Deep Label Distribution Learning With Label Ambiguity

Convolutional neural networks (ConvNets) have achieved excellent recognition performance in various visual recognition tasks. A large labeled training set is one of the most important factors for its success. However, it is difficult to collect sufficient training images with precise labels in some...

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Bibliographic Details
Published inIEEE transactions on image processing Vol. 26; no. 6; pp. 2825 - 2838
Main Authors Gao, Bin-Bin, Xing, Chao, Xie, Chen-Wei, Wu, Jianxin, Geng, Xin
Format Journal Article
LanguageEnglish
Published United States IEEE 01.06.2017
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Summary:Convolutional neural networks (ConvNets) have achieved excellent recognition performance in various visual recognition tasks. A large labeled training set is one of the most important factors for its success. However, it is difficult to collect sufficient training images with precise labels in some domains, such as apparent age estimation, head pose estimation, multilabel classification, and semantic segmentation. Fortunately, there is ambiguous information among labels, which makes these tasks different from traditional classification. Based on this observation, we convert the label of each image into a discrete label distribution, and learn the label distribution by minimizing a Kullback-Leibler divergence between the predicted and ground-truth label distributions using deep ConvNets. The proposed deep label distribution learning (DLDL) method effectively utilizes the label ambiguity in both feature learning and classifier learning, which help prevent the network from overfitting even when the training set is small. Experimental results show that the proposed approach produces significantly better results than the state-of-the-art methods for age estimation and head pose estimation. At the same time, it also improves recognition performance for multi-label classification and semantic segmentation tasks.
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ISSN:1057-7149
1941-0042
1941-0042
DOI:10.1109/TIP.2017.2689998