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Application of Wavelet Transform for Analyzing Instantaneous Contour of Continual Deformation Object

机译:小波变换在连续变形物体瞬时轮廓分析中的应用

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摘要

The reconstruction of instantaneous contour is a common method to analyze the kinetic characteristic of a continual deformation object. In this paper a continuous wavelet transform method (CWT) is applied to analyze the instantaneous contour of a continual deformation object based on shadow moire technique. The modulated moire fringe patterns are captured by use of a high-speed CCD camera and the temporal intensity variation of each pixel related to the object deformations is recorded. The intensity variation of each pixel is analyzed along the time axis by CWT. From the extraction of the ridges and from the value of the CWT along the ridges, the information of modulated phase relative to the contour of object can be obtained. In this application, a cantilever beam with a motion in the Z direction is tested by use of the method and the high-quality instantaneous contour of the continual deformation object can be retrieved. Experimental results prove that the CWT can successfully be applied to the instantaneous contour analysis of continual deformation object and these results demonstrate the advantages of the CWT with respect to the applicable simplicity and the resistance of noise pollution.
机译:瞬时轮廓的重建是分析连续变形物体动力学特性的常用方法。本文采用连续小波变换方法(CWT)基于阴影云纹技术分析连续变形物体的瞬时轮廓。通过使用高速CCD相机捕获调制的莫尔条纹图案,并记录与物体变形有关的每个像素的时间强度变化。 CWT沿时间轴分析每个像素的强度变化。从脊的提取和沿脊的CWT的值,可以获得相对于物体轮廓的调制相位的信息。在该应用中,使用该方法测试了在Z方向上运动的悬臂梁,并且可以获取连续变形对象的高质量瞬时轮廓。实验结果证明,CWT可以成功地应用于连续变形物体的瞬时轮廓分析,这些结果证明了CWT在适用性和抗噪声污染方面的优势。

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