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Optimization reconstruction method of object profile using flexible laser plane and bi-planar references

机译:利用柔性激光平面和双平面参考的物体轮廓优化重建方法

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摘要

An optimization method to reconstruct the object profile is performed by using a flexible laser plane and bi-planar references. The bi-planar references are considered as flexible benchmarks to realize the transforms among two world coordinate systems on the bi-planar references, the camera coordinate system and the image coordinate system. The laser plane is confirmed by the intersection points between the bi-planar references and laser plane. The 3D camera coordinates of the intersection points between the laser plane and a measured object are initially reconstructed by the image coordinates of the intersection points, the intrinsic parameter matrix and the laser plane. Meanwhile, an optimization function is designed by the parameterized differences of the reconstruction distances with the help of a target with eight markers, and the parameterized reprojection errors of feature points on the bi-planar references. The reconstruction method with the bi-planar references is evaluated by the difference comparisons between true distances and standard distances. The mean of the reconstruction errors of the initial method is 1.01 mm. Moreover, the mean of the reconstruction errors of the optimization method is 0.93 mm. Therefore, the optimization method with the bi-planar references has great application prospects in the profile reconstruction.
机译:通过使用柔性激光平面和双平面参考,可以执行用于重建对象轮廓的优化方法。双平面参考被认为是灵活的基准,可实现两个世界坐标系统在双平面参考(相机坐标系和图像坐标系)之间的转换。激光平面由双平面参考和激光平面之间的交点确定。激光平面和被测物体之间的交点的3D相机坐标最初是通过交点的图像坐标,固有参数矩阵和激光平面重建的。同时,通过在具有八个标记的目标的帮助下,通过参数化重构距离的差异,以及在双平面参考上参数化特征点的重投影误差,来设计优化函数。通过真实距离与标准距离之间的差异比较来评估具有双平面参考的重建方法。初始方法的重建误差的平均值为1.01mm。而且,优化方法的重建误差的平均值为0.93 mm。因此,采用双平面参考的优化方法在轮廓重建中具有广阔的应用前景。

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