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Flexible calibration method for an inner surface detector based on circle structured light

机译:基于圆形结构光的内表面检测器的灵活标定方法

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摘要

A new calibration method for an inner surface detector based on circle structured light is proposed in this study. Compared with existing methods, this technique is more flexible and practical and only requires a blank planar board and an additional camera, which is precalibrated under the detector's coordinate system. The board is observed by the detector and the additional camera at a few (at least two) different orientations, which need not be known. The mathematical model of this method considers different alignment errors, which are disregarded in existing methods; therefore, precise assembly is not required. The binocular intersection algorithm is used to calculate the coordinates of the calibration points. The measurement system calibrated by this method performs well in the field test in which the maximum relative error of the measured values is less than 0.18%. The experimental result indicates that this method is highly accurate and can be easily applied in inner surface detection. (C) 2016 Optical Society of America
机译:提出了一种基于圆形结构光的内表面检测器校准新方法。与现有方法相比,该技术更加灵活和实用,只需要一块空白的平板和一个附加的摄像机,该摄像机在检测器的坐标系下已预先校准。检测器和附加摄像机在几个(至少两个)不同的方向上观察该板,这是不需要知道的。该方法的数学模型考虑了不同的对准误差,这些误差在现有方法中被忽略。因此,不需要精确的组装。双目相交算法用于计算校准点的坐标。通过这种方法校准的测量系统在现场测试中表现良好,在该测试中,测量值的最大相对误差小于0.18%。实验结果表明,该方法具有较高的准确性,可以很容易地应用于内表面检测。 (C)2016美国眼镜学会

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