Jin Jing, Zhao Lingna, Xu Shengli
J Opt Soc Am A Opt Image Sci Vis. 2014 Jul 1;31(7):1401-7. doi: 10.1364/JOSAA.31.001401.
To accurately measure the attitude angles (pitch, roll, and yaw) of a rigid object that rotates in a space, we propose a high-precision rotation angle measurement method based on monocular vision. This method combines camera self-calibration, multiview geometry, and 3D measurement. This monocular vision measuring system consists of an area scan CCD, a prime lens, and a spots array target, which are fixed on the measured object. We can calculate the rotation angle according to the rebuilt rotating spots array target by using this monocular vision measuring system. The measurement precision of rotation angle can reach 1 arc sec in this paper's experiments. This method has high measurement precision and good stability. Therefore we can widely use this method in machinery manufacturing, engineering measurement, aerospace, and the military.
为了精确测量在空间中旋转的刚体的姿态角(俯仰角、横滚角和偏航角),我们提出了一种基于单目视觉的高精度旋转角测量方法。该方法结合了相机自标定、多视图几何和三维测量。这种单目视觉测量系统由一个面阵扫描电荷耦合器件(CCD)、一个定焦镜头和一个斑点阵列靶标组成,它们固定在被测物体上。利用这个单目视觉测量系统,我们可以根据重建的旋转斑点阵列靶标来计算旋转角。在本文的实验中,旋转角的测量精度可达1角秒。该方法具有较高的测量精度和良好的稳定性。因此,我们可以在机械制造、工程测量、航空航天和军事等领域广泛应用该方法。