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Representing surface curvature discontinuities on curved surfaces

机译:代表弯曲表面上的表面曲率不连续性

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A representation scheme is presented for shapes of three-dimensional curved objects whose surface curvatures are not continuous at all points, i.e., surfaces with C/sup 1/ continuity only. A class of surface curves and points called surface structure descriptors for this representation are defined. These descriptors consist of subsets of lines of curvature and their intersections and are based on local descriptions of smooth surfaces. The surface structure curves are derived from the zero-crossings, asymptotes and gradient directions of the Gaussian and mean curvatures of the surface. A smooth surface sketch in terms of the geometrical structures of enclosing boundaries of bumps and dents, ridge and valley lines, and peaks and pits is developed. A hierarchical description of curved surfaces that leads to a global shape representation of the object is obtained from these descriptors. To handle the discontinuities of surface curvatures, a computational scheme is introduced in which gradient directions of surface curvatures at the discontinuities can be inferred. Simulation results on the computation of these descriptors from curved surfaces are shown. Potential applications of these representation schemes in computer vision tasks are discussed.
机译:向三维弯曲物体的形状提出了一种表示方案,其表面曲率在所有点处不连续,即,仅具有C / SUP 1 /连续性的表面。定义了一类被称为该表示的表面结构描述符的表面曲线和点。这些描述符包括曲率线的子集及其交叉点,并且基于平滑表面的局部描述。表面结构曲线来自高斯和表面的平均曲率的零横向,渐近曲线和梯度方向。开发了凸起和凹痕,山脊和山谷线的界限的几何结构方面的光滑表面素描,以及峰值和凹坑。从这些描述符获得导致对象的全局形状表示的曲面的分层描述。为了处理表面曲率的不连续性,引入了计算方案,其中可以推断出在不连续的表面曲率的梯度方向。示出了仿真结果对来自弯曲表面的这些描述符的计算。讨论了计算机视觉任务中这些表示方案的潜在应用。

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