Fourier transform method and temporal phase in order to measure frequency, amplitude, and surface profile of a low-frequency vibrating cantilever

C. Meneses-Fabian, R. Rodríguez-Vera, J. Rayas, F. Mendoza-Santoyo, G. Rodríguez-Zurita
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Abstract

A novel method of phase differences extraction is applied in order to study vibrations on a homogenous cantilever. It is achieved considering fringe patterns with carrier frequency and slow varying respect to the time. The technique is based on the Fourier-transform method and by the quotient of the two adjacent frames of the patterns. Fringe pattern is obtained by fringe projection on a fixed end homogenous cantilever, undergoing harmonic vibration. With this technique, we can obtain profiles of different vibrating modes of the cantilever for frequencies less than that of the camera frame rate (33.3 ms). In this communication theoretical analysis and experimental profile modes are shown.
傅立叶变换方法和时间相位,以测量频率,振幅,和表面轮廓的低频振动悬臂
为了研究均匀悬臂梁的振动,提出了一种新的相位差提取方法。考虑了载波频率随时间缓慢变化的条纹图。该技术基于傅里叶变换方法,并通过模式的两个相邻帧的商。通过在固定端均匀悬臂梁上的条纹投影,经过简谐振动得到条纹图案。利用这种技术,我们可以获得频率小于相机帧率(33.3 ms)的悬臂梁不同振动模式的轮廓。在该通信中,给出了理论分析和实验剖面模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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