Unsupervised Meta-Learning For Few-Shot Image Classification
November 28, 2018 Β· Declared Dead Β· π Neural Information Processing Systems
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Authors
Siavash Khodadadeh, Ladislau BΓΆlΓΆni, Mubarak Shah
arXiv ID
1811.11819
Category
cs.CV: Computer Vision
Cross-listed
cs.LG
Citations
156
Venue
Neural Information Processing Systems
Last Checked
3 months ago
Abstract
Few-shot or one-shot learning of classifiers requires a significant inductive bias towards the type of task to be learned. One way to acquire this is by meta-learning on tasks similar to the target task. In this paper, we propose UMTRA, an algorithm that performs unsupervised, model-agnostic meta-learning for classification tasks. The meta-learning step of UMTRA is performed on a flat collection of unlabeled images. While we assume that these images can be grouped into a diverse set of classes and are relevant to the target task, no explicit information about the classes or any labels are needed. UMTRA uses random sampling and augmentation to create synthetic training tasks for meta-learning phase. Labels are only needed at the final target task learning step, and they can be as little as one sample per class. On the Omniglot and Mini-Imagenet few-shot learning benchmarks, UMTRA outperforms every tested approach based on unsupervised learning of representations, while alternating for the best performance with the recent CACTUs algorithm. Compared to supervised model-agnostic meta-learning approaches, UMTRA trades off some classification accuracy for a reduction in the required labels of several orders of magnitude.
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