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首页> 外文期刊>International Journal of Solids and Structures >A 2-D continuous wavelet transform of mode shape data for damage detection of plate structures
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A 2-D continuous wavelet transform of mode shape data for damage detection of plate structures

机译:模态数据的二维连续小波变换,用于板结构的损伤检测

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摘要

A two-dimensional (2-D) continuous wavelet transform (CWT)-based damage detection algorithm using "Dergauss2d" wavelet for plate-type structures is presented. The 2-D CWT considered in this study is based on the formulation by Antoine et al. (2004). A concept of isosurface of 2-D wavelet coefficients is proposed, and it is generated to indicate the location and approximate shape or area of the damage. The proposed algorithm is a response-based damage detection technique which only requires the mode shapes of the damaged plates. This algorithm is applied to the numerical vibration mode shapes of a cantilever plate with different types of damage to illustrate its effectiveness and viability. A comparative study with other two 2-D damage detection algorithms, i.e., 2-D gapped smoothing method (GSM) and 2-D strain energy method (SEM), is performed, and it demonstrates that the proposed 2-D CWT-based algorithm is superior in noise immunity and robust with limited sensor data. The algorithm is further implemented in an experimental modal test to detect impact damage in an FRP composite plate using smart piezoelectric actuators and sensors, demonstrating its applicability to the experimental mode shapes. The present 2-D CWT-based algorithm is among a few limited studies in the literature to explore the application of 2-D wavelets in damage detection. and as demonstrated in this study, it can be used as a viable and effective technique for damage identification of plate- or shell-type structures.
机译:提出了一种基于二维(2-D)连续小波变换(CWT)的板形结构损伤检测算法,该方法使用“ Dergauss2d”小波。本研究中考虑的二维CWT基于Antoine等人的公式。 (2004)。提出了二维小波系数等值面的概念,并提出了该概念以指示损伤的位置和近似形状或面积。所提出的算法是基于响应的损伤检测技术,其仅需要损伤板的模式形状。将该算法应用于具有不同损伤类型的悬臂板的数值振动模式形状,以说明其有效性和可行性。与其他两种2-D损伤检测算法(即2-D间隙平滑法(GSM)和2-D应变能方法(SEM))进行了比较研究,结果表明,提出的基于2-CWT的该算法具有出色的抗噪性,并且在传感器数据有限的情况下也很健壮。该算法在实验模态测试中进一步实现,以使用智能压电致动器和传感器检测FRP复合板中的冲击损伤,从而证明了其对实验模态形状的适用性。当前的基于二维CWT的算法是文献中为探索二维小波在损伤检测中的应用而进行的有限研究之一。并且如本研究所示,它可作为一种可行且有效的技术来识别板或壳型结构。

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