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Reliability improvement of nonlinear ultrasonic modulation based fatigue crack detection using feature-level data fusion

机译:基于特征级数据融合的基于非线性超声调制的疲劳裂纹检测的可靠性提高

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In this study, the reliability of nonlinear ultrasonic modulation based fatigue crack detection is improved using a feature-level data fusion approach. When two ultrasonic inputs at two distinct frequencies are applied to a specimen with a fatigue crack, modulation components at the summation and difference of these two input frequencies appear. First, the spectral amplitudes of the modulation components and their spectral correlations are defined as individual features. Then, a 2D feature space is constructed by combining these two features, and the presence of a fatigue crack is identified in the feature space. The effectiveness of the proposed fatigue crack detection technique is experimentally validated through cyclic loading tests of aluminum plates, full-scale steel girders and a rotating shaft component. Subsequently, the improved reliability of the proposed technique is quantitatively investigated using receiver operating characteristic analysis. The uniqueness of this study lies in (1) improvement of nonlinear ultrasonic modulation based fatigue crack detection reliability using feature-level data fusion, (2) reference-free fatigue crack diagnosis without using the baseline data obtained from the intact condition of the structure, (3) application to full-scale steel girders and shaft component, and (4) quantitative investigation of the improved reliability using receiver operating characteristic analysis.
机译:在这项研究中,使用特征级数据融合方法提高了基于非线性超声调制的疲劳裂纹检测的可靠性。当将两个不同频率的两个超声输入施加到带有疲劳裂纹的样品时,会出现这两个输入频率的总和差处的调制分量。首先,将调制分量的频谱幅度及其频谱相关性定义为单个特征。然后,通过组合这两个特征来构建2D特征空间,并在特征空间中识别疲劳裂纹的存在。疲劳裂纹检测技术的有效性通过铝板,全尺寸钢梁和旋转轴组件的循环载荷试验得到了实验验证。随后,使用接收器工作特性分析来定量研究所提出技术的可靠性。这项研究的独特之处在于:(1)使用特征级数据融合来提高基于非线性超声调制的疲劳裂纹检测的可靠性;(2)不使用结构完整状态获得的基线数据的无参考疲劳裂纹诊断; (3)在大型钢梁和竖井构件中的应用,以及(4)使用接收器工作特性分析对改进的可靠性进行定量研究。

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