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Control on dynamic structural response using active-passive composite-tuned mass dampers

机译:使用主动-被动复合调谐质量阻尼器控制动态结构响应

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In this article, an active-passive composite mass damper system for the vibration control of structures under harmonic base excitation is presented. Earlier studies by the Japanese research team of the Kajima Corporation have shown that such a composite damper system is significantly superior in reducing the peak structural response when compared to employing a single passive mass damper system. The important design aspects of this composite damper system are the appropriate supply of the control forcing function by the actuator and the mass damper parameters. The control forcing function is usually assumed as a linear combination of the structural and damper responses, with the coefficients being referred to as the feedback gains. The authors propose an optimization technique for determining the optimal values of the feedback gains and the damper parameters that minimize the peak structural displacement. They show that the set of feedback gains and damper parameters obtained from the proposed method leads to a greater reduction in the peak structural displacements than those obtained by earlier researchers. [References: 11]
机译:本文提出了一种用于结构在谐波基础激励下的振动控制的主动-被动复合质量阻尼器系统。 Kajima Corporation日本研究团队的早期研究表明,与采用单个被动质量阻尼器系统相比,这种复合阻尼器系统在降低峰值结构响应方面具有明显优势。该复合阻尼器系统的重要设计方面是适当地提供执行器提供的控制强制功能和质量阻尼器参数。通常将控制强迫函数假定为结构响应和阻尼器响应的线性组合,其中系数称为反馈增益。作者提出了一种优化技术,用于确定使峰值结构位移最小的反馈增益和阻尼器参数的最佳值。他们表明,与早期研究人员获得的结果相比,从所提出的方法获得的一组反馈增益和阻尼器参数导致峰值结构位移的减小更大。 [参考:11]

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