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Measurement of Three-Dimensional Deformation Using Speckle Projection Method

机译:散斑投影法测量三维变形

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Optical triangulation is a useful method that has been studied and utilized extensively. In optical triangulation, the directions of projection and the observation are different, so the patterns captured by CCD camera include information of the object surface profile. Based on the speckle projection, a measurement system to get the three-dimensional deformation of object is developed. With artificial random speckle projected to the object surface, two images before and after object deformation are recorded, respectively. In order to get the information of the deformation, digital image correlation method (DICM) is adopted. Furthermore, the calibration is introduced in detail, which is the procedure of great importance, because it determines directly the accuracy of measurement. Due to variable feature of the calibration coefficient along the x direction, this paper presents a new method to be competent for the calibration, that's segmented calibration method. Experiment is performed and good agreement is found with the proposed calibration. Dynamic measurement results based on such system are also presented in this paper.
机译:光学三角测量是一种有用的方法,已经广泛研究和使用。在光学三角测量中,投影和观察的方向是不同的,因此CCD摄像机捕获的图案包括物体表面轮廓的信息。基于散斑投影,开发了一个测量系统,以获得对象的三维变形。对于将人工随机斑点投射到物体表面,分别记录了对象变形之前和之后的两个图像。为了获得变形的信息,采用数字图像相关方法(DICM)。此外,详细介绍了校准,这是重要的过程,因为它直接测量的准确性。由于沿X方向校准系数的可变特征,本文提出了一种竞争校准的新方法,即分段校准方法。实验进行了实验,并在提出的校准中找到了良好的一致性。本文还提出了基于这种系统的动态测量结果。

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