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Accurate methods for frequency responses and their sensitivities of proportionally damped systems

机译:比例阻尼系统的频率响应及其灵敏度的精确方法

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A modal acceleration method for frequency responses and a double modal acceleration method for their sensitivities are derived for proportionally damped systems in this paper. These two methods are based on the power series ex- pansion and modal superposition of the dynamic flexible matrix. Three steps are required to calculate the sensitivities of the frequency responses by using the proposed methods. Two modal truncation schemes, middle-high-modal trunca- tion and low--high-modal truncation, are presented according to the values of the excited frequencies. General stiffness and mass matrices, which are the combinations of stiffness and damping matrices, mass and damping matrices, re- spectively, are introduced before the power series expansion is applied. This makes the modal truncated errors of frequency responses and their sensitivities reduce quickly with an increase of the number of the power series item. The modal truncated errors of the frequency responses and their sensitivities are also presented to examine the advantages and convergence of the two modal acceleration methods. It can be seen that the methods for the frequency responses and their sensitivities of undamped systems can be looked as a particular case of the present methods. Although the frequency responses and their sensitivities are discussed in this paper, the proposed methods are also valid for the frequency response functions, responses in time domain and their sensitivities. The results of a two-dimensional frame show that the proposed acceleration methods are efficient.
机译:针对比例阻尼系统,推导了频率响应的模态加速度方法和灵敏度的双模态加速度方法。这两种方法都基于动态柔性矩阵的幂级数展开和模态叠加。通过使用所提出的方法,需要三个步骤来计算频率响应的灵敏度。根据激励频率的值,提出了两种模态截断方案:中高模态截断和低高模态截断。在应用幂级数展开之前,分别介绍了一般的刚度和质量矩阵,这些刚度和质量矩阵分别是刚度和阻尼矩阵,质量和阻尼矩阵的组合。随着功率系列项的数量增加,频率响应的模态截断误差及其灵敏度迅速降低。还提出了频率响应的模态截断误差及其灵敏度,以检验两种模态加速方法的优势和收敛性。可以看出,用于无阻尼系统的频率响应及其灵敏度的方法可以看作是本方法的特殊情况。尽管本文讨论了频率响应及其灵敏度,但所提出的方法对于频率响应函数,时域响应及其灵敏度也是有效的。二维框架的结果表明,所提出的加速方法是有效的。

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