NeurIPS 2020poster236 citations

Information Maximization for Few-Shot Learning

Malik Boudiaf, Imtiaz Ziko, Jérôme Rony, Jose Dolz, Pablo Piantanida, Ismail Ben Ayed

Abstract

We introduce Transductive Infomation Maximization (TIM) for few-shot learning. Our method maximizes the mutual information between the query features and their label predictions for a given few-shot task, in conjunction with a supervision loss based on the support set. Furthermore, we propose a new alternating-direction solver for our mutual-information loss, which substantially speeds up transductive inference convergence over gradient-based optimization, while yielding similar accuracy. TIM inference is modular: it can be used on top of any base-training feature extractor. Following standard transductive few-shot settings, our comprehensive experiments demonstrate that TIM outperforms state-of-the-art methods significantly across various datasets and networks, while used on top of a fixed feature extractor trained with simple cross-entropy on the base classes, without resorting to complex meta-learning schemes. It consistently brings between 2% and 5% improvement in accuracy over the best performing method, not only on all the well-established few-shot benchmarks but also on more challenging scenarios, with domain shifts and larger numbers of classes.

BibTeX
@inproceedings{NEURIPS2020_196f5641,
 author = {Boudiaf, Malik and Ziko, Imtiaz and Rony, J\'{e}r\^{o}me and Dolz, Jose and Piantanida, Pablo and Ben Ayed, Ismail},
 booktitle = {Advances in Neural Information Processing Systems},
 editor = {H. Larochelle and M. Ranzato and R. Hadsell and M.F. Balcan and H. Lin},
 pages = {2445--2457},
 publisher = {Curran Associates, Inc.},
 title = {Information Maximization for Few-Shot Learning},
 url = {https://proceedings.neurips.cc/paper_files/paper/2020/file/196f5641aa9dc87067da4ff90fd81e7b-Paper.pdf},
 volume = {33},
 year = {2020}
}