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基于约束低秩逼近视网膜皮层模型的低光照图像增强

Low-Light Image Enhancement Based on Constraint Low-Rank Approximation Retinex Model.

作者信息

Li Xuesong, Shang Jianrun, Song Wenhao, Chen Jinyong, Zhang Guisheng, Pan Jinfeng

机构信息

School of Electrical and Electronic Engineering, Shandong University of Technology, Zibo 255000, China.

出版信息

Sensors (Basel). 2022 Aug 16;22(16):6126. doi: 10.3390/s22166126.

Abstract

Images captured in a low-light environment are strongly influenced by noise and low contrast, which is detrimental to tasks such as image recognition and object detection. Retinex-based approaches have been continuously explored for low-light enhancement. Nevertheless, Retinex decomposition is a highly ill-posed problem. The estimation of the decomposed components should be combined with proper constraints. Meanwhile, the noise mixed in the low-light image causes unpleasant visual effects. To address these problems, we propose a onstraint ow-Rank pproximation etinex model (CLAR). In this model, two exponential relative total variation constraints were imposed to ensure that the illumination is piece-wise smooth and that the reflectance component is piece-wise continuous. In addition, the low-rank prior was introduced to suppress the noise in the reflectance component. With a tailored separated alternating direction method of multipliers (ADMM) algorithm, the illumination and reflectance components were updated accurately. Experimental results on several public datasets verify the effectiveness of the proposed model subjectively and objectively.

摘要

在低光照环境下拍摄的图像会受到噪声和低对比度的强烈影响,这对图像识别和目标检测等任务不利。基于视网膜皮层理论(Retinex)的方法一直在不断探索用于低光照增强。然而,Retinex分解是一个高度不适定问题。分解分量的估计应结合适当的约束条件。同时,低光照图像中混合的噪声会产生令人不悦的视觉效果。为了解决这些问题,我们提出了一种约束低秩近似视网膜皮层理论模型(CLAR)。在该模型中,施加了两个指数相对总变差约束,以确保光照是分段平滑的,并且反射率分量是分段连续的。此外,引入低秩先验来抑制反射率分量中的噪声。通过一种定制的分离交替方向乘子法(ADMM)算法,准确地更新了光照和反射率分量。在几个公共数据集上的实验结果从主观和客观上验证了所提出模型的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe6b/9412568/fd95cc035c56/sensors-22-06126-g001.jpg

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