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Learning Kernel for Conditional Moment-Matching Discrepancy-Based Image Classification

delete2021-04-01
delete11
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OA
AI
C
Chuan-Xian Ren *
P
Pengfei Ge
D
Dao‐Qing Dai
H
Hong Yan
DOI:10.1109/TCYB.2019.2916198delete
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摘要

摘要

En 中文
Conditional maximum mean discrepancy (CMMD) can capture the discrepancy between conditional distributions by drawing support from nonlinear kernel functions; thus, it has been successfully used for pattern classification. However, CMMD does not work well on complex distributions, especially when the kernel function fails to correctly characterize the difference between intraclass similarity and interclass similarity. In this paper, a new kernel learning method is proposed to improve the discrimination performance of CMMD. It can be operated with deep network features iteratively and thus denoted as KLN for abbreviation. The CMMD loss and an autoencoder (AE) are used to learn an injective function. By considering the compound kernel, that is, the injective function with a characteristic kernel, the effectiveness of CMMD for data category description is enhanced. KLN can simultaneously learn a more expressive kernel and label prediction distribution; thus, it can be used to improve the classification performance in both supervised and semisupervised learning scenarios. In particular, the kernel-based similarities are iteratively learned on the deep network features, and the algorithm can be implemented in an end-to-end manner. Extensive experiments are conducted on four benchmark datasets, including MNIST, SVHN, CIFAR-10, and CIFAR-100. The results indicate that KLN achieves the state-of-the-art classification performance.
Keyword:
Kernel
Task analysis
Training
Learning systems
Prediction algorithms
Germanium
Computational modeling
Autoencoder (AE)
conditional distribution discrepancy
kernel mappings
moment-matching network
semisupervised learning
supervised learning
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期刊

IEEE Transactions on Cybernetics 封面图
IEEE Transactions on Cybernetics
IF:
10.5
论文数:
1.1W
被引数:
5.0W

机构

S
Sun Yat Sen University
学者数:
9.9W
论文数: 7.2W
被引数: 95
C
City University of Hong Kong
学者数:
2.3W
论文数: 3.0W
被引数: 6.1W
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