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Dual Illumination Estimation for Robust Exposure Correction

About

Exposure correction is one of the fundamental tasks in image processing and computational photography. While various methods have been proposed, they either fail to produce visually pleasing results, or only work well for limited types of image (e.g., underexposed images). In this paper, we present a novel automatic exposure correction method, which is able to robustly produce high-quality results for images of various exposure conditions (e.g., underexposed, overexposed, and partially under- and over-exposed). At the core of our approach is the proposed dual illumination estimation, where we separately cast the under- and over-exposure correction as trivial illumination estimation of the input image and the inverted input image. By performing dual illumination estimation, we obtain two intermediate exposure correction results for the input image, with one fixes the underexposed regions and the other one restores the overexposed regions. A multi-exposure image fusion technique is then employed to adaptively blend the visually best exposed parts in the two intermediate exposure correction images and the input image into a globally well-exposed image. Experiments on a number of challenging images demonstrate the effectiveness of the proposed approach and its superiority over the state-of-the-art methods and popular automatic exposure correction tools.

Qing Zhang, Yongwei Nie, Wei-Shi Zheng• 2019

Related benchmarks

TaskDatasetResultRank
Semantic segmentationEndoVis 17
Dice39.7
18
Semantic segmentationReal-world
Dice0.5462
14
Low-light Image EnhancementEndoVis 17
FPS1.31
14
Low-light Image EnhancementEndoVis18
PSNR11.52
14
Low-light Image EnhancementKvasir-Capsule (external val)
LPIPS0.3305
12
Red Lesion SegmentationRLE (test)
mIoU61.89
12
Low-light Image EnhancementRLE (test)
PSNR14.64
12
Low-light Image EnhancementKvasir-Capsule (test)
PSNR11.61
12
Image Quality AssessmentData1
NIQMC5.27
9
Image EnhancementData1
NIQE3.41
9
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