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Time-frequency representation of earthquake accelerograms and inelastic structural response records using the adaptive chirplet decomposition and empirical mode decomposition

机译:自适应chirplet分解和经验模态分解的地震加速度图和非弹性结构响应记录的时频表示

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摘要

In this paper, the adaptive chirplet decomposition combined with the Wigner-Ville transform and the empirical mode decomposition combined with the Hilbert transform are employed to process various non-stationary signals (strong ground motions and structural responses). The efficacy of these two adaptive techniques for capturing the temporal evolution of the frequency content of specific seismic signals is assessed. In this respect, two near-field and two far-field seismic accelerograms are analyzed. Further, a similar analysis is performed for records pertaining to the response of a 20-story steel frame benchmark building excited by one of the four accelerograms scaled by appropriate factors to simulate undamaged and severely damaged conditions for the structure. It is shown that the derived joint time-frequency representations of the response time histories capture quite effectively the influence of non-linearity on the variation of the effective natural frequencies of a structural system during the evolution of a seismic event; in this context, tracing the mean instantaneous frequency of records of critical structural responses is adopted. The study suggests, overall, that the aforementioned techniques are quite viable tools for detecting and monitoring damage to constructed facilities exposed to seismic excitations.
机译:本文采用结合了Wigner-Ville变换的自适应Chirplet分解和结合了Hilbert变换的经验模态分解来处理各种非平稳信号(强地面运动和结构响应)。评估了这两种自适应技术用于捕获特定地震信号频率内容随时间变化的功效。在这方面,分析了两个近场和两个远场地震加速度图。此外,对与20层钢框架基准建筑物的响应有关的记录进行了类似的分析,该记录由四个加速度图之一激发,并通过适当的因子进行了缩放,以模拟该结构的未损坏和严重损坏的情况。结果表明,导出的响应时间历史的联合时频表示非常有效地捕获了非线性对地震事件演化过程中结构系统有效固有频率变化的影响。在这种情况下,采用追踪关键结构响应记录的平均瞬时频率。总体而言,该研究表明,上述技术是用于检测和监视暴露于地震激发的建筑设施的破坏的相当可行的工具。

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