Measuring the Impact of Rotation Equivariance on Aerial Object Detection
Abstract
Due to the arbitrary orientation of objects in aerial images, rotation equivariance is a critical property for aerial object detectors. However, recent studies on rotation-equivariant aerial object detection remain scarce. Most detectors rely on data augmentation to enable models to learn approximately rotation-equivariant features. A few detectors have constructed rotation-equivariant networks, but due to the breaking of strict rotation equivariance by typical downsampling processes, these networks only achieve approximately rotation-equivariant backbones. Whether strict rotation equivariance is necessary for aerial image object detection remains an open question. In this paper, we implement a strictly rotation-equivariant backbone and neck network with a more advanced network structure and compare it with approximately rotation-equivariant networks to quantitatively measure the impact of rotation equivariance on the performance of aerial image detectors. Additionally, leveraging the inherently grouped nature of rotation-equivariant features, we propose a multi-branch head network that reduces the parameter count while improving detection accuracy. Based on the aforementioned improvements, this study proposes the Multi-branch head rotation-equivariant single-stage Detector (MessDet), which achieves state-of-the-art performance on the challenging aerial image datasets DOTA-v1.0, DOTA-v1.5 and DIOR-R with an exceptionally low parameter count.
Cite
Text
Wu et al. "Measuring the Impact of Rotation Equivariance on Aerial Object Detection." International Conference on Computer Vision, 2025.Markdown
[Wu et al. "Measuring the Impact of Rotation Equivariance on Aerial Object Detection." International Conference on Computer Vision, 2025.](https://mlanthology.org/iccv/2025/wu2025iccv-measuring/)BibTeX
@inproceedings{wu2025iccv-measuring,
title = {{Measuring the Impact of Rotation Equivariance on Aerial Object Detection}},
author = {Wu, Xiuyu and Wang, Xinhao and Zhu, Xiubin and Yang, Lan and Liu, Jiyuan and Hu, Xingchen},
booktitle = {International Conference on Computer Vision},
year = {2025},
pages = {7329-7339},
url = {https://mlanthology.org/iccv/2025/wu2025iccv-measuring/}
}