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Automatic Camera Calibration Using Active Displays of a Virtual Pattern

机译:使用虚拟图案的主动显示进行自动相机校准

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摘要

Camera calibration plays a critical role in 3D computer vision tasks. The most commonly used calibration method utilizes a planar checkerboard and can be done nearly fully automatically. However, it requires the user to move either the camera or the checkerboard during the capture step. This manual operation is time consuming and makes the calibration results unstable. In order to solve the above problems caused by manual operation, this paper presents a full-automatic camera calibration method using a virtual pattern instead of a physical one. The virtual pattern is actively transformed and displayed on a screen so that the control points of the pattern can be uniformly observed in the camera view. The proposed method estimates the camera parameters from point correspondences between 2D image points and the virtual pattern. The camera and the screen are fixed during the whole process; therefore, the proposed method does not require any manual operations. Performance of the proposed method is evaluated through experiments on both synthetic and real data. Experimental results show that the proposed method can achieve stable results and its accuracy is comparable to the standard method by Zhang.
机译:相机校准在3D计算机视觉任务中起着至关重要的作用。最常用的校准方法使用平面棋盘格,几乎可以完全自动完成。但是,它要求用户在捕获步骤中移动摄像机或棋盘格。此手动操作很耗时,并且会使校准结果不稳定。为了解决由手动操作引起的上述问题,本文提出了一种使用虚拟模式而不是物理模式的全自动相机校准方法。虚拟图案会主动转换并显示在屏幕上,以便可以在相机视图中均匀观察到图案的控制点。所提出的方法根据2D图像点和虚拟图案之间的点对应关系估计相机参数。摄像头和屏幕在整个过程中是固定的;因此,提出的方法不需要任何手动操作。通过对合成数据和真实数据进行实验来评估所提出方法的性能。实验结果表明,所提出的方法可以取得稳定的结果,其准确性与Zhang的标准方法相当。

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