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Modal identification for superstructure using virtual impulse response

机译:利用虚拟脉冲响应的上部结构模态识别

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摘要

In civil engineering, structural modes are identified with the assumption of stationary white noise, which cannot be satisfied in practical engineering. This article proposes a new method, which contains the virtual impulse response and eigensystem realization algorithm. The formulation of virtual impulse response is derived from the inverse Fourier transform of the ratio of the cross-power to auto-power spectral density functions of the measurement responses, which is based on the concept of frequency response function. During the formulation derivation, a single point excitation is only considered. Frequency response function would not change with different excitations and responses, which means that the excitation cannot influence frequency response function. The impulse response is pointed out to only represent the behavior of superstructure. After obtaining impulse responses, eigensystem realization algorithm is then performed to identify the modes of superstructure. The proposed method is validated by a numerical example. The results show that virtual impulse response can have much better free decayed behavior than natural excitation technique and identify very precise modal parameters for superstructure.
机译:在土木工程中,结构模式是在静态白噪声假设下确定的,这在实际工程中是无法满足的。本文提出了一种新的方法,该方法包含虚拟冲激响应和本征系统实现算法。虚拟脉冲响应的公式是根据频率响应函数的概念,根据测量响应的交叉功率与自功率谱密度函数之比的傅立叶逆变换得出的。在公式推导过程中,仅考虑单点激励。频率响应函数不会随不同的激励和响应而变化,这意味着激励不会影响频率响应函数。指出脉冲响应仅表示上部结构的行为。在获得冲激响应后,执行本征系统实现算法以识别上部结构的模式。数值算例验证了该方法的有效性。结果表明,虚拟冲激响应具有比自然激励技术更好的自由衰减行为,并且可以为上层建筑确定非常精确的模态参数。

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