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Papers/CAMixerSR: Only Details Need More "Attention"

CAMixerSR: Only Details Need More "Attention"

Yan Wang, Yi Liu, Shijie Zhao, Junlin Li, Li Zhang

2024-02-29CVPR 2024 1Super-ResolutionImage Super-Resolution2k
PaperPDFCode(official)

Abstract

To satisfy the rapidly increasing demands on the large image (2K-8K) super-resolution (SR), prevailing methods follow two independent tracks: 1) accelerate existing networks by content-aware routing, and 2) design better super-resolution networks via token mixer refining. Despite directness, they encounter unavoidable defects (e.g., inflexible route or non-discriminative processing) limiting further improvements of quality-complexity trade-off. To erase the drawbacks, we integrate these schemes by proposing a content-aware mixer (CAMixer), which assigns convolution for simple contexts and additional deformable window-attention for sparse textures. Specifically, the CAMixer uses a learnable predictor to generate multiple bootstraps, including offsets for windows warping, a mask for classifying windows, and convolutional attentions for endowing convolution with the dynamic property, which modulates attention to include more useful textures self-adaptively and improves the representation capability of convolution. We further introduce a global classification loss to improve the accuracy of predictors. By simply stacking CAMixers, we obtain CAMixerSR which achieves superior performance on large-image SR, lightweight SR, and omnidirectional-image SR.

Results

TaskDatasetMetricValueModel
Super-ResolutionSet14 - 4x upscalingPSNR28.82CAMixerSR
Super-ResolutionSet14 - 4x upscalingSSIM0.787CAMixerSR
Image Super-ResolutionSet14 - 4x upscalingPSNR28.82CAMixerSR
Image Super-ResolutionSet14 - 4x upscalingSSIM0.787CAMixerSR
3D Object Super-ResolutionSet14 - 4x upscalingPSNR28.82CAMixerSR
3D Object Super-ResolutionSet14 - 4x upscalingSSIM0.787CAMixerSR
16kSet14 - 4x upscalingPSNR28.82CAMixerSR
16kSet14 - 4x upscalingSSIM0.787CAMixerSR

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