Incrementally Learned Angular Representations for Few-Shot Class-Incremental Learning

被引:0
作者
Yoon, In-Ug [1 ]
Kim, Jong-Hwan [1 ]
机构
[1] Korea Adv Inst Sci & Technol KAIST, Sch Elect Engn, Daejeon 34141, South Korea
关键词
Classification algorithms; Class-incremental learning; few-shot learning; few-shot class-incremental learning; image classification;
D O I
10.1109/ACCESS.2023.3341500
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
The main challenge of FSCIL is the trade-off between underfitting to a new session task and preventing forgetting the knowledge for earlier sessions. In this paper, we reveal that the angular space occupied by the features within the embedded area is relatively narrow. Consequently, after the base session training with the converged feature extractor, adding features of new classes easily overlaps with the previously occupied space of previous classes. Furthermore, in contrast to the base session classes, whose features are relatively well aggregated, the features of new session classes are dispersed over large regions. Thus, we propose the Incrementally Learned Angular Representation (ILAR) learning structure to address these issues. During the base session, ILAR attempts to increase the marginal spacing between the distributions of features for each class. In incremental sessions, modifications of features and classifiers corresponding to the previous session classes are limited to preserve the past knowledge while the features of new classes are readjusted. Furthermore, we generate additional features according to the statistics learned from the base session to reduce the variance caused by data shortage. Experiments proceeded on three popular benchmark datasets, including CIFAR100, miniImageNet, and CUB200. We demonstrate that the proposed method achieves state-of-the-art performances by effectively enhancing the new session classification ability while preserving the knowledge of the past sessions.
引用
收藏
页码:140626 / 140635
页数:10
相关论文
共 50 条
[41]   HDCPAA: A few-shot class-incremental learning model for remote sensing image recognition [J].
Li, Peng ;
Feng, Cunqian ;
Hu, Xiaowei ;
Feng, Weike .
NEUROCOMPUTING, 2025, 636
[42]   Mitigate forgetting in few-shot class-incremental learning using different image views [J].
Mazumder, Pratik ;
Singh, Pravendra .
NEURAL NETWORKS, 2023, 165 :999-1009
[43]   Few-Shot Class-Incremental Learning for EEG-Based Emotion Recognition [J].
Ma, Tian-Fang ;
Zheng, Wei-Long ;
Lu, Bao-Liang .
NEURAL INFORMATION PROCESSING, ICONIP 2022, PT V, 2023, 1792 :445-455
[44]   Semantic-visual Guided Transformer for Few-shot Class-incremental Learning [J].
Qiu, Wenhao ;
Fu, Sichao ;
Zhang, Jingyi ;
Lei, Chengxiang ;
Peng, Qinmu .
2023 IEEE INTERNATIONAL CONFERENCE ON MULTIMEDIA AND EXPO, ICME, 2023, :2885-2890
[45]   CTL-I: Infrared Few-Shot Learning via Omnidirectional Compatible Class-Incremental [J].
Yang, Biwen ;
Zhang, Ruiheng ;
Liu, Yumeng ;
Liu, Guanyu ;
Cao, Zhe ;
Yang, Zhidong ;
Yu, Heng ;
Xu, Lixin .
BIG DATA TECHNOLOGIES AND APPLICATIONS, EAI INTERNATIONAL CONFERENCE, BDTA 2023, 2024, 555 :3-17
[46]   Rethinking Few-Shot Class-Incremental Learning With Open-Set Hypothesis in Hyperbolic Geometry [J].
Cui, Yawen ;
Yu, Zitong ;
Peng, Wei ;
Tian, Qi ;
Liu, Li .
IEEE TRANSACTIONS ON MULTIMEDIA, 2024, 26 :5897-5910
[47]   Semi-supervised few-shot class-incremental learning based on dynamic topology evolution [J].
Han, Wenqi ;
Huang, Kai ;
Geng, Jie ;
Jiang, Wen .
ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE, 2024, 133
[48]   Uncertainty-guided recurrent prototype distillation for graph few-shot class-incremental learning [J].
Zhu, Ning ;
Wang, Shaofan ;
Sun, Yanfeng ;
Yin, Baocai .
MULTIMEDIA SYSTEMS, 2025, 31 (03)
[49]   Self-supervised Contrastive Feature Refinement for Few-Shot Class-Incremental Learning [J].
Ma, Shengjin ;
Yuan, Wang ;
Wang, Yiting ;
Tan, Xin ;
Zhang, Zhizhong ;
Ma, Lizhuang .
COMPUTER-AIDED DESIGN AND COMPUTER GRAPHICS, CAD/GRAPHICS 2023, 2024, 14250 :281-294
[50]   Few-Shot Class-Incremental Learning for 3D Point Cloud Objects [J].
Chowdhury, Townim ;
Cheraghian, Ali ;
Ramasinghe, Sameera ;
Ahmadi, Sahar ;
Saberi, Morteza ;
Rahman, Shafin .
COMPUTER VISION, ECCV 2022, PT XX, 2022, 13680 :204-220