A 0.4B adapter with squeeze-and-excitation layers lets the frozen 12B Flux model restore images after training on 350k Flux-generated images, at roughly one-tenth of the training cost of prior generative restoration systems.
InstantIR: Blind Image Restoration with Instant Generative Reference
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abstract
Handling test-time unknown degradation is the major challenge in Blind Image Restoration (BIR), necessitating high model generalization. An effective strategy is to incorporate prior knowledge, either from human input or generative model. In this paper, we introduce Instant-reference Image Restoration (InstantIR), a novel diffusion-based BIR method which dynamically adjusts generation condition during inference. We first extract a compact representation of the input via a pre-trained vision encoder. At each generation step, this representation is used to decode current diffusion latent and instantiate it in the generative prior. The degraded image is then encoded with this reference, providing robust generation condition. We observe the variance of generative references fluctuate with degradation intensity, which we further leverage as an indicator for developing a sampling algorithm adaptive to input quality. Extensive experiments demonstrate InstantIR achieves state-of-the-art performance and offering outstanding visual quality. Through modulating generative references with textual description, InstantIR can restore extreme degradation and additionally feature creative restoration.
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cs.CV 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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Acquire and then Adapt: Squeezing out Text-to-Image Model for Image Restoration
A 0.4B adapter with squeeze-and-excitation layers lets the frozen 12B Flux model restore images after training on 350k Flux-generated images, at roughly one-tenth of the training cost of prior generative restoration systems.