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Active Vision Reconstruction Based on Ratio Invariability of Triangle Areas Generated from Triangle Array in Affine Space

机译:基于仿射空间三角形阵列生成的三角形区域的比率不变的主动视觉重建

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An active-vision process is presented by the affine invariability of the ratio of triangle areas to reconstruct the 3D object. Firstly, a plate with the triangle array is designed in the same plane of the planar laser. The image of the plate is rectified from the projection space to the affine space by the image of the line at infinity. Then the laser point and the centroids of the triangles constitute a new triangle that bridges the affine space and the original Euclidean space. The object coordinates are solved by the invariant of the triangle area ratio before and after the affine transformation. Finally, the reconstruction accuracy under various measurement conditions is verified by experiments. The influence analyses of the number of line pairs and the accuracy of the extracted point pixels are provided in the experimental results. The average reconstruction errors are 1.54, 1.79, 1.90, and 2.46 mm for the test distance of 550, 600, 650, and 700 mm, which demonstrates the application potential of the approach in the 3D measurement.
机译:通过三角形区域与重建3D对象的比率的仿射不变性提出了主动视觉过程。首先,设计具有三角形阵列的板在平面激光器的同一平面中设计。通过无限远的线的图像从投影空间向仿射空间校正板的图像。然后激光点和三角形的质心构成桥接仿射空间和原始欧几里德空间的新三角形。物体坐标通过仿射变换前后的三角形区域比的不变来解决。最后,通过实验验证了各种测量条件下的重建精度。在实验结果中提供了线对数和提取点像素的准确度的影响分析。平均重建误差为1.54,1.79,1.90和2.46 mm,测试距离为550,600,650和700 mm,这证明了3D测量中的方法的应用潜力。

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