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Spherical Convolutional Neural Network for 3D Point Clouds
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We propose a neural network for 3D point cloud processing that exploits `spherical' convolution kernels and octree partitioning of space. The proposed metric-based spherical kernels systematically quantize point neighborhoods to identify local geometric structures in data, while maintaining the properties of translation-invariance and asymmetry. The network architecture itself is guided by octree data structuring that takes full advantage of the sparse nature of irregular point clouds. We specify spherical kernels with the help of neurons in each layer that in turn are associated with spatial locations. We exploit this association to avert dynamic kernel generation during network training, that enables efficient learning with high resolution point clouds. We demonstrate the utility of the spherical convolutional neural network for 3D object classification on standard benchmark datasets.
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Cited by 1 Pith paper
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MinkUNeXt-SI: Improving point cloud-based place recognition including spherical coordinates and LiDAR intensity
MinkUNeXt-SI feeds spherical coordinates and normalized LiDAR intensity into a Minkowski U-Net and reports competitive place recognition recall on Oxford, USyd, KITTI, NCLT, and a new campus dataset.
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