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Neural Degradation Representation Learning for All-In-One Image Restoration

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Existing methods have demonstrated effective performance on a single degradation type. In practical applications, however, the degradation is often unknown, and the mismatch between the model and the degradation will result in a severe performance drop. In this paper, we propose an all-in-one image restoration network that tackles multiple degradations. Due to the heterogeneous nature of different types of degradations, it is difficult to process multiple degradations in a single network. To this end, we propose to learn a neural degradation representation (NDR) that captures the underlying characteristics of various degradations. The learned NDR decomposes different types of degradations adaptively, similar to a neural dictionary that represents basic degradation components. Subsequently, we develop a degradation query module and a degradation injection module to effectively recognize and utilize the specific degradation based on NDR, enabling the all-in-one restoration ability for multiple degradations. Moreover, we propose a bidirectional optimization strategy to effectively drive NDR to learn the degradation representation by optimizing the degradation and restoration processes alternately. Comprehensive experiments on representative types of degradations (including noise, haze, rain, and downsampling) demonstrate the effectiveness and generalization capability of our method.

Mingde Yao, Ruikang Xu, Yuanshen Guan, Jie Huang, Zhiwei Xiong• 2023

Related benchmarks

TaskDatasetResultRank
Image DerainingRain100L
PSNR35.42
152
DehazingSOTS
PSNR28.64
117
DerainingRain100L
PSNR35.42
116
Image DehazingSOTS
PSNR28.64
95
DenoisingBSD68 sigma=25
PSNR31.36
70
All-in-one Image RestorationSOTS + Rain100L + BSD68 Combined (test)
PSNR31.51
65
Image DenoisingCBSD68 sigma=25 (test)
PSNR31.36
46
DenoisingBSD68 (sigma=15)
PSNR34.01
45
DenoisingBSD68 sigma=50
PSNR28.1
45
Image DenoisingCBSD68
PSNR34.01
39
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