[1] Sharma V. Enhancement of underwater images[J]. International Journal of Engineering Research and, V9, 27-31(2020).
[2] Raveendran S, Patil M D, Birajdar G K. Underwater image enhancement: a comprehensive review, recent trends, challenges and applications[J]. Artificial Intelligence Review, 54, 5413-5467(2021).
[3] Li X J. Research on underwater image clarity enhancement[D], 6-8(2022).
[4] Wang M J, Li L, Yi F et al. Three-dimensional reconstruction and analysis of target laser point cloud data under simulated real water environment[J]. Chinese Journal of Lasers, 49, 0309001(2022).
[5] Qiu Q M, Zhang Y J, Gao Z Q et al. Underwater image restoration based on quadtree hierarchical search and transmittance optimization[J]. Acta Optica Sinica, 43, 1201002(2023).
[6] Drews P L J, Nascimento E R, Botelho S S C et al. Underwater depth estimation and image restoration based on single images[J]. IEEE Computer Graphics and Applications, 36, 24-35(2016).
[7] He K M, Sun J, Tang X O. Single image haze removal using dark channel prior[C], 1956-1963(2009).
[8] Hou G J, Li J M, Wang G D et al. A novel dark channel prior guided variational framework for underwater image restoration[J]. Journal of Visual Communication and Image Representation, 66, 102732(2020).
[9] Gao G X, Lai H C, Jia Z H et al. Sand-dust image restoration based on reversing the blue channel prior[J]. IEEE Photonics Journal, 12, 3900216(2020).
[10] Zuiderveld K. Contrast limited adaptive histogram equalization[M]. Graphics gems, 474-485(1994).
[11] Li C L, Tang S Q, Kwan H K et al. Color correction based on CFA and enhancement based on retinex with dense pixels for underwater images[J]. IEEE Access, 8, 155732-155741(2020).
[12] Ancuti C, Ancuti C O, Haber T et al. Enhancing underwater images and videos by fusion[C], 81-88(2012).
[13] Marques T P, Branzan Albu A. L2UWE: a framework for the efficient enhancement of low-light underwater images using local contrast and multi-scale fusion[C], 2286-2295(2020).
[14] Ancuti C O, Ancuti C, De Vleeschouwer C et al. Color balance and fusion for underwater image enhancement[J]. IEEE Transactions on Image Processing, 27, 379-393(2018).
[15] Hu Z Y, Chen Q, Zhu D Q. Underwater image enhancement based on color balance and multi-scale fusion[J]. Optics and Precision Engineering, 30, 2133-2146(2022).
[16] Li C Y, Guo J C, Guo C L. Emerging from water: underwater image color correction based on weakly supervised color transfer[J]. IEEE Signal Processing Letters, 25, 323-327(2018).
[17] Li X H, Wang X, Wang C H et al. Underwater mueller matrix image desscattering algorithm based on residual UNet[J]. Acta Optica Sinica, 42, 2410001(2022).
[18] van de Weijer J, Gevers T, Gijsenij A. Edge-based color constancy[J]. IEEE Transactions on Image Processing, 16, 2207-2214(2007).
[19] Miao R L, Zheng X, Jiang W. Color cast correction algorithm of white blood cell image based on Lab space[J]. Electronics World, 153(2017).
[20] Ancuti C O, Ancuti C, De Vleeschouwer C et al. Color channel compensation (3C): a fundamental pre-processing step for image enhancement[J]. IEEE Transactions on Image Processing, 29, 2653-2665(2019).
[22] Li C Y, Guo C L, Ren W Q et al. An underwater image enhancement benchmark dataset and beyond[J]. IEEE Transactions on Image Processing, 29, 4376-4389(2019).
[23] Babakhani P, Parham Z. Automatic gamma correction based on average of brightness[J]. Advances in Computer Science, 4, 156-159(2015).
[24] Polesel A, Ramponi G, Mathews V J. Image enhancement via adaptive unsharp masking[J]. IEEE Transactions on Image Processing, 9, 505-510(2000).
[25] Hao Y L, Hou G J, Tan L et al. Texture enhanced underwater image restoration via Laplacian regularization[J]. Applied Mathematical Modelling, 119, 68-84(2023).
[26] Yang M, Sowmya A. An underwater color image quality evaluation metric[J]. IEEE Transactions on Image Processing, 24, 6062-6071(2015).
[27] Zhou J C, Yang T Y, Zhang W S. Underwater vision enhancement technologies: a comprehensive review, challenges, and recent trends[J]. Applied Intelligence, 53, 3594-3621(2023).