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Damage identification for beams in noisy conditions based on Teager energy operator-wavelet transform modal curvature

机译:基于Teager能量算子-小波变换模态曲率的噪声条件下光束损伤识别

摘要

Modal curvatures have been widely used in the detection of structural damage. Attractive features of modal curvature include great sensitivity to damage and instant determination of damage location. However, an intrinsic deficiency in a modal curvature is its susceptibility to the measurement noise present in the displacement mode shape that produces the modal curvature, likely obscuring the features of damage. To address this deficiency, the Teager energy operator together with wavelet transform is tactically utilized to treat modal curvature, producing a new modal curvature, termed the Teager energy operator-wavelet transform modal curvature. This new modal curvature features distinct capabilities of suppressing noise, canceling global trends, and intensifying the singular feature caused by damage for a measured mode shape involving noise. These features maximize the sensitivity to damage and accuracy of damage localization. The proposed modal curvature is demonstrated in several analytical cases of cracked pinned-pinned, clamped-free and clamped-clamped beams, with emphasis on characterizing damage in noisy conditions, and it is further validated by an experimental program using a scanning laser vibrometer to acquire mode shapes of a cracked aluminum beam. The Teager energy operator-wavelet transform modal curvature essentially overcomes the deficiency of conventional modal curvature, providing a new dynamic feature well suited for damage characterization in noisy environments. (The Matlab code for implementing Teager energy operator-wavelet transform modal curvature can be provided by the corresponding author on request.)
机译:模态曲率已广泛用于结构损伤的检测。模态曲率的吸引人的特征包括对损伤的高度敏感性和对损伤位置的即时确定。但是,模态曲率的一个内在缺陷是它对产生模态曲率的位移模式形状中存在的测量噪声的敏感性,这很可能掩盖了损伤的特征。为了解决这一缺陷,从策略上将Teager能量算子与小波变换一起用于模态曲率,从而产生一个新的模态曲率,称为Teager能量算子-小波变换模态曲率。这种新的模态曲率具有独特的抑制噪声,消除全局趋势以及增强由涉及噪声的测量模态形状损坏引起的奇异特征的功能。这些功能最大限度地提高了对损坏的敏感度和损坏定位的准确性。拟议的模态曲率在开裂的销钉销钉,无夹钳和夹钳的梁的几种分析案例中得到了证明,重点是表征在嘈杂条件下的损伤,并通过使用扫描激光振动计获取的实验程序进行了进一步验证。裂纹的铝梁的模态形状。 Teager能量算子-小波变换模态曲率从根本上克服了常规模态曲率的不足,提供了一种新的动态特征,非常适合在嘈杂的环境中进行损伤表征。 (用于实现Teager能量算子-小波变换模态曲率的Matlab代码可以由相应的作者根据要求提供。)

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