从无组织点直接重建位移细分表面

W. Jeong, Chang-Hun Kim
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引用次数: 58

摘要

我们提出了一种新的网格重建算法,该算法直接从无组织的点产生位移细分网格。位移细分表面是一种新的网格表示,它在光滑域表面上定义了一个带有位移图的详细网格。这种网格表示具有网格尺寸紧凑、分段规则连接等优点,克服了普通网格重建方案产生不规则网格的局限性,但原始的位移细分曲面生成算法需要一个明确的多边形网格进行转换。我们的方法是在网格重建过程中直接从输入点产生位移细分表面。该算法的主要思想是通过类似于投影的收缩包裹来构建初始的粗控制网格,并在没有任何给定点的连接信息的情况下,沿着每个极限顶点法线从无组织的点上采样精细的表面细节。我们采用现有的细分曲面拟合方案来生成参数域曲面,并提出了一种表面细节采样方案,该方案可以确定一个有效的采样三角形,该三角形可以由输入点的组合组成。我们展示了几个重建实例和应用,以证明所建议的采样技术的有效性和结果的优点,如多分辨率建模。
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Direct reconstruction of displaced subdivision surface from unorganized points
We propose a new mesh reconstruction algorithm that produces a displaced subdivision mesh directly from unorganized points. The displaced subdivision surface is a new mesh representation that defines a detailed mesh with a displacement map over a smooth domain surface. This mesh representation has several benefits-compact mesh size, piecewise regular connectivity-to overcome limitations of an irregular mesh produced by an ordinary mesh reconstruction scheme, but the original displaced subdivision surface generation algorithm needs an explicit polygonal mesh to be converted. Our approach is producing displaced subdivision surface directly from input points during the mesh reconstruction process. The main ideas of our algorithm are building initial coarse control mesh by the shrink-wrapping like projection and sampling fine surface detail from unorganized points along the each limit vertex normal without any connectivity information of given points. We employ an existing subdivision surface fitting scheme to generate a parametric domain surface, and suggest a surface detail sampling scheme that determines a valid sampling triangle which can be made with combinations of input points. We show several reconstruction examples and applications to show the validity of suggested sampling technique and benefits of the result like multiresolution modeling.
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