Unsupervised Self-Driving Attention Prediction via Uncertainty Mining and Knowledge Embedding

Pengfei Zhu, Mengshi Qi, Xia Li, Weijian Li, Huadong Ma; Proceedings of the IEEE/CVF International Conference on Computer Vision (ICCV), 2023, pp. 8558-8568

Abstract


Predicting attention regions of interest is an important yet challenging task for self-driving systems. Existing methodologies rely on large-scale labeled traffic datasets that are labor-intensive to obtain. Besides, the huge domain gap between natural scenes and traffic scenes in current datasets also limits the potential for model training. To address these challenges, we are the first to introduce an unsupervised way to predict self-driving attention by uncertainty modeling and driving knowledge integration. Our approach's Uncertainty Mining Branch (UMB) discovers commonalities and differences from multiple generated pseudo-labels achieved from models pre-trained on natural scenes by actively measuring the uncertainty. Meanwhile, our Knowledge Embedding Block (KEB) bridges the domain gap by incorporating driving knowledge to adaptively refine the generated pseudo-labels. Quantitative and qualitative results with equivalent or even more impressive performance compared to fully-supervised state-of-the-art approaches across all three public datasets demonstrate the effectiveness of the proposed method and the potential of this direction. The code is available at https://github.com/zaplm/DriverAttention.

Related Material


[pdf] [arXiv]
[bibtex]
@InProceedings{Zhu_2023_ICCV, author = {Zhu, Pengfei and Qi, Mengshi and Li, Xia and Li, Weijian and Ma, Huadong}, title = {Unsupervised Self-Driving Attention Prediction via Uncertainty Mining and Knowledge Embedding}, booktitle = {Proceedings of the IEEE/CVF International Conference on Computer Vision (ICCV)}, month = {October}, year = {2023}, pages = {8558-8568} }