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AdaFilter: Adaptive Filter Fine-tuning for Deep Transfer Learning (1911.09659v2)

Published 21 Nov 2019 in cs.CV

Abstract: There is an increasing number of pre-trained deep neural network models. However, it is still unclear how to effectively use these models for a new task. Transfer learning, which aims to transfer knowledge from source tasks to a target task, is an effective solution to this problem. Fine-tuning is a popular transfer learning technique for deep neural networks where a few rounds of training are applied to the parameters of a pre-trained model to adapt them to a new task. Despite its popularity, in this paper, we show that fine-tuning suffers from several drawbacks. We propose an adaptive fine-tuning approach, called AdaFilter, which selects only a part of the convolutional filters in the pre-trained model to optimize on a per-example basis. We use a recurrent gated network to selectively fine-tune convolutional filters based on the activations of the previous layer. We experiment with 7 public image classification datasets and the results show that AdaFilter can reduce the average classification error of the standard fine-tuning by 2.54%.

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Authors (4)
  1. Yunhui Guo (36 papers)
  2. Yandong Li (38 papers)
  3. Liqiang Wang (51 papers)
  4. Tajana Rosing (47 papers)
Citations (39)

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