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Recovering Spheres from 3D Point Data

机译:从3D点数据中恢复球形

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摘要

The National Institute of Standards and Technology is involved in developing standard protocols for the performance evaluation of 3D imaging systems, which include laser scanners and LADARs (LAser Detection and Ranging). A LADAR is an optical device that typically yields voluminous 3D "point clouds" by scanning scenes. In many applications, a model of an object which is present in the scene has been specified, and the task amounts to recovering this object from scan data. Specifically, the recovery of spheres from point clouds will be addressed, aiming at estimating the location of their centers and, if not known beforehand, their radii. This information can be used, for instance, to "register" LADAR data to a specified coordinate frame. Two experiments recovering spheres based on best-fitting data points are reported. Sphere fitting based on orthogonal least squares is compared to a novel approach, minimizing instead the squares of range errors incurred in the direction of the scan.
机译:国家标准与技术研究所涉及开发3D成像系统性能评估的标准协议,包括激光扫描仪和拉德尔(激光检测和测距)。 LADAR是一种光学装置,其通常通过扫描场景产生大量的3D“点云”。在许多应用中,已经指定了在场景中存在的对象的模型,并且任务将从扫描数据中恢复该对象。具体地,将解决从点云的球体恢复,旨在估计其中心的位置,并且如果预先知道,他们的半径也是如此。例如,该信息可以用于将LADAR数据“寄存到指定的坐标帧”。报告了基于最佳数据点的两个实验恢复球体。基于正交最小二乘的球体拟合与新方法进行比较,最小化,而是在扫描方向上产生的范围误差的平方。

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