper, an Active Mass Damper (AMD) is presented to eliminate broadband vibration. The lowest frequencies are the main interest as they cause larger displacement. The AMD is tuned actively to match the first three resonance frequencies of a three story building model thus making it effective for a broadband vibration control. The tuning of AMD's natural frequency is done using piezoelectric patch that effectively change its stiffness. Simulation studies on the performances of the AMD are shown. The optimal location of the AMD is also identified. The findings of this study shows reduction in all response of the individual floors at the resonance frequencies.
机译:土木结构会受到自然动力(例如地震和风荷载)的振动。通常,质量弹簧系统用于减少此类振动。质量弹簧系统既可以用作减震器,也可以用作减震器。通常,将这样的系统调谐成分别吸收或衰减激励或共振频率的单个频率。但是,改变吸收器固有频率的能力将允许宽带振动吸收。在本文中,提出了一种主动质量阻尼器(AMD),以消除宽带振动。最低频率是主要关注点,因为它们会导致更大的位移。 AMD进行了积极调整,以匹配三层建筑模型的前三个共振频率,从而使其有效地用于宽带振动控制。 AMD的固有频率的调整是通过使用压电贴片来完成的,该贴片可以有效地改变其刚度。显示了对AMD性能的仿真研究。还确定了AMD的最佳位置。这项研究的结果表明,在共振频率下,各个楼层的所有响应都减小了。

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