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Reconstructing Open Surfaces via Graph-Cuts

机译:通过Graph-Cuts重建开放曲面

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摘要

A novel graph-cuts-based method is proposed for reconstructing open surfaces from unordered point sets. Through a Boolean operation on the crust around the data set, the open surface problem is translated to a watertight surface problem within a restricted region. Integrating the variational model, Delaunay-based tetrahedral mesh and multiphase technique, the proposed method can reconstruct open surfaces robustly and effectively. Furthermore, a surface reconstruction method with domain decomposition is presented, which is based on the new open surface reconstruction method. This method can handle more general surfaces, such as nonorientable surfaces. The algorithm is designed in a parallel-friendly way and necessary measures are taken to eliminate cracks and conflicts between the subdomains. Numerical examples are included to demonstrate the robustness and effectiveness of the proposed method on watertight, open orientable, open nonorientable surfaces and combinations of such.
机译:提出了一种基于图割的新颖方法,用于从无序点集中重建开放曲面。通过对数据集周围的地壳进行布尔运算,可以将开放表面问题转换为受限区域内的水密表面问题。结合变分模型,基于Delaunay的四面体网格和多相技术,该方法可以鲁棒有效地重建开口表面。此外,提出了一种基于区域分解的表面重构方法,该方法基于新的开放表面重构方法。此方法可以处理更通用的表面,例如不可定向的表面。该算法以并行友好的方式进行设计,并采取了必要的措施来消除子域之间的裂缝和冲突。包括数值例子,以证明所提出的方法在水密性,开放性,开放性,非定向性表面及其组合上的鲁棒性和有效性。

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