首页> 外文会议>Conference on Health Monitoring and Smart Nondestructive Evaluation of Structural and Biological Systems III; 20040315-20040317; San Diego,CA; US >Dynamic Characterization of a Damaged Beam using Empirical Mode Decomposition and Hilbert Spectrum method
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Dynamic Characterization of a Damaged Beam using Empirical Mode Decomposition and Hilbert Spectrum method

机译:经验模态分解和希尔伯特谱法动态表征损伤梁

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摘要

Recently, the empirical mode decomposition (EMD) in combination with the Hilbert spectrum method has been proposed to identify the dynamic characteristics of linear structures. In this study, this EMD and Hilbert spectrum method is used to analyze the dynamic characteristics of a damaged reinforced concrete (RC) beam in the laboratory. The RC beam is 4m long with a cross section of 200~(mm) x250~(mm). The beam is sequentially subjected to a concentrated load of different magnitudes at the mid-span to produce different degrees of damage. An impact load is applied around the mid-span to excite the beam. Responses of the beam are recorded by four accelerometers. Results indicate that the EMD and Hilbert spectrum method can reveal the variation of the dynamic characteristics in the time domain. These results are also compared with those obtained using the Fourier analysis. In general, it is found that the two sets of results correlate quite well in terms of mode counts and frequency values. Some differences, however, can be seen in the damping values, which perhaps can be attributed to the linear assumption of the Fourier transform.
机译:最近,经验模式分解(EMD)结合希尔伯特频谱方法已被提出来识别线性结构的动态特性。在这项研究中,此EMD和希尔伯特频谱方法用于分析实验室中受损钢筋混凝土(RC)梁的动力特性。 RC梁的长度为4m,横截面为200〜(mm)x250〜(mm)。光束在中跨连续受到不同大小的集中载荷,以产生不同程度的损坏。在中跨周围施加冲击载荷以激发光束。光束的响应由四个加速度计记录。结果表明,EMD和希尔伯特谱方法可以揭示时域动态特性的变化。还将这些结果与使用傅立叶分析获得的结果进行比较。通常,发现两组结果在模式计数和频率值方面具有很好的相关性。但是,在阻尼值上可以看到一些差异,这也许可以归因于傅立叶变换的线性假设。

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