基于HHT和NExT的结构参数识别

Yongli Zhang, R. Li
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引用次数: 1

摘要

信号处理方法在地震工程领域,特别是结构模态参数的识别中有着广泛的应用。Hilbert-Huang变换(HHT)是一种新的信号处理方法,可用于识别剪切型结构的模态频率、阻尼比、模态振型甚至层间刚度,并结合自然激励技术(NExT)方法从结构的响应记录中获取信息。结构刚度对判断其地震后承载力损失具有重要意义。然而,使用HHT和NExT计算结构的刚度需要所有的模态参数,这意味着响应记录必须包含所有的模态信息。然而,已经发现记录的结构响应只包含前阶模态信息;即使是地震也会使它兴奋。因此,有必要找到一个(多个)公式来计算仅使用有限模态参数的刚度。本文用柔度法推导了剪力型结构层间刚度的计算公式,表明只要求出任意一组模态参数,就可以求出所有的层间刚度。然后,以1994年北桥地震中喜来登环球酒店为例,利用HHT和NExT对其模态参数进行辨识,并利用推导出的公式计算层间刚度,验证了公式的适用性和准确性。
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Identification of Structural Parameters Based on HHT and NExT
Signal processing approaches are widely used in the field of earthquake engineering, especially in the identification of structural modal parameters. Hilbert-Huang Transformation (HHT) is one new signal processing approach, which can be used to identify the modal frequency, damping ratio, mode shape, even the interlayer stiffness of the shear-type structure, incorporating with Natural Excitation Technique (NExT) method to take information from the response records of the structure. The stiffness of the structure is of great importance to judge the loss of its bearing capacity after earthquake. However, all of modal parameters are required to calculate the stiffness of the structure by use of HHT and NExT, which means that the response records shall contain all of modal information. However, it has been found that the responses of the structure recorded only contain the former order modal information; even it is excited by earthquake. Therefore, it is necessary to found a formula (formulas) to calculate the stiffness only using limited modal parameters. In this paper, the calculation formulas of the interlayer stiffness of shear-type structure are derived by using of the flexibility method, which indicate that all of interlayer stiffnesses could be worked out as long as any one set of modal parameters is obtained. After that, Taking Sheraton-Universal Hotel subjected to North Bridge earthquake in 1994 as an example, HHT and NExT are used to identify its modal parameters, the derived formulas are used to calculate the interlayer stiffnesses, and their applicability and accuracy are verified.
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