Affine Equivariant Networks Based on Differential Invariants
Yikang Li, Yeqing Qiu, Yuxuan Chen, Lingshen He, Zhouchen Lin
Abstract
Convolutional neural networks benefit from translation equivariance, achieving tremendous success. Equivariant networks further extend this property to other transformation groups. However, most existing methods require discretization or sampling of groups, leading to increased model sizes for larger groups, such as the affine group. In this paper, we build affine equivariant networks based on differential invariants from the viewpoint of symmetric PDEs, without discretizing or sampling the group. To address the division-by-zero issue arising from fractional differential invariants of the affine group, we construct a new kind of affine invariants by normalizing polynomial relative differential invariants to replace classical differential invariants. For further flexibility, we design an equivariant layer, which can be directly integrated into convolutional networks of various architectures. Moreover, our framework for the affine group is also applicable to its continuous subgroups. We implement equivariant networks for the scale group, the rotation-scale group, and the affine group. Numerical experiments demonstrate the outstanding performance of our framework across classification tasks involving transformations of these groups. Remarkably, under the out-of-distribution setting, our model achieves a 3.37% improvement in accuracy over the main counterpart affConv on the affNIST dataset.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 8b061854-7712-4dbb-b4a1-8ed89ee30ce3Cited by top-tier papers10
- 3D Equivariant Visuomotor Policy Learning via Spherical ProjectionBoce Hu, Dian Wang, David Klee, Heng Tian et al.NeurIPS 2025 · 9 citations
- Discovering Symmetry Groups with Flow MatchingYuxuan Chen, Jung Yeon Park, Floor Eijkelboom, Jianke Yang et al.ICML 2026 · 3 citations
- Equivariant Neural Networks for General Linear Symmetries on Lie AlgebrasChankyo Kim, Sicheng Zhao, Minghan Zhu, Tzu-Yuan Lin et al.ICML 2026 · 2 citations
- Equivariant Eikonal Neural Networks: Grid-Free, Scalable Travel-Time Prediction on Homogeneous SpacesAlejandro García-Castellanos, David R. Wessels, Nicky J. van den Berg, Remco Duits et al.NeurIPS 2025 · 1 citation
- Projective Equivariant Networks via Second-order Fundamental Differential InvariantsYikang Li, Yeqing Qiu, Yuxuan Chen, Lingshen He et al.NeurIPS 2025 · 1 citation
Builds on21
- SE(3)-Transformers: 3D Roto-Translation Equivariant Attention NetworksFabian Fuchs, Daniel E. Worrall, Volker Fischer, Max WellingNeurIPS 2020 · 1,025 citations
- Generalizing Convolutional Neural Networks for Equivariance to Lie Groups on Arbitrary Continuous DataMarc Finzi, Samuel Stanton, Pavel Izmailov, Andrew Gordon WilsonICML 2020 · 372 citations
- Incorporating Symmetry into Deep Dynamics Models for Improved GeneralizationRui Wang, Robin Walters, Rose YuICLR 2021 · 201 citations
- Scale-Equivariant Steerable NetworksIvan Sosnovik, Michal Szmaja, Arnold W. M. SmeuldersICLR 2020 · 169 citations
- Gauge Equivariant Mesh CNNs: Anisotropic convolutions on geometric graphsPim de Haan, Maurice Weiler, Taco Cohen, Max WellingICLR 2021 · 139 citations
Related papers
- Lie Group Decompositions for Equivariant Neural NetworksMircea Mironenco, Patrick ForréICLR 2024 · 11 citations
- PDO-eConvs: Partial Differential Operator Based Equivariant ConvolutionsZhengyang Shen, Lingshen He, Zhouchen Lin, Jinwen MaICML 2020 · 57 citations
- Enabling Equivariance for Arbitrary Lie GroupsLachlan E. MacDonald, Sameera Ramasinghe, Simon LuceyCVPR 2022 · 11 citations
- Learning Partial Equivariances From DataDavid W. Romero, Suhas LohitNeurIPS 2022 · 54 citations
- Empowering Networks With Scale and Rotation Equivariance Using A Similarity ConvolutionZikai Sun, Thierry BluICLR 2023 · 2 citations
