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Structural Seismic Damage Detection Using Fractal Dimension of Time-Frequency Feature

机译:基于时频特征的分形维数的结构地震损伤检测

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摘要

In this paper, a data-driven approach to localizing structural damage subjected to ground motion is proposed by using the fractal dimension of the time-frequency features of structural dynamic responses. The time-frequency feature is defined as the real part of wavelet coefficient and the fractal dimension adopts the box-counting method. It is shown that the proposed fractal dimensions at each story of linear system are identical, while the fractal dimension at the stories with nonlinearity is different from those at the stories with linearity. Therefore, the nonlinear behavior of structural damage caused by strong ground motions can be detected and localized through comparing the fractal dimensions of structural responses at different stories. Shaking table test on a uniform 16-story 3-bay steel frame with added friction dampers modelling interstory nonlinear behavior was conducted. The experiment results validate the effectiveness of the proposed method to localize single and multi seismic damage of structures.
机译:本文利用结构动力响应时频特征的分形维数,提出了一种基于数据驱动的结构损伤定位方法。时频特征被定义为小波系数的实部,分形维数采用盒计数法。结果表明,线性系统各层的建议分形维数相同,而非线性系统中的分形维数与线性系统中的分形维数不同。因此,通过比较不同楼层的结构响应的分形维数,可以检测和定位由强烈地面运动引起的结构破坏的非线​​性行为。在一个均匀的16层3托架钢框架上进行了振动台测试,并添加了摩擦阻尼器来模拟层间非线性行为。实验结果验证了该方法定位结构单次和多次地震损伤的有效性。

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