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Advances and Challenges in Meta-Learning: A Technical Review

Machine Learning 2023-07-11 v1

Abstract

Meta-learning empowers learning systems with the ability to acquire knowledge from multiple tasks, enabling faster adaptation and generalization to new tasks. This review provides a comprehensive technical overview of meta-learning, emphasizing its importance in real-world applications where data may be scarce or expensive to obtain. The paper covers the state-of-the-art meta-learning approaches and explores the relationship between meta-learning and multi-task learning, transfer learning, domain adaptation and generalization, self-supervised learning, personalized federated learning, and continual learning. By highlighting the synergies between these topics and the field of meta-learning, the paper demonstrates how advancements in one area can benefit the field as a whole, while avoiding unnecessary duplication of efforts. Additionally, the paper delves into advanced meta-learning topics such as learning from complex multi-modal task distributions, unsupervised meta-learning, learning to efficiently adapt to data distribution shifts, and continual meta-learning. Lastly, the paper highlights open problems and challenges for future research in the field. By synthesizing the latest research developments, this paper provides a thorough understanding of meta-learning and its potential impact on various machine learning applications. We believe that this technical overview will contribute to the advancement of meta-learning and its practical implications in addressing real-world problems.

Keywords

Cite

@article{arxiv.2307.04722,
  title  = {Advances and Challenges in Meta-Learning: A Technical Review},
  author = {Anna Vettoruzzo and Mohamed-Rafik Bouguelia and Joaquin Vanschoren and Thorsteinn Rögnvaldsson and KC Santosh},
  journal= {arXiv preprint arXiv:2307.04722},
  year   = {2023}
}
R2 v1 2026-06-28T11:26:13.875Z