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An Iterative Distortion Compensation Algorithm for Camera Calibration Based on Phase Target

机译:基于相位目标的相机标定的迭代失真补偿算法

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Camera distortion is a critical factor affecting the accuracy of camera calibration. A conventional calibration approach cannot satisfy the requirement of a measurement system demanding high calibration accuracy due to the inaccurate distortion compensation. This paper presents a novel camera calibration method with an iterative distortion compensation algorithm. The initial parameters of the camera are calibrated by full-field camera pixels and the corresponding points on a phase target. An iterative algorithm is proposed to compensate for the distortion. A 2D fitting and interpolation method is also developed to enhance the accuracy of the phase target. Compared to the conventional calibration method, the proposed method does not rely on a distortion mathematical model, and is stable and effective in terms of complex distortion conditions. Both the simulation work and experimental results show that the proposed calibration method is more than 100% more accurate than the conventional calibration method.
机译:相机失真是影响相机校准精度的关键因素。由于不准确的失真补偿,传统的校准方法不能满足要求高校准精度的测量系统的要求。本文提出了一种具有迭代失真补偿算法的新型摄像机标定方法。摄像机的初始参数通过全场摄像机像素和相位目标上的相应点进行校准。提出了一种迭代算法来补偿失真。还开发了2D拟合和插值方法以增强相位目标的精度。与传统的校准方法相比,该方法不依赖于失真数学模型,并且在复杂的失真条件下是稳定有效的。仿真工作和实验结果均表明,所提出的校准方法比常规校准方法的准确性高出100%以上。

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