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EFFECT OF SCANNING DENSITY ON THE ACCURACY OF LOCATING SPHERE CENTERS FOR REGISTRATION

机译:扫描密度对定位球中心注册的精度的影响

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Applications for 3D imaging systems (e.g., laser scanners) have increased significantly in the past decade. Data from such systems often require registration. Spheres are often used for registration because they look the same from each direction and provide well defined reference points: fitted sphere centers. Common practice is to first scan individual targets at high density for high accuracy of fitted centers and then scan the entire scene at lower density. This, however, prevents the use of 3D imaging systems in a fully automated environment. It would thus be desirable to be able to determine the sphere centers from the low density scan. In this paper, we investigate how different scanning densities affect the locations of the fitted sphere centers. Analyses of high and low density scans show that high density scans are not necessary because the sphere centers can be estimated from sparse data without significant loss of accuracy.
机译:在过去十年中,3D成像系统(例如,激光扫描仪)的应用在显着增加。这些系统的数据通常需要注册。球形通常用于注册,因为它们看起来与每个方向相同并提供明确的参考点:装配球中心。常见的做法是首先在高密度下扫描个体目标,以获得高精度的拟合中心,然后以较低的密度扫描整个场景。然而,这可以防止在全自动环境中使用3D成像系统。因此,希望能够从低密度扫描确定球形中心。在本文中,我们研究了不同的扫描密度如何影响装有球形中心的位置。高密度扫描的分析表明,由于可以从稀疏数据估计,因此不需要高密度扫描,因为球体中心可以从稀疏数据估计而没有明显的精度损失。

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