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Learning Meta-class Memory for Few-Shot Semantic Segmentation

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Currently, the state-of-the-art methods treat few-shot semantic segmentation task as a conditional foreground-background segmentation problem, assuming each class is independent. In this paper, we introduce the concept of meta-class, which is the meta information (e.g. certain middle-level features) shareable among all classes. To explicitly learn meta-class representations in few-shot segmentation task, we propose a novel Meta-class Memory based few-shot segmentation method (MM-Net), where we introduce a set of learnable memory embeddings to memorize the meta-class information during the base class training and transfer to novel classes during the inference stage. Moreover, for the $k$-shot scenario, we propose a novel image quality measurement module to select images from the set of support images. A high-quality class prototype could be obtained with the weighted sum of support image features based on the quality measure. Experiments on both PASCAL-$5^i$ and COCO dataset shows that our proposed method is able to achieve state-of-the-art results in both 1-shot and 5-shot settings. Particularly, our proposed MM-Net achieves 37.5\% mIoU on the COCO dataset in 1-shot setting, which is 5.1\% higher than the previous state-of-the-art.

Zhonghua Wu, Xiangxi Shi, Guosheng lin, Jianfei Cai• 2021

Related benchmarks

TaskDatasetResultRank
Few-shot SegmentationPASCAL-5i
mIoU (Fold 0)62.7
325
Few-shot Semantic SegmentationCOCO-20i
mIoU37.4
115
Few-shot Semantic SegmentationPASCAL-5i
mIoU61.8
96
Few-shot Semantic SegmentationCOCO 5-shot 20i
mIoU38.2
85
Few-shot Semantic SegmentationCOCO-20i (test)--
79
Few-shot Semantic SegmentationCOCO-20i (val)
mIoU Mean38.2
78
Few-shot SegmentationCOCO-20^i--
78
Few-shot Semantic SegmentationCOCO 20i 1-shot
mIoU (Overall)37.5
77
Few-shot SegmentationPascal-5^i 1-way 1-shot
mIoU61.8
71
Few-shot Semantic SegmentationCOCO-20^i v1.0
mIoU (Overall)37.5
70
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