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Eigenvalue analysis approach to random periodic parameter-excited stability : application to a stay cable

机译:特征值分析方法用于随机周期性参数激励稳定性:在斜拉索上的应用

摘要

A direct eigenvalue analysis approach to solving the stability problem of randomly and periodically parametrically excited linear systems is developed based on the response moment stability, Floquet theorem, Fourier series, and matrix eigenvalue analysis. A differential equation for the perturbation second moment of parametrically excited systems is obtained. Its solution is expressed as the product of exponential and periodic components based on Floquet theorem. By expanding the periodic component and periodic parameters into Fourier series, an eigenvalue equation is obtained. Then the stochastically and periodically parametrically excited vibration stability is converted into periodically parameter-varying response moment stability and determined directly by matrix eigenvalues. The developed approach to parametrically excited systems is applied to the stability analysis of an inclined stay cable under random and periodic combined support motion excitations. The unstable regions of stochastically and periodically parametrically excited cable vibration are obtained and compared to illustrate the stochastic instability and the effect of random excitation components on the instability. The developed approach is applicable to more general periodically and randomly parametrically excited systems.
机译:基于响应矩稳定性,Floquet定理,傅立叶级数和矩阵特征值分析,提出了一种直接特征值分析方法来解决随机和周期参数激励线性系统的稳定性问题。获得了参数激励系统的摄动第二矩的微分方程。它的解表示为基于Floquet定理的指数和周期分量的乘积。通过将周期分量和周期参数扩展为傅立叶级数,得到特征值方程。然后将随机和周期性参数激励的振动稳定性转换为周期性参数变化的响应矩稳定性,并直接由矩阵特征值确定。将参数激励系统的开发方法应用于斜拉索在随机和周期性组合支撑运动激励下的稳定性分析。获得了随机和周期性参数激励电缆振动的不稳定区域,并进行了比较,以说明随机不稳定和随机激励分量对不稳定的影响。所开发的方法适用于更通用的周期性和随机参数激励系统。

著录项

  • 作者

    Ying ZG; Ni YQ;

  • 作者单位
  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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