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Three-Dimensional Bilateral Symmetry Plane Estimation in the Phase Domain

机译:相域中的三维双边对称平面估计

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We show that bilateral symmetry plane estimation for three-dimensional (3-D) shapes may be carried out accurately, and efficiently, in the spherical harmonic domain. Our methods are valuable for applications where spherical harmonic expansion is already employed, such as 3-D shape registration, morphometry, and retrieval. We show that the presence of bilateral symmetry in the 3-D shape is equivalent to a linear phase structure in the corresponding spherical harmonic coefficients, and provide algorithms for estimating the orientation of the symmetry plane. The benefit of using spherical harmonic phase is that symmetry estimation reduces to matching a compact set of descriptors, without the need to solve a correspondence problem. Our methods work on point clouds as well as large-scale mesh models of 3-D shapes.
机译:我们表明,可以在球形谐波域中准确,高效地进行三维(3-D)形状的双边对称平面估计。我们的方法对于已经采用球谐展开的应用非常有价值,例如3-D形状配准,形态测量和检索。我们表明,在3D形状中存在双边对称性等效于相应球谐系数中的线性相位结构,并提供了用于估计对称平面方向的算法。使用球形谐波相位的好处在于,对称性估计可以简化为匹配一组紧凑的描述符,而无需解决对应问题。我们的方法适用于点云以及​​3D形状的大规模网格模型。

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