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Recursive Hilbert-Huang Transform Method for Time-Varying Property Identification of Linear Shear-Type Buildings under Base Excitations

机译:底激励下线性剪切型建筑物时变特性识别的递归希尔伯特-黄变换方法

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摘要

This paper presents a recursive Hilbert-Huang transform method for the time-varying property identification of shear-type buildings under base excitations. To overcome nonorthogonality and modal perturbation issues, all significant intrinsic mode functions of each signal and their Hilbert transforms were summed to track any variation of structural parameters of a multistory building over time. Given floor masses, both the stiffness and damping coefficients of the building were identified one by one from the top to bottom story. The overall accuracy of the identified parameters was measured by an index of accuracy based on the weighted root-mean-squared evaluation proposed in this study. One- and two-story shear buildings with abruptly, gradually, and periodically varying parameters were used as examples. The numerical results indicated that the proposed method is efficient, robust, and accurate in tracking variations of the properties of multistory buildings. Finally, the proposed method was applied into the identification of the time-varying natural frequency of a real-world high-voltage switch structure due to the friction mechanism used in the switch. The range of the identified frequency by the proposed method was in good agreement with that attained by the conventional least-squares method.
机译:本文提出了一种基于Hilbert-Huang递归的递归方法,用于在基础激励下识别剪力型建筑物的时变特性。为了克服非正交性和模态扰动问题,每个信号的所有重要固有模式函数及其希尔伯特变换都经过求和,以跟踪多层建筑物的结构参数随时间的变化。在给定地板质量的情况下,从顶部到底部逐层识别建筑物的刚度和阻尼系数。根据本研究中提出的加权均方根评估,通过准确性指标来衡量所识别参数的整体准确性。以具有突然,逐渐和周期性变化的参数的一层和两层剪切建筑为例。数值结果表明,所提出的方法在跟踪多层建筑物性能变化方面是高效,鲁棒和准确的。最后,将所提出的方法应用于基于开关中的摩擦机制的现实世界高压开关结构的时变固有频率的识别。所提出的方法确定的频率范围与常规最小二乘法所获得的范围很好。

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