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Eccentricity error identification and compensation for high-accuracy 3D optical measurement

机译:高精度3D光学测量的偏心误差识别和补偿

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摘要

The circular target has been widely used in various three-dimensional optical measurements, such as camera calibration, photogrammetry and structured light projection measurement system. The identification and compensation of the circular target systematic eccentricity error caused by perspective projection is an important issue for ensuring accurate measurement. This paper introduces a novel approach for identifying and correcting the eccentricity error with the help of a concentric circles target. Compared with previous eccentricity error correction methods, our approach does not require taking care of the geometric parameters of the measurement system regarding target and camera. Therefore, the proposed approach is very flexible in practical applications, and in particular, it is also applicable in the case of only one image with a single target available. The experimental results are presented to prove the efficiency and stability of the proposed approach for eccentricity error compensation.
机译:圆形目标已广泛用于各种三维光学测量,例如相机校准,摄影测量和结构化的光投影测量系统。透视投影引起的圆形目标系统偏心误差的识别与补偿,是保证精确测量的重要问题。本文介绍了一种新颖的方法,借助同心圆目标可以识别和校正偏心误差。与以前的偏心误差校正方法相比,我们的方法不需要考虑与目标和相机有关的测量系统的几何参数。因此,所提出的方法在实际应用中是非常灵活的,并且特别地,它还适用于只有一个具有单个目标的图像的情况。实验结果证明了该方法的有效性和稳定性。

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