The Retinex enhancement algorithm for low‐light intensity image based on improved illumination map

Author:

Weng Ruidi1,Zhang Ya1,Wu Hanyang1ORCID,Wang Weiyong2,Wang Dongyun1

Affiliation:

1. Zhejiang Provincial Key Laboratory of Urban Rail Transit Intelligent Operation and Maintenance Technology and Equipment Zhejiang Normal University Zhejiang China

2. Zhejiang Jinfei Machinery Co. Ltd Zhejiang China

Abstract

AbstractTaken in low‐light intensity conditions, image with low brightness affects processing precision. In this article, the Gamma Function based on the brightness average and weighted fusion method according to gray entropy is proposed, which is combined with the improved Retinex algorithm. First, the maximum values of R, G, and B channels in original image are extracted to generate the primary illumination map. Second, the illumination map is optimized and adjusted via the Gamma correction function based on the average brightness value. Finally, the illumination map and detail layer are fused by a weighted fusion algorithm of gray entropy to obtain the reflection map. Reflection maps are used as enhancement. The algorithm proposed in this article can improve the brightness and maintain light distribution in the original image with higher precision and less color distortion.

Funder

Key Research and Development Program of Zhejiang Province

Publisher

Institution of Engineering and Technology (IET)

Reference24 articles.

1. Adaptive image enhancement method for correcting low-illumination images

2. Fast underwater image enhancement for improved visual perception;Jahidul I.M.;IEEE Rob. Autom. Lett.,2020

3. Structure and illumination constrained GAN for medical image enhancement;Yuhui M.;IEEE Trans. Med. Imaging,2021

4. Shengwen F. Zhanjun J.:research on image‐based detection and recognition technologies for cracks on rail surface. In:2019 International Conference on Robots & Intelligent System (ICRIS) pp.98–101.IEEE Piscataway(2019)

5. Salp Swarm algorithm‐based optimally weighted histogram framework for image enhancement;Kumar B.A.;IEEE Trans. Instrum. Meas.,2020

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