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Estimation of dynamically varying displacement derivatives using fringe projection technique

机译:使用条纹投影技术估算动态变化的位移导数

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摘要

This paper presents a pseudo Wigner-Ville-distribution-based method in fringe projection for analyzing temporal behavior of the displacement derivative for a continuously deformed object. In the proposed method, a computer generated fringe pattern is projected on an object undergoing dynamic deformation, and the reflected intensity is recorded in the form of video, i.e., a stack of images are captured sequentially by a CCD camera. Each image represents a recorded fringe pattern at a particular time instant whose phase contains information about the instantaneous out-of-plane displacement or deformation with respect to the undeformed object, and the corresponding spatial phase derivative relates to the displacement derivative. Subsequently, pseudo Wigner-Ville distribution is used for instantaneous phase derivative estimation from the stack of images. Simulation and experimental results are presented to demonstrate the method's potential.
机译:本文提出了一种基于伪Wigner-Ville分布的条纹投影方法,用于分析连续变形物体的位移导数的时间行为。在提出的方法中,将计算机生成的条纹图案投影在经历动态变形的物体上,并且以视频的形式记录反射强度,即,通过CCD相机顺序地捕获图像堆。每个图像代表特定时刻的记录条纹图,其相位包含有关相对于未变形物体的瞬时平面外位移或变形的信息,并且相应的空间相位导数与位移导数有关。随后,伪Wigner-Ville分布用于从图像堆栈中进行瞬时相位导数估计。仿真和实验结果表明了该方法的潜力。

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