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基于电子散斑干涉法的立体数字图像相关全场精度的实验验证。

Experimental verification of full-field accuracy in stereo-DIC based on the ESPI method.

作者信息

Xu Xiangyang, Ma Yinhang, Shao Xinxing, He Xiaoyuan, Quan Chenggen

出版信息

Appl Opt. 2022 Feb 20;61(6):1539-1544. doi: 10.1364/AO.451341.

Abstract

This paper proposes a method to merge stereo-digital image correlation (DIC) and electronic speckle pattern interferometry (ESPI) data by camera calibration. The proposed method is employed to verify the accuracy of full-field out-of-plate displacements measured by stereo-DIC in a cantilever beam test. The mean absolute error and the root mean square error (RMSE) of the full-field displacement measured by four-megapixel cameras are 0.849 µm and 1.08 µm at 60 mm field of view, respectively, and the RMSE of the central area is 0.615 µm. The errors are not uniformly distributed because of the imperfect calibration. When the lenses are changed and the field of view reaches 120 mm, the RMSE is 1.48 µm with uniform distribution. These accuracies could be traced back to the laser wavelength to confirm the stereo-DIC data. The proposed method can be used not only to verify the full-field measurement accuracy of DIC but also to determine the rigid-body displacement for ESPI with a high-precision stereo-DIC. Thus, the displacement vector can be obtained. Furthermore, it can unify the coordinate of multiple ESPI systems to achieve a large range of high-precision three-dimensional deformation measurements.

摘要

本文提出了一种通过相机校准来合并立体数字图像相关(DIC)和电子散斑图案干涉测量(ESPI)数据的方法。所提出的方法用于在悬臂梁试验中验证立体DIC测量的全场板外位移的准确性。在60mm视场下,四百万像素相机测量的全场位移的平均绝对误差和均方根误差(RMSE)分别为0.849μm和1.08μm,中心区域的RMSE为0.615μm。由于校准不完善,误差分布不均匀。当更换镜头且视场达到120mm时,RMSE为1.48μm,分布均匀。这些精度可以追溯到激光波长以确认立体DIC数据。所提出的方法不仅可以用于验证DIC的全场测量精度,还可以用高精度立体DIC确定ESPI的刚体位移。因此,可以获得位移矢量。此外,它可以统一多个ESPI系统的坐标,以实现大范围的高精度三维变形测量。

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