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Optimal design of a hysteretic vibration absorber using fixed-points theory

机译:基于定点理论的磁滞减振器的优化设计

摘要

H∞ optimum parameters of a dynamic vibration absorber (DVA) using a hysteretic or structural damping element have been derived analytically for suppressing vibration of a single degree-of-freedom (SDOF) system excited by harmonic forces or due to ground motions. Although the frequency response function of the traditional DVA (TDVA) with viscous damping may be converted to that of the hysteretic DVA (HDVA) using the equivalent viscous damping coefficient, it is found that the two frequency response functions are not equivalent after the optimization process. Therefore, the optimum parameters of the HDVA are derived using the fixed-points theory rather than converted directly from the TDVA model. The analytical results show that the optimized hysteretic vibration absorber can provide a similar vibration reduction effect as the optimized traditional dynamic vibration absorber at the resonance of a SDOF primary vibrating system. Advantages as well as the limitations of the fixed-points theory for the H∞ optimization of the hysteretic dynamic vibration absorbers using the fixed-points theory are discussed.
机译:分析地推导了使用滞后或结构阻尼元件的动态减震器(DVA)的H∞最佳参数,以抑制由谐波力或地面运动引起的单自由度(SDOF)系统的振动。尽管可以使用等效粘性阻尼系数将具有粘性阻尼的传统DVA(TDVA)的频率响应函数转换为滞后DVA(HDVA)的频率响应函数,但是发现在优化过程之后,这两个频率响应函数并不相等。因此,HDVA的最佳参数是使用定点理论导出的,而不是直接从TDVA模型转换而来的。分析结果表明,在SDOF一次振动系统的共振下,优化的滞后减振器可提供与优化的传统动态减振器相似的减振效果。讨论了不动点理论在利用不动点理论对滞后动态减振器进行H∞优化方面的优势和局限性。

著录项

  • 作者

    Wong WO;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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