基于数字图像相关和透镜畸变校正的平面内位移测量

S. Yoneyama, A. Kitagawa, Koji Kitamura, H. Kikuta
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引用次数: 71

摘要

本文介绍了一种基于数字图像相关和透镜畸变校正的二维位移测量方法。使用单个交叉光栅作为校准基准。利用二维傅里叶变换,分析了光栅图样的相位,并从解包裹的相位图中得到了透镜畸变分布。在检测到透镜畸变后,利用最小二乘法确定透镜畸变系数。然后,得到了不考虑透镜畸变的位移分布。将该方法应用于刚体平移试验和单轴拉伸试验,验证了该方法的有效性。结果表明,所提出的畸变校正方法消除了透镜畸变对测量位移的影响。通过提出的方法,即使图像因透镜畸变而变形,也可以进行精确的测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-Plane Displacement Measurement Using Digital Image Correlation with Lens Distortion Correction
Two-dimensional displacement measurement using digital image correlation with lens distortion correction is described in this paper. A single cross-grating is used as a calibration reference. Using two-dimensional Fourier transform, the phases of the grating pattern are analyzed and lens distortion distribution is obtained from the unwrapped phase maps. After detecting lens distortion, the coefficients of lens distortion are determined using the least-squares method. Then, the displacement distributions without the lens distortion are obtained. The effectiveness of the method is demonstrated by applying the proposed method to the rigid body translation test and the uniaxial tension test. The results show that the proposed distortion correction method removes the effect of lens distortion from the measured displacements. By the proposed method, accurate measurements can be performed even if images are deformed by lens distortion.
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