6D Object Pose Estimation with Pairwise Compatible Geometric Features
Muyuan Lin, Varun Murali, Sertac Karaman
Abstract
This work addresses the problem of 6-DoF pose estimation under heavy occlusion. While previous work demonstrates reasonable results in unoccluded situations, robust and efficient pose estimation is still challenging in heavily occluded and low-texture scenarios which are ubiquitous in many applications. To this end, we propose a novel end-to-end deep neural network model recovering object poses from depth measurements. The proposed model enforces pairwise consistency of 3D geometric features by applying spectral convolutions on a pairwise compatibility graph. We achieve comparable accuracy as the state-of-the-art graph matching solver while being much faster. Our approach outperforms state-of-the-art 6-DoF pose estimation methods on LineMOD and Occlusion LineMOD and runs in reasonable time (~5.9 Hz). We additionally verify this method on a synthetic dataset with large affine changes.
BibTeX
@inproceedings{icra2021_6dobjectposeesti,
title = {6D Object Pose Estimation with Pairwise Compatible Geometric Features},
author = {Muyuan Lin and Varun Murali and Sertac Karaman},
booktitle = {ICRA 2021},
year = {2021}
}