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Accurate detection of symmetries in 3D shapes

机译:准确检测3D形状中的对称性

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We propose an automatic method for finding symmetries of 3D shapes, that is, isometric transforms which leave a shape globally unchanged. These symmetries are deterministically found through the use of an intermediate quantity: the generalized moments. By examining the extrema and spherical harmonic coefficients of these moments, we recover the parameters of the symmetries of the shape. The computation for large composite models is made efficient by using this information in an incremental algorithm capable of recovering the symmetries of a whole shape using the symmetries of its subparts. Applications of this work range from coherent remeshing of geometry with respect to the symmetries of a shape to geometric compression, intelligent mesh editing, and automatic instantiation.
机译:我们提出了一种自动方法来查找3D形状的对称性,即等距变换,使形状总体上保持不变。这些对称性是通过使用中间量(广义矩)确定地找到的。通过检查这些力矩的极值和球谐系数,我们恢复了形状对称的参数。通过在能够使用子部件的对称性恢复整个形状的对称性的增量算法中使用此信息,可以有效地进行大型复合模型的计算。这项工作的应用范围包括从形状的对称性到几何形状的连贯刷新到几何压缩,智能网格编辑和自动实例化。

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