Boundary extraction and simplification of a surface defined by a sparse 3D volume

V. Nguyen, A. Bac, M. Daniel
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引用次数: 15

Abstract

Reconstructing surfaces with data coming from an automatic acquisition technique always entails the problem of mass of data. It leads to a mandatory data reduction process. Applying the process to the whole set of points induces an important risk of surface shrinking so that the initial boundary extraction is an important step permitting a simplification inside it. The global surface shape will then be better kept. It is nevertheless required to simplify the boundary, which can be done on the extracted boundary. In this paper, we present a new method to extract and simplify the boundary of an elevation surface given as voxels in a large 3D volume having the characteristics to be sparse since many data are missing. We first present our boundary definition based on mathematical relations between a point and its square neighborhoods. Second, we introduce algorithms to extract such a boundary. Third, we simplify this boundary.
由稀疏三维体定义的曲面的边界提取和简化
利用自动获取的数据重构曲面,往往会遇到数据量大的问题。它会导致强制性的数据缩减过程。将该过程应用于整个点集会引起曲面收缩的重要风险,因此初始边界提取是允许内部简化的重要步骤。这样就能更好地保持全局表面形状。然而,需要对边界进行简化,这可以在提取的边界上完成。在本文中,我们提出了一种新的方法来提取和简化高程表面的边界,在一个大的三维体素中,由于缺少许多数据,高程表面的边界具有稀疏的特征。我们首先根据一个点和它的正方形邻域之间的数学关系给出边界的定义。其次,我们介绍了提取这种边界的算法。第三,我们简化这个边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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