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Minimization of the mean square velocity response of dynamic structures using an active-passive dynamic vibration absorber

机译:使用主动-被动动态吸振器最小化动态结构的均方速度响应

摘要

An optimal design of a hybrid vibration absorber (HVA) with a displacement and a velocity feedback for minimizing the velocity response of the structure based on the H 2 optimization criterion is proposed. The objective of the optimal design is to reduce the total vibration energy of the vibrating structure under wideband excitation, i.e., the total area under the velocity response spectrum is minimized in this criterion. One of the inherent limitations of the traditional passive vibration absorber is that its vibration suppression is low if the mass ratio between the absorber mass and the mass of the primary structure is low. The active element of the proposed HVA helps further reduce the vibration of the controlled structure, and it can provide very good vibration absorption performance even at a low mass ratio. Both the passive and active elements are optimized together for the minimization of the mean square velocity of the primary system as well as the active force required in the HVA. The proposed HVA was tested on single degree-of-freedom (SDOF) and continuous vibrating structures and compared to the traditional passive vibration absorber.
机译:提出了基于H 2优化准则的具有位移和速度反馈的混合减振器的优化设计,以使结构的速度响应最小。最佳设计的目的是减少宽带激励下振动结构的总振动能量,即在此标准下将速度响应谱下的总面积最小化。传统的被动式减振器的固有局限性之一是,如果减振器质量与初级结构的质量之间的质量比低,则其振动抑制将很低。所提出的HVA的有源元件有助于进一步减小受控结构的振动,并且即使在低质量比的情况下,其也可以提供非常好的振动吸收性能。被动元件和主动元件都进行了优化,以使一次系统的均方速度以及HVA所需的主动力最小。拟议的HVA在单自由度(SDOF)和连续振动结构上进行了测试,并与传统的被动减振器进行了比较。

著录项

  • 作者

    Cheung YL; Wong WO; Cheng L;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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