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Incomplete multi-view partial multi-label learning

delete2021-07-03
delete19
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AI
X
Xinyuan Liu
L
Lijuan Sun
冯松鹤 (Songhe Feng) *
DOI:10.1007/s10489-021-02606-wdelete
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Abstract

Abstract

En 中文
Partial multi-label learning is of great significant interest due to accurate supervision is difficult to be obtained. Recently, multi-view learning has been developed to deal with partial multi-label learning tasks. Although few multi-view partial multi-label learning methods have been proposed, all of them are designed under the full-view assumption. However, due to the difficulties in multi-view data collection, some views may not contain complete information in real task. The appearance of missing views will affect the performance of traditional partial multi-label learning algorithms. To solve this problem, we propose a novel I ncomplete M ulti-V iew P artial M ulti-L abel learning (IMVPML) framework which makes use of incomplete multi-view feature representation and utilizes the low-rank and sparse decomposition scheme to remove the noisy labels. Specifically, we first learn a shared subspace across heterogenous incomplete views. Secondly, we utilize the low-rank and sparse decomposition scheme to obtain the ground-truth labels. Thirdly, we introduce a graph Laplacian regularization to constrain the ground-truth labels and impose orthogonality constraints on the correlations between subspace. Finally, a predictive model is learned by shared subspace and disambiguation labels. Enormous experimental results demonstrate that the proposed method can achieve competitive performance in solving the problem of incomplete multi-view partial multi-label learning.
Keywords:
Partial multi-label learning
Incomplete multi-view
Low-rank and sparse decomposition
Feature and label collaboration
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Journal

Applied Intelligence cover
Applied Intelligence
IF:
3.5
Papers:
7.5K
Citations:
1.7W

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beijing university of posts & telecommunications
Scholars:
1.4W
Papers: 1.2W
Citations: 9
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Beijing Jiaotong University
Scholars:
2.2W
Papers: 1.7W
Citations: 1.2W