NeurIPS 2020spotlight441 citations

DISK: Learning local features with policy gradient

Michał Tyszkiewicz, Pascal Fua, Eduard Trulls

Abstract

Local feature frameworks are difficult to learn in an end-to-end fashion due to the discreteness inherent to the selection and matching of sparse keypoints. We introduce DISK (DIScrete Keypoints), a novel method that overcomes these obstacles by leveraging principles from Reinforcement Learning (RL), optimizing end-to-end for a high number of correct feature matches. Our simple yet expressive probabilistic model lets us keep the training and inference regimes close, while maintaining good enough convergence properties to reliably train from scratch. Our features can be extracted very densely while remaining discriminative, challenging commonly held assumptions about what constitutes a good keypoint, as showcased in Fig. 1, and deliver state-of-the-art results on three public benchmarks.

BibTeX
@inproceedings{NEURIPS2020_a42a596f,
 author = {Tyszkiewicz, Micha\l  and Fua, Pascal and Trulls, Eduard},
 booktitle = {Advances in Neural Information Processing Systems},
 editor = {H. Larochelle and M. Ranzato and R. Hadsell and M.F. Balcan and H. Lin},
 pages = {14254--14265},
 publisher = {Curran Associates, Inc.},
 title = {DISK: Learning local features with policy gradient},
 url = {https://proceedings.neurips.cc/paper_files/paper/2020/file/a42a596fc71e17828440030074d15e74-Paper.pdf},
 volume = {33},
 year = {2020}
}
DISK: Learning local features with policy gradient · NeurIPS 2020