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Method for monocular camera to estimate principal point and calibrate zoom lens

机译:单眼相机估计主点并校准变焦镜头的方法

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摘要

We present an improved calibration method to optimize and simplify the current principal point estimation model and the zoom lens calibration process. A Euclidean distance weighting model (EDWM) for the principal point is constructed, which can more accurately estimate the principal point, that is, the distortion center. In addition, the camera has been calibrated by Zhang's method in several zoom settings to get the intrinsic parameters, which can be used to simplify the distortion model in zoom processing. As a result, the discrepancy between the principal point determined by the EDWM and Zhang's approach is 2.7484 pixels on average, and the reprojection root-mean-square error in the image distortion correction experiment is 0.1157 pixels. The results demonstrate that the proposed method is precise and effective in identifying the principal point while simplifying the process of zoom lens calibration. Therefore, the approach is suitable for close-range vision measurement tasks that require large-scale zoom camera calibration.
机译:我们提出一种改进的校准方法,以优化和简化当前的主点估计模型和变焦镜头校准过程。构造了主要点的欧几里德距离加权模型(EDWM),该模型可以更准确地估计主要点,即失真中心。另外,通过Zhang的方法在几个缩放设置中对摄像机进行了校准,以获取固有参数,这些参数可用于简化缩放处理中的失真模型。结果,由EDWM确定的主点与Zhang的方法之间的平均差异为2.7484像素,图像失真校正实验中的重投影均方根误差为0.1157像素。结果表明,该方法在简化变焦镜头标定过程的同时,能够准确有效地识别出主点。因此,该方法适用于需要大规模变焦摄像机校准的近距离视觉测量任务。

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