English

Scaling-Translation-Equivariant Networks with Decomposed Convolutional Filters

Machine Learning 2022-02-08 v3 Machine Learning

Abstract

Encoding the scale information explicitly into the representation learned by a convolutional neural network (CNN) is beneficial for many computer vision tasks especially when dealing with multiscale inputs. We study, in this paper, a scaling-translation-equivariant (ST-equivariant) CNN with joint convolutions across the space and the scaling group, which is shown to be both sufficient and necessary to achieve equivariance for the regular representation of the scaling-translation group ST . To reduce the model complexity and computational burden, we decompose the convolutional filters under two pre-fixed separable bases and truncate the expansion to low-frequency components. A further benefit of the truncated filter expansion is the improved deformation robustness of the equivariant representation, a property which is theoretically analyzed and empirically verified. Numerical experiments demonstrate that the proposed scaling-translation-equivariant network with decomposed convolutional filters (ScDCFNet) achieves significantly improved performance in multiscale image classification and better interpretability than regular CNNs at a reduced model size.

Keywords

Cite

@article{arxiv.1909.11193,
  title  = {Scaling-Translation-Equivariant Networks with Decomposed Convolutional Filters},
  author = {Wei Zhu and Qiang Qiu and Robert Calderbank and Guillermo Sapiro and Xiuyuan Cheng},
  journal= {arXiv preprint arXiv:1909.11193},
  year   = {2022}
}
R2 v1 2026-06-23T11:24:52.906Z