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Vibration measurement by temporal Fourier analyses of a digital hologram sequence

机译:通过数字全息图序列的时间傅立叶分析进行振动测量

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摘要

A method for whole-field noncontact measurement of displacement, velocity, and acceleration of avibrating object based on image-plane digital holography is presented. A series of digital holograms of a vibrating object are captured by use of a high-speed CCD camera. The result of the reconstruction is a three-dimensional complex-valued matrix with noise. We apply Fourier analysis and windowed Fourier analysis in both the spatial and the temporal domains to extract the displacement, the velocity, and the acceleration. The instantaneous displacement is obtained by temporal unwrapping of the filtered phase map, whereas the velocity and acceleration are evaluated by Fourier analysis and by windowed Fourier analysis along the time axis. The combination of digital holography and temporal Fourier analyses allows for evaluation of the vibration, without a phase ambiguity problem, and smooth spatial distribution of instantaneous displacement, velocity, and acceleration of each instant are obtained. The comparison of Fourier analysis and windowed Fourier analysis in velocity and acceleration measurements is also presented.
机译:提出了一种基于像面数字全息技术的航空物体全场非接触式位移,速度和加速度测量方法。使用高速CCD相机捕获振动物体的一系列数字全息图。重建的结果是带有噪声的三维复数值矩阵。我们在时域和时域都应用傅立叶分析和开窗傅立叶分析,以提取位移,速度和加速度。瞬时位移是通过对滤波后的相位图进行时间展开来获得的,而速度和加速度是通过傅立叶分析和沿时间轴的开窗傅立叶分析来评估的。数字全息术和时间傅立叶分析的结合允许对振动进行评估,而没有相位模糊性问题,并且可以获得每个瞬间的瞬时位移,速度和加速度的平滑空间分布。还对速度和加速度测量中的傅立叶分析和窗口傅立叶分析进行了比较。

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