WarpGrad meta-learns interleaved warp layers that precondition gradients, delivering consistent accuracy gains in few-shot and multi-shot learning, plus promising results in reinforcement and continual learning.
Meta-Curvature
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abstract
We propose meta-curvature (MC), a framework to learn curvature information for better generalization and fast model adaptation. MC expands on the model-agnostic meta-learner (MAML) by learning to transform the gradients in the inner optimization such that the transformed gradients achieve better generalization performance to a new task. For training large scale neural networks, we decompose the curvature matrix into smaller matrices in a novel scheme where we capture the dependencies of the model's parameters with a series of tensor products. We demonstrate the effects of our proposed method on several few-shot learning tasks and datasets. Without any task specific techniques and architectures, the proposed method achieves substantial improvement upon previous MAML variants and outperforms the recent state-of-the-art methods. Furthermore, we observe faster convergence rates of the meta-training process. Finally, we present an analysis that explains better generalization performance with the meta-trained curvature.
fields
cs.LG 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
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Meta-Learning with Warped Gradient Descent
WarpGrad meta-learns interleaved warp layers that precondition gradients, delivering consistent accuracy gains in few-shot and multi-shot learning, plus promising results in reinforcement and continual learning.