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Object-Level Representation Learning for Few-Shot Image Classification

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abstract

Few-shot learning that trains image classifiers over few labeled examples per category is a challenging task. In this paper, we propose to exploit an additional big dataset with different categories to improve the accuracy of few-shot learning over our target dataset. Our approach is based on the observation that images can be decomposed into objects, which may appear in images from both the additional dataset and our target dataset. We use the object-level relation learned from the additional dataset to infer the similarity of images in our target dataset with unseen categories. Nearest neighbor search is applied to do image classification, which is a non-parametric model and thus does not need fine-tuning. We evaluate our algorithm on two popular datasets, namely Omniglot and MiniImagenet. We obtain 8.5\% and 2.7\% absolute improvements for 5-way 1-shot and 5-way 5-shot experiments on MiniImagenet, respectively. Source code will be published upon acceptance.

fields

cs.LG 1

years

2019 1

verdicts

CONDITIONAL 1

representative citing papers

Efficient Automatic Meta Optimization Search for Few-Shot Learning

cs.LG · 2019-09-06 · conditional · novelty 5.0

A NAS controller and Reptile meta-learning are jointly optimized to automatically search few-shot learner architectures, reaching 74.2% on Mini-ImageNet 5-shot 5-way transductive classification in 1 to 2 GPU days.

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  • Efficient Automatic Meta Optimization Search for Few-Shot Learning cs.LG · 2019-09-06 · conditional · none · ref 8 · internal anchor

    A NAS controller and Reptile meta-learning are jointly optimized to automatically search few-shot learner architectures, reaching 74.2% on Mini-ImageNet 5-shot 5-way transductive classification in 1 to 2 GPU days.