Laser & Optoelectronics Progress, Volume. 61, Issue 4, 0437009(2024)
Tone Mapping Algorithm for High Dynamic Range Images Based on Improved Laplacian Pyramid
[1] Tang L, Lu R S, Shi Y Q et al. High dynamic range imaging method based on YCbCr color space fusion[J]. Laser & Optoelectronics Progress, 59, 1415029(2022).
[2] Zhao P, Yu X, Yang Y T. High dynamic range laser display based on light steering[J]. Laser & Optoelectronics Progress, 59, 0512002(2022).
[3] Lee D H, Fan M, Kim S W et al. High dynamic range image tone mapping based on asymmetric model of retinal adaptation[J]. Signal Processing: Image Communication, 68, 120-128(2018).
[4] Khan I R, Rahardja S, Khan M M et al. A tone-mapping technique based on histogram using a sensitivity model of the human visual system[J]. IEEE Transactions on Industrial Electronics, 65, 3469-3479(2018).
[5] Reinhard E, Stark M, Shirley P et al. Photographic tone reproduction for digital images[C], 267-276(2002).
[7] Cao X, Lai K, Yanushkevich S N et al. Adversarial and adaptive tone mapping operator for high dynamic range images[C], 1814-1821(2021).
[8] Liang Z T, Xu J, Zhang D et al. A hybrid l1-l0 layer decomposition model for tone mapping[C], 4758-4766(2018).
[9] Jin C, Deng L J, Huang T Z et al. Laplacian pyramid networks: a new approach for multispectral pansharpening[J]. Information Fusion, 78, 158-170(2022).
[10] Di Gregorio F, Trajkovic J, Roperti C et al. Tuning alpha rhythms to shape conscious visual perception[J]. Current Biology, 32, 988-998.e6(2022).
[11] Wang Y, Karimi H A. Perceptual loss function for generating high-resolution climate data[J]. Applied Computing and Intelligence, 2, 152-172(2022).
[12] Zhang Z M, Han C, He S F et al. Deep binocular tone mapping[J]. The Visual Computer, 35, 997-1011(2019).
[13] Marnerides D, Bashford-Rogers T, Hatchett J et al. ExpandNet: a deep convolutional neural network for high dynamic range expansion from low dynamic range content[J]. Computer Graphics Forum, 37, 37-49(2018).
[14] Ioannou Y, Robertson D, Cipolla R et al. Deep roots: improving CNN efficiency with hierarchical filter groups[C], 5977-5986(2017).
[15] Wang Q L, Wu B G, Zhu P F et al. ECA-net: efficient channel attention for deep convolutional neural networks[C], 11531-11539(2020).
[16] Hu L T, Chen H J, Allebach J P. Joint multi-scale tone mapping and denoising for HDR image enhancement[C], 729-738(2022).
[18] Durand F, Dorsey J. Fast bilateral filtering for the display of high-dynamic-range images[J]. ACM Transactions on Graphics, 21, 257-266(2002).
[19] Yang Z Y, Dai Q H, Zhang J S. Visual perception driven collage synthesis[J]. Computational Visual Media, 8, 79-91(2022).
[20] Chen B, Zhu L, Kong C et al. No-reference image quality assessment by hallucinating pristine features[J]. IEEE Transactions on Image Processing, 6139-6151(2022).
[21] Lü M N, Gan H, Liu X et al. Selection of optimal focusing evaluation function based on sparse microscopic images[J]. Journal of Physics: Conference Series, 33, 6139-6151(2022).
[22] Yeganeh H, Wang Z. Objective quality assessment of tone-mapped images[J]. IEEE Transactions on Image Processing, 22, 657-667(2013).
[23] Mittal A, Moorthy A K, Bovik A C. No-reference image quality assessment in the spatial domain[J]. IEEE Transactions on Image Processing, 21, 4695-4708(2012).
[24] Mittal A, Soundararajan R, Bovik A C. Making a “completely blind” image quality analyzer[J]. IEEE Signal Processing Letters, 20, 209-212(2013).
[25] Fattal R, Lischinski D, Werman M. Gradient domain high dynamic range compression[C], 249-256(2002).
[26] Ziaei Nafchi H, Shahkolaei A, Farrahi Moghaddam R et al. FSITM: a feature similarity index for tone-mapped images[J]. IEEE Signal Processing Letters, 22, 1026-1029(2015).
[27] Mantiuk R, Kim K J, Rempel A G et al. HDR-VDP-2: a calibrated visual metric for visibility and quality predictions in all luminance conditions[J]. ACM Transactions on Graphics, 30, 1-14(2011).
Get Citation
Copy Citation Text
Bowen Zhang, Zhenping Xia, Yueyuan Zhang, Cheng Cheng, Yujie Liu. Tone Mapping Algorithm for High Dynamic Range Images Based on Improved Laplacian Pyramid[J]. Laser & Optoelectronics Progress, 2024, 61(4): 0437009
Category: Digital Image Processing
Received: Feb. 6, 2023
Accepted: Mar. 10, 2023
Published Online: Feb. 26, 2024
The Author Email: Zhenping Xia (xzp@usts.edu.cn)
CSTR:32186.14.LOP230581