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Inference of integrated surface, curve and junction descriptions from sparse 3D data

机译:从稀疏3D数据推论出集成的曲面,曲线和结点描述

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We address the problem of inferring integrated high-level descriptions such as surfaces, 3D curves, and junctions from a sparse point set. For precise localization, we propose a noniterative cooperative algorithm in which surfaces, curves, and junctions work together. Initial estimates are computed based on the work by Guy and Medioni (1997), where each point in the given sparse and possibly noisy point set is convolved with a predefined vector mask to produce dense saliency maps. These maps serve as input to our novel extremal surface and curve algorithms for initial surface and curve extraction. These initial features are refined and integrated by using excitatory and inhibitory fields. Consequently, intersecting surfaces (resp. curves) are fused precisely at their intersection curves (resp. junctions). Results on several synthetic as well as real data sets are presented.
机译:我们解决了从稀疏点集中推导诸如曲面,3D曲线和结点之类的集成高级描述的问题。为了进行精确定位,我们提出了一种非迭代协作算法,其中曲面,曲线和结点可以一起工作。初始估计值是根据Guy和Medioni(1997)的工作计算的,其中将给定稀疏和可能有噪声的点集中的每个点与预定义的矢量掩码进行卷积,以生成密集的显着图。这些贴图用作我们新颖的极值曲面和曲线算法的输入,用于初始曲面和曲线提取。这些初始特征通过使用兴奋性和抑制性场得以完善和整合。因此,相交的曲面(重合曲线)将在其相交曲线(重合结)处精确融合。给出了几个综合以及真实数据集的结果。

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