IJCAI 2023poster12 citations

Dichotomous Image Segmentation with Frequency Priors

Yan Zhou, Bo Dong, Yuanfeng Wu, Wentao Zhu, Geng Chen, Yanning Zhang

Abstract

Dichotomous image segmentation (DIS) has a wide range of real-world applications and gained increasing research attention in recent years. In this paper, we propose to tackle DIS with informative frequency priors. Our model, called FP-DIS, stems from the fact that prior knowledge in the frequency domain can provide valuable cues to identify fine-grained object boundaries. Specifically, we propose a frequency prior generator to jointly utilize a fixed filter and learnable filters to extract informative frequency priors. Before embedding the frequency priors into the network, we first harmonize the multi-scale side-out features to reduce their heterogeneity. This is achieved by our feature harmonization module, which is based on a gating mechanism to harmonize the grouped features. Finally, we propose a frequency prior embedding module to embed the frequency priors into multi-scale features through an adaptive modulation strategy. Extensive experiments on the benchmark dataset, DIS5K, demonstrate that our FP-DIS outperforms state-of-the-art methods by a large margin in terms of key evaluation metrics.

Computer Vision: CV: SegmentationComputer Vision: CV: Scene analysis and understanding
BibTeX
@inproceedings{ijcai2023p202,
  title     = {Dichotomous Image Segmentation with Frequency Priors},
  author    = {Zhou, Yan and Dong, Bo and Wu, Yuanfeng and Zhu, Wentao and Chen, Geng and Zhang, Yanning},
  booktitle = {Proceedings of the Thirty-Second International Joint Conference on
               Artificial Intelligence, {IJCAI-23}},
  publisher = {International Joint Conferences on Artificial Intelligence Organization},
  editor    = {Edith Elkind},
  pages     = {1822--1830},
  year      = {2023},
  month     = {8},
  note      = {Main Track},
  doi       = {10.24963/ijcai.2023/202},
  url       = {https://doi.org/10.24963/ijcai.2023/202},
}
Dichotomous Image Segmentation with Frequency Priors · IJCAI 2023