In recent years there has been a resurgence of interest in our community in the shape analysis of 3D objects represented by surface meshes, their voxelized interiors, or surface point clouds. In part, this interest has been stimulated by the increased availability of RGBD cameras, and by applications of computer vision to autonomous driving, medical imaging, and robotics. In these settings, spectral coordinates have shown promise for shape representation due to their ability to incorporate both local and global shape properties in a manner that is qualitatively invariant to isometric transformations. Yet, surprisingly, such coordinates have thus far typically considered only local surface positional or derivative information. In the present article, we propose to equip spectral coordinates with medial (object width) information, so as to enrich them. The key idea is to couple surface points that share a medial ball, via the weights of the adjacency matrix. We develop a spectral feature using this idea, and the algorithms to compute it. The incorporation of object width and medial coupling has direct benefits, as illustrated by our experiments on object classification, object part segmentation, and surface point correspondence.
翻译:近些年来,我们社区对地表模贝、其蒸发内脏或表面点云等3D物体的形状分析重新产生了兴趣,部分由于RGBD摄像机的提供量增加,以及计算机视觉应用于自主驱动、医疗成像和机器人,这种兴趣得到了激发。在这些环境中,光谱坐标显示出了形状表现的希望,因为它们能够以质量上不易进行等度变异的方式结合本地和全球形状特性。但令人惊讶的是,这种坐标迄今通常只考虑地表位置或衍生信息。在本篇文章中,我们提议用介质(目标宽度)信息装备光谱坐标,以丰富它们。关键的想法是通过相邻矩阵的重量将共享介质球的表面点对齐。我们用这个概念和计算法来开发一个光谱特征。物体宽度和介质的结合具有直接的好处,正如我们在物体分类、对象部分分割和地面对等实验所说明的那样。