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Learning from Label Proportions with Consistency Regularization

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The problem of learning from label proportions (LLP) involves training classifiers with weak labels on bags of instances, rather than strong labels on individual instances. The weak labels only contain the label proportion of each bag. The LLP problem is important for many practical applications that only allow label proportions to be collected because of data privacy or annotation cost, and has recently received lots of research attention. Most existing works focus on extending supervised learning models to solve the LLP problem, but the weak learning nature makes it hard to further improve LLP performance with a supervised angle. In this paper, we take a different angle from semi-supervised learning. In particular, we propose a novel model inspired by consistency regularization, a popular concept in semi-supervised learning that encourages the model to produce a decision boundary that better describes the data manifold. With the introduction of consistency regularization, we further extend our study to non-uniform bag-generation and validation-based parameter-selection procedures that better match practical needs. Experiments not only justify that LLP with consistency regularization achieves superior performance, but also demonstrate the practical usability of the proposed procedures.

Kuen-Han Tsai, Hsuan-Tien Lin• 2019

Related benchmarks

TaskDatasetResultRank
Image ClassificationSVHN (test)
Accuracy96.88
401
Image ClassificationSVHN
Accuracy96.88
395
Image ClassificationCIFAR-100
Accuracy73.85
302
Image ClassificationCIFAR10 (test)
Test Accuracy79.07
284
Image ClassificationEMNIST (test)
Accuracy93.08
234
Image ClassificationMiniImagenet
Accuracy64.17
206
Image ClassificationSVHN (test)
Accuracy69.62
199
Image ClassificationFashionMNIST
Accuracy94.69
171
Image ClassificationMini-Imagenet (test)
Top-1 Accuracy64.17
91
Image ClassificationFashion MNIST (test)
Accuracy (%)94.69
55
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