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Generalized Connectivity Constraints for Spatio-temporal 3D Reconstruction

机译:时空3D重建的通用连接约束

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This paper introduces connectivity preserving constraints into spatio-temporal multi-view reconstruction. We efficiently model connectivity constraints by precomputing a geodesic shortest path tree on the occupancy likelihood. Connectivity of the final occupancy labeling is ensured with a set of linear constraints on the labeling function. In order to generalize the connectivity constraints from objects with genus 0 to an arbitrary genus, we detect loops by analyzing the visual hull of the scene. A modification of the constraints ensures connectivity in the presence of loops. The proposed efficient implementation adds little runtime and memory overhead to the reconstruction method. Several experiments show significant improvement over state-of-the-art methods and validate the practical use of this approach in scenes with fine structured details.
机译:本文将保持连通性的约束条件引入到时空多视图重建中。我们通过在占用可能性上预先计算测地线最短路径树来有效地对连接性约束进行建模。通过在标签功能上设置一系列线性约束,可以确保最终占用标签的连通性。为了概括从属0到任意属的对象的连接约束,我们通过分析场景的视觉外壳来检测循环。约束的修改可确保在存在循环的情况下实现连接。所提出的有效实现方式为重建方法增加了很少的运行时间和内存开销。多项实验表明,与现有技术方法相比,该方法有显着改进,并在具有精细结构细节的场景中验证了该方法的实际使用。

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