A-SDF: Learning Disentangled Signed Distance Functions for Articulated Shape Representation

Abstract

Recent work has made significant progress on using implicit functions, as a continuous representation for 3D rigid object shape reconstruction. However, much less effort has been devoted to modeling general articulated objects. Compared to rigid objects, articulated objects have higher degrees of freedom, which makes it hard to generalize to unseen shapes. To deal with the large shape variance, we introduce Articulated Signed Distance Functions (A-SDF) to represent articulated shapes with a disentangled latent space, where we have separate codes for encoding shape and articulation. With this disentangled continuous representation, we demonstrate that we can control the articulation input and animate unseen instances with unseen joint angles. Furthermore, we propose a Test-Time Adaptation inference algorithm to adjust our model during inference. We demonstrate our model generalize well to out-of-distribution and unseen data, e.g., partial point clouds and real-world depth images.

Cite

Text

Mu et al. "A-SDF: Learning Disentangled Signed Distance Functions for Articulated Shape Representation." International Conference on Computer Vision, 2021. doi:10.1109/ICCV48922.2021.01276

Markdown

[Mu et al. "A-SDF: Learning Disentangled Signed Distance Functions for Articulated Shape Representation." International Conference on Computer Vision, 2021.](https://mlanthology.org/iccv/2021/mu2021iccv-asdf/) doi:10.1109/ICCV48922.2021.01276

BibTeX

@inproceedings{mu2021iccv-asdf,
  title     = {{A-SDF: Learning Disentangled Signed Distance Functions for Articulated Shape Representation}},
  author    = {Mu, Jiteng and Qiu, Weichao and Kortylewski, Adam and Yuille, Alan and Vasconcelos, Nuno and Wang, Xiaolong},
  booktitle = {International Conference on Computer Vision},
  year      = {2021},
  pages     = {13001-13011},
  doi       = {10.1109/ICCV48922.2021.01276},
  url       = {https://mlanthology.org/iccv/2021/mu2021iccv-asdf/}
}