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Three-dimensional shape measurement for an underwater object based on two-dimensional grating pattern projection

机译:基于二维光栅图案投影的水下物体三维形状测量

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摘要

In this paper, a practical method using phase tracking and ray tracing algorithms is proposed for measuring the three-dimensional (3D) shape of an underwater object. A 2D projected sinusoidal fringe goes through the water and illuminates the tested object. Firstly, the phase tracking algorithm is employed to identify homologous points in phase distributions of the deformed fringe captured by the camera and these of the fringe pattern projected by the projector. The projector is regarded as a special camera as regards the stereovision principle. In the calibrated system, both ray directions of the homologous points can be easily figured out. Secondly, the ray tracing algorithm is used to trace the propagation path of each ray and to calculate the 3D coordinates of each point on the tested object's surface. Finally, the whole shape of the tested object can be reconstructed.
机译:在本文中,提出了一种使用相位跟踪和光线跟踪算法的实用方法来测量水下物体的三维(3D)形状。 2D投影正弦条纹穿过水面并照亮测试对象。首先,采用相位跟踪算法来识别相机捕获的变形条纹与投影仪投影的条纹图案的相位分布中的同源点。就立体视觉原理而言,投影机被视为特殊的摄像机。在校准系统中,可以容易地找出同源点的两个射线方向。其次,光线追踪算法用于追踪每条光线的传播路径,并计算被测物体表面上每个点的3D坐标。最后,可以重建测试对象的整体形状。

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