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Three-dimensional deformation measuring system based on vision method

机译:基于视觉方法的三维变形测量系统

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In order to realize automatic vision measurement for surface deformation, a three-dimensional surface deformation measuring system is proposed based on digital image correlation and binocular stereovision, and its applied key technologies such as camera calibration, correlation matching, three-dimensional displacement and strain reconstruction are deeply investigated. First, according to distortion errors of digital camera, a self-calibration method with 10-parameters model is elaborated. And a rapid image correlation algorithm based the relation of stereovision epipolar geometry is presented to improve the efficiency of the image matching. Then based on these technologies, a method for displacement and strain reconstruction is discussed. Calibration experimental results show that the precision of the camera calibration is better than 0.07 pixels. Metal tensile test demonstrates that the precision of strain measurement is very close to strain extensometer, so the system can satisfy the requirements of non-contact, higher precision and three-dimensional deformation field measurement.
机译:为了实现表面变形的自动视觉测量,提出了一种基于数字图像相关和双目立体视觉的三维表面变形测量系统,并应用了相机标定,相关匹配,三维位移和应变重构等关键技术。进行了深入调查。首先,根据数码相机的畸变误差,提出了一种具有10个参数的模型的自校准方法。提出了一种基于立体视觉对极几何关系的快速图像相关算法,以提高图像匹配的效率。然后,基于这些技术,讨论了位移和应变重建的方法。标定实验结果表明,摄像机标定的精度优于0.07像素。金属拉伸试验表明,应变测量的精度非常接近应变引伸计,因此该系统可以满足非接触式,高精度和三维变形场测量的要求。

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