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Three dimensional measurement of object's surface in water using the light stripe projection method

机译:使用光条投影法测定物体表面的三维测量

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In this paper, we propose a three-dimensional (3D) measurement method of objects' shapes in liquid by using the light stripe projection method. Usually, 3D measurement by robot vision techniques is executed under the assumptions that cameras and objects are in aerial environments. However, an image distortion occurs when vision sensors measure objects in liquid. It is caused by the refraction of the light on the boundary between the air and the liquid, and the distorted image brings errors in a triangulation for the range measurement. Our proposed method can measure accurate 3D coordinates of objects' surfaces in liquid taken for calculating the refraction effect. The effectiveness of the proposed method is shown through experiments. By considering the refraction of the light, the accuracy of the 3D measurement of objects in water becomes same as that when there is no water, although the accuracy is bad when the refraction of the light is not considered. The accuracy of the 3D measurement is about 1 mm for objects located about 400 mm from the laser range finder. The measurement speed can be also reduced as compared with the case of using a spot laser beam.
机译:在本文中,我们通过使用光条投影方法提出了一种物体形状的三维(3D)测量方法。通常,通过机器人视觉技术的3D测量在相机和对象处于空中环境中的假设下执行。然而,当视觉传感器测量液体中的对象时发生图像失真。它是由空气和液体之间边界上的光的折射引起的,并且失真的图像在范围测量的三角测量中引起误差。我们所提出的方法可以测量用于计算折射效果的液体中的物体表面的精确的3D坐标。通过实验显示了所提出的方法的有效性。通过考虑光的折射,水中物体的3D测量的准确性与没有水时的物体的准确性相同,尽管当不考虑光的折射时,精度是坏的。对于距激光测距仪约400毫米的物体,3D测量的准确性约为1毫米。与使用点激光束的情况相比,测量速度也可以减少。

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