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Method of rotation angle measurement in machine vision based on calibration pattern with spot array

机译:基于点阵校准图案的机器视觉旋转角测量方法

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摘要

We propose a method of rotation angle measurement with high precision in machine vision. An area scan CCD camera, imaging lens, and calibration pattern with a spot array make up the measurement device for measuring the rotation angle. The calibration pattern with a spot array is installed at the rotation part, and the CCD camera is set at a certain distance from the rotation components. The coordinates of the spots on the calibration pattern is acquired through the vision image of the calibration pattern captured by the CCD camera. At the initial position of the calibration pattern, the camera is calibrated with the spot array; the mathematical model of distortion error of the CCD camera is built. With the equation of coordinate rotation measurement, the rotation angle of the spot array is detected. In the theoretic simulation, noise of different levels is added to the coordinates of the spot array. The experiment results show that the measurement device can measure the rotation angle precisely with a noncontact method. The standard deviation of rotation angle measurement is smaller than 3 arc sec. The measurement device can measure both microangles and large angles.
机译:我们提出了一种在机器视觉中具有高精度的旋转角度测量方法。区域扫描CCD相机,成像镜头和带有点阵列的校准图案构成了用于测量旋转角度的测量设备。在旋转部分安装具有点阵列的校准图案,并且将CCD摄像机设置为与旋转组件有一定距离。通过由CCD相机捕获的校准图案的视觉图像来获取校准图案上的斑点的坐标。在校准图案的初始位置,用光点阵列对摄像机进行校准。建立了CCD相机畸变误差的数学模型。通过坐标旋转测量方程,可以检测点阵列的旋转角度。在理论模拟中,将不同级别的噪声添加到点阵列的坐标中。实验结果表明,该测量装置可以采用非接触法精确测量旋转角度。旋转角度测量的标准偏差小于3弧秒。测量设备可以测量微角度和大角度。

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