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Main Authors: Zhang, Yiyi, Zheng, Ying, Xu, Xiaogang, Wang, Jun
Format: Preprint
Published: 2022
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Online Access:https://arxiv.org/abs/2202.09014
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author Zhang, Yiyi
Zheng, Ying
Xu, Xiaogang
Wang, Jun
author_facet Zhang, Yiyi
Zheng, Ying
Xu, Xiaogang
Wang, Jun
contents Cross-domain few-shot learning (CDFSL) remains a largely unsolved problem in the area of computer vision, while self-supervised learning presents a promising solution. Both learning methods attempt to alleviate the dependency of deep networks on the requirement of large-scale labeled data. Although self-supervised methods have recently advanced dramatically, their utility on CDFSL is relatively unexplored. In this paper, we investigate the role of self-supervised representation learning in the context of CDFSL via a thorough evaluation of existing methods. It comes as a surprise that even with shallow architectures or small training datasets, self-supervised methods can perform favorably compared to the existing SOTA methods. Nevertheless, no single self-supervised approach dominates all datasets indicating that existing self-supervised methods are not universally applicable. In addition, we find that representations extracted from self-supervised methods exhibit stronger robustness than the supervised method. Intriguingly, whether self-supervised representations perform well on the source domain has little correlation with their applicability on the target domain. As part of our study, we conduct an objective measurement of the performance for six kinds of representative classifiers. The results suggest Prototypical Classifier as the standard evaluation recipe for CDFSL.
format Preprint
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publishDate 2022
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spellingShingle How Well Do Self-Supervised Methods Perform in Cross-Domain Few-Shot Learning?
Zhang, Yiyi
Zheng, Ying
Xu, Xiaogang
Wang, Jun
Computer Vision and Pattern Recognition
Cross-domain few-shot learning (CDFSL) remains a largely unsolved problem in the area of computer vision, while self-supervised learning presents a promising solution. Both learning methods attempt to alleviate the dependency of deep networks on the requirement of large-scale labeled data. Although self-supervised methods have recently advanced dramatically, their utility on CDFSL is relatively unexplored. In this paper, we investigate the role of self-supervised representation learning in the context of CDFSL via a thorough evaluation of existing methods. It comes as a surprise that even with shallow architectures or small training datasets, self-supervised methods can perform favorably compared to the existing SOTA methods. Nevertheless, no single self-supervised approach dominates all datasets indicating that existing self-supervised methods are not universally applicable. In addition, we find that representations extracted from self-supervised methods exhibit stronger robustness than the supervised method. Intriguingly, whether self-supervised representations perform well on the source domain has little correlation with their applicability on the target domain. As part of our study, we conduct an objective measurement of the performance for six kinds of representative classifiers. The results suggest Prototypical Classifier as the standard evaluation recipe for CDFSL.
title How Well Do Self-Supervised Methods Perform in Cross-Domain Few-Shot Learning?
topic Computer Vision and Pattern Recognition
url https://arxiv.org/abs/2202.09014