Papers › Dimensionality-Driven Learning with Noisy Labels
Dimensionality-Driven Learning with Noisy Labels
Xingjun Ma, Yisen Wang, Michael E. Houle, Shuo Zhou, Sarah M. Erfani, Shu-Tao Xia, Sudanthi Wijewickrema, James Bailey
Datasets with significant proportions of noisy (incorrect) class labels present challenges for training accurate Deep Neural Networks (DNNs). We propose a new perspective for understanding DNN generalization for such datasets, by investigating the dimensionality of the deep representation subspace of training samples. We show that from a dimensionality perspective, DNNs exhibit quite distinctive learning styles when trained with clean labels versus when trained with a proportion of noisy labels. Based on this finding, we develop a new dimensionality-driven learning strategy, which monitors the dimensionality of subspaces during training and adapts the loss function accordingly. We empirically demonstrate that our approach is highly tolerant to significant proportions of noisy labels, and can effectively learn low-dimensional local subspaces that capture the data distribution.
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Tasks
Results from the paper archive 2025-07-28
| Task | Dataset | Model | Metric | Value | Rank at snapshot | Leaderboard | Report |
|---|---|---|---|---|---|---|---|
| Image Classification | Clothing1M | D2L | Accuracy | 69.47% | #50 of 51 | Archive leaderboard | report |
| Image Classification | mini WebVision 1.0 | D2L (Inception-ResNet-v2) | ImageNet Top-1 Accuracy | 57.80 | #41 of 47 | Archive leaderboard | report |
| Image Classification | mini WebVision 1.0 | D2L (Inception-ResNet-v2) | ImageNet Top-5 Accuracy | 81.36 | #41 of 47 | Archive leaderboard | report |
| Image Classification | mini WebVision 1.0 | D2L (Inception-ResNet-v2) | Top-1 Accuracy | 62.68 | #41 of 47 | Archive leaderboard | report |
| Image Classification | mini WebVision 1.0 | D2L (Inception-ResNet-v2) | Top-5 Accuracy | 84.00 | #41 of 47 | Archive leaderboard | report |
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