光学动态测量中不同时间相位分析算法的比较

H. Miao, Y. Fu
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引用次数: 2

摘要

近年来,光学干涉测量已被应用于振动或连续变形物体的全场、非接触测量。在光学动态测量中,通过高速摄像机获得干涉图序列。从该干涉图序列中检索动态相位值可以精确测量连续变形或振动物体的不同运动学和变形参数。本文将该干涉图序列分为两种类型:(i)强度变化;(ii)指数相位信号。采用希尔伯特变换、傅立叶变换、加窗傅立叶变换和小波变换等不同的时域相位提取技术提取仿真信号的相位。讨论了每种算法的优缺点。此外,提出了一种基于傅里叶变换和加窗傅里叶变换相结合的新方法,仿真结果表明,该方法能较好地消除噪声,并能较准确地估计相位。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The comparison of different temporal phase analysis algorithms in optical dynamic measurement
In recent years, optical interferometry has been applied to whole-field, non-contact measurement of vibrating or continuously-deforming objects. In optical dynamic measurement, an interferogram sequence is obtained by a highspeed camera. Retrieving dynamic phase values from this interferogram sequence leads to a precise measurement of different kinematic and deformation parameters of a continuously-deforming or vibrating object. In this paper, this interferogram sequence is classified into two types: (i) intensity variation; and (ii) exponential phase signal. Different temporal phase retrieving techniques, such as Hilbert transform, Fourier transform, windowed Fourier transform and wavelet transform are applied to extract the phase from a simulated signal. The advantage and drawback of each algorithm are discussed. In addition, a new method based on the combination of Fourier transform and windowed Fourier transform is proposed and the simulation shows it can eliminate the noise and evaluate the phase more accurately.
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