• Electronics Optics & Control
  • Vol. 31, Issue 1, 63 (2024)
HUANG Fuzhen, ZHOU Yi, and WANG Kui
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1671-637x.2024.01.010 Cite this Article
    HUANG Fuzhen, ZHOU Yi, WANG Kui. An Image Enhancement Algorithm Based on Nonconvex Constraint and Noise Suppression[J]. Electronics Optics & Control, 2024, 31(1): 63 Copy Citation Text show less
    References

    [1] LIU Y F,GUO J M,YU J.Contrast enhancement using stratified parametric-oriented histogram equalization[J].IEEE Transactions on Circuits and Systems for Video Technology, 2017,27(6):1171-1181.

    [2] YANG W H,WANG W J,HUANG H F,et al.Sparse gradient regularized deep Retinex network for robust low-light image enhancement[J].IEEE Transactions on Image Processing,2021,30:2072-2086.

    [3] JIANG Y F,GONG X Y,LIU D,et al.EnlightenGAN:deep light enhancement without paired supervision[J].IEEE Transactions on Image Processing,2021,30:2340-2349.

    [4] JOBSON D J,RAHMAN Z,WOODELL G A.Properties and performance of a center/surround Retinex [J].IEEE Transactions on Image Processing,1997,6(3):451-462.

    [5] JOBSON D J,RAHMAN Z,WOODELL G A.A multiscale Retinex for bridging the gap between color images and the human observation of scenes [J].IEEE Transactions on Image Processing,1997,6(7):965-976.

    [6] JIANG B,WOODELL G A,JOBSON D J.Novel multiscale Retinex with color restoration on graphics processing unit [J].Journal of Real-Time Image Processing,2015,10(2):239-253.

    [7] TOMASI C,MANDUCHI R.Bilateral filtering for gray and color images[C]//The sixth International Conference on Computer Vision (IEEE Cat.No.98CH36271).Bombay:IEEE,1998:839-846.

    [8] ZHANG Y P,HUANG W G,BI W,et al.Colorful image enhancement algorithm based on guided filter and Retinex[C]//IEEE International Conference on Signal and Image Processing (ICSIP).Beijing:IEEE,2016:33-36.

    [9] FARBMAN Z,FATTAL R,LISCHINSKI D,et al.Edge preserving decompositions for multiscale tone and detail manipulation [J].ACM Transactions on Graphics,2008,27(3):1-10.

    [10] GUO X J,LI Y,LING H B.LIME:low-light image enhancement via illumination map estimation [J].IEEE Transactions on Image Processing,2017,26(2):982-993.

    [11] LI M D,LIU J Y,YANG W H,et al.Structure-revealing low-light image enhancement via robust Retinex model[J].IEEE Transactions on Image Processing,2018,27(6):2828-2841.

    [15] REN X T,YANG W H,CHENG W H,et al.LR3M:robust low-light enhancement via low-rank regularized Retinex model[J].IEEE Transactions on Image Processing, 2020,29:5862-5876.

    [16] XU L,LU C W,XU Y,et al.Image smoothing via L0 gradient minimization [J].ACM Transactions on Graphics, 2011,30(6):174-185.

    [17] GUO X J,LI Y,LING H B.LIME:low-light image enhancement via iiiumination map estimation[J].IEEE Transactions on Image Processing,2017,26(2):982-993.

    [18] WEI C,WANG W J,YANG W H,et al.Deep Retinex decomposition for low-light enhancement[C]//Proceedings of the British Machine Vision Conference.Durham:BMYA Press,2018:155.

    [19] ZHANG Y H,GUO X J,MA J Y,et al.Beyond brightening low-light images[J].International Journal of Computer Vision,2021,129(4):1013-1037.

    [26] BISWAS K,KUMAR S,BANERJEE S,et al.SAU:smooth activation function using convolution with approximate identities[C]//European Conference on Computer Vision(ECCV).Cham:Springer,2022:313-329.