Learning to Balance Local Losses via Meta-Learning

  • Yoa, Seungdong
  • Jeon, Minkyu
  • Oh, Youngjin
  • Kim, Hyunwoo J.
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초록

The standard training for deep neural networks relies on a global and fixed loss function. For more effective training, dynamic loss functions have been recently proposed. However, the dynamic global loss function is not flexible to differentially train layers in complex deep neural networks. In this paper, we propose a general framework that learns to adaptively train each layer of deep neural networks via meta-learning. Our framework leverages the local error signals from layers and identifies which layer needs to be trained more at every iteration. Also, the proposed method improves the local loss function with our minibatch-wise dropout and cross-validation loop to alleviate meta-overfitting. The experiments show that our method achieved competitive performance compared to state-of-the-art methods on popular benchmark datasets for image classification: CIFAR-10 and CIFAR-100. Surprisingly, our method enables training deep neural networks without skip-connections using dynamically weighted local loss functions.

키워드

TrainingNeural networksLoss measurementStandardsDeep learningTask analysisLicensesDeep learningimage classificationmachine learningmeta-learning
제목
Learning to Balance Local Losses via Meta-Learning
저자
Yoa, SeungdongJeon, MinkyuOh, YoungjinKim, Hyunwoo J.
DOI
10.1109/ACCESS.2021.3113934
발행일
2021
유형
Article
저널명
IEEE Access
9
페이지
130834 ~ 130844