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A calibration method of external parameters of 2D laser in rotary 3D scanning

机译:旋转三维扫描中二维激光外部参数的标定方法

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摘要

Aiming at the problem of external parameter calibration in the combined rotating three-dimensional (3D) scanning process of laser radar and turntable, a fast 3D data scanning and accurate equipment calibration method suitable for industrial application scenarios is proposed. The coordinates of the center of the circle in the laser radar coordinate system are obtained by fitting the coordinates of the center of the circle with the scanning arc. Through the standard size and rotation angle of the target ball, the coordinates of the ball center in the turntable coordinate system are obtained. The rotation parameter R and the translation parameter T of the minimum value of the data set conversion error function in the two coordinate systems are calculated. The experimental results show that the error between the converted data and the actual data is within 0.1 mm, which meets the actual work requirements. This calibration method has the advantages of high accuracy and strong robustness.
机译:针对激光雷达与转台组合旋转三维(3D)扫描过程中的外部参数标定问题,提出一种适用于工业应用场景的快速三维数据扫描和精准设备标定方法。将圆心坐标与扫描弧拟合得到激光雷达坐标系中圆心坐标。通过目标球的标准尺寸和旋转角度,得到转台坐标系中球中心的坐标。计算了两个坐标系中数据集转换误差函数最小值的旋转参数R和平移参数T。实验结果表明,转换后的数据与实际数据的误差在0.1 mm以内,满足实际工作要求。这种校准方法具有精度高、鲁棒性强等优点。

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