首页> 外文期刊>The Journal of Strain Analysis for Engineering Design >Robust Stereo Vision And Calibration Methodology For Accurate Three-dimensional Digital Image Correlation Measurements On Submerged Objects
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Robust Stereo Vision And Calibration Methodology For Accurate Three-dimensional Digital Image Correlation Measurements On Submerged Objects

机译:可靠的立体视觉和校准方法,可对淹没物体进行精确的三维数字图像相关测量

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摘要

The effect of optical refraction at an interface between optically dissimilar media is modelled in order to apply the principles of three-dimensional digital image correlation (DIC) to measure deformations on submerged objects accurately. Using an analytical formulation for refraction at an interface, a non-linear solution approach is developed to perform stereo calibration. The proposed method incorporates a simplified parametric representation for the orientation and position of an interface(s), accounting explicitly for the effects of refraction at all such interfaces in the path of each stereo camera. Separating the calibration process into two parts, a modified bundle adjustment process with an updated Levenburg-Marquardt (LM) non-linear optimization algorithm is employed to determine (a) intrinsic and extrinsic stereo camera parameters without interface refraction and (b) orientation and position of each planar interface. Detailed simulations demonstrate the efficiency, accuracy, and stability of the methodology when using multiple images of a grid pattern undergoing general rigid body motion, even in the presence of Gaussian noise in the sensor plane measurements, providing a robust framework for practical implementation of the methodology for submerged object measurements.
机译:为了应用三维数字图像相关性(DIC)原理准确地测量淹没物体的变形,对光学不同介质之间的界面处的折射效应进行了建模。使用用于界面折射的解析公式,开发了非线性解决方案方法来执行立体校准。所提出的方法结合了用于接口的取向和位置的简化参数表示,明确地考虑了每个立体相机的路径中所有这样的接口处的折射的影响。将校准过程分为两部分,采用具有更新的Levenburg-Marquardt(LM)非线性优化算法的改进束调整过程来确定(a)无界面折射的固有和非固有立体摄像机参数,以及(b)方向和位置每个平面界面。详细的仿真表明,即使在传感器平面测量中存在高斯噪声的情况下,使用经受一般刚体运动的网格图案的多个图像时,使用该方法的效率,准确性和稳定性,也为该方法的实际实施提供了可靠的框架用于水下物体的测量。

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