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Edge detection of internal defects based on the hidden singularity of gradient streamlines obtained by continuous wavelet transform

机译:基于连续小波变换获得的梯度流线隐藏奇异性的内部缺陷边缘检测

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摘要

A method based on the measurement of out-of-plane displacement by the phase-shifting digital speckle pattern interferometry is proposed to detect the edge of internal defects. The out-of-plane displacement is scanned by the scanning method of gradient streamlines first, which can provide paths through the defect edge with the best signal-to-noise ratio everywhere. Then, continuous wavelet transform (CWT) combined with the weighted structural intensity of the wavelet maxima is applied to detect the hidden singularities of the gradient streamlines that form the defect edge later. Moreover, the weighted structural intensity method is optimized to adapt to the detection of the hidden singularity by CWT. The results of theory, simulation, and experiments agree well, and the proposed method is efficient in internal defect detection
机译:提出了一种基于相移数字散斑干涉测量平面外位移的方法来检测内部缺陷的边缘。首先通过梯度流线的扫描方法来扫描面外位移,这可以为穿过缺陷边缘的路径提供最佳的信噪比。然后,将连续小波变换(CWT)与小波最大值的加权结构强度相结合,以检测稍后形成缺陷边缘的梯度流线的隐藏奇点。此外,优化了加权结构强度方法,以适应CWT对隐藏奇异点的检测。理论,仿真和实验结果吻合良好,所提方法有效地检测了内部缺陷

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