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首页> 外文期刊>ACM Transactions on Graphics >Curve Skeleton Extraction from Incomplete Point Cloud
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Curve Skeleton Extraction from Incomplete Point Cloud

机译:从不完整点云提取曲线骨架

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摘要

We present an algorithm for curve skeleton extraction from imperfect point clouds where large portions of the data may be missing. Our construction is primarily based on a novel notion of generalized rotational symmetry axis (ROSA) of an oriented point set. Specifically, given a subset S of oriented points, we introduce a variational definition for an oriented point that is most rotalionally symmetric with respect to S. Our formulation effectively utilizes normal information to compensate for the missing data and leads to robust curve skeleton computation over regions of a shape that are generally cylindrical. We present an iterative algorithm via planar cuts to compute the ROSA of a point cloud. This is complemented by special handling of non-cylindrical joint regions to obtain a centered, topologically clean, and complete ID skeleton. We demonstrate that quality curve skeletons can be extracted from a variety of shapes captured by incomplete point clouds. Finally, we show how our algorithm assists in shape completion under these challenges by developing a skeleton-driven point cloud completion scheme.
机译:我们提出了一种从不完善的点云中提取曲线骨架的算法,其中可能会丢失大量数据。我们的构造主要基于定向点集的广义旋转对称轴(ROSA)的新颖概念。具体来说,给定一个定向点的子集S,我们为定向点引入一个变体定义,该定向点相对于S最旋转对称。我们的公式有效地利用常规信息来补偿丢失的数据,并导致对区域进行稳健的曲线骨架计算具有通常为圆柱形的形状。我们提出了一种通过平面割的迭代算法来计算点云的ROSA。通过对非圆柱状关节区域的特殊处理,可以得到一个居中,拓扑干净且完整的ID骨架,从而对此进行补充。我们证明了可以从不完整点云捕获的各种形状中提取质量曲线骨架。最后,我们展示了我们的算法如何通过开发骨架驱动的点云完成方案来协助这些挑战下的形状完成。

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