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Geometric property estimation from 3D range data points aided by local quadric surface fitting

机译:通过局部二次曲面拟合从3D范围数据点估计几何特性

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Geometric property estimation of the scattered point data is a key task in reverse engineering. A common approach is to estimate the local surface geometric properties, such as normal, vectors and curvatures, at each point by locally fitting a low order parametric polynomial surface to a neighborhood of its nearest points. However, existing parametric surface methods do not always achieve satisfactory estimates because of theoretical and practical reasons. Motivated by improving geometric properties estimation we propose a novel approach based on local quadric surface fitting. Experimental results are presented to verify the feasibility of the proposed method.
机译:散射点数据的几何特性估计是逆向工程中的关键任务。一种常见的方法是通过将低阶参数多项式曲面局部拟合到其最近点的邻域来估计每个点的局部曲面几何特性,例如法线,矢量和曲率。但是,由于理论和实践的原因,现有的参数化曲面方法并不总是能获得令人满意的估计。通过改进几何特性估计,我们提出了一种基于局部二次曲面拟合的新颖方法。实验结果证明了该方法的可行性。

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