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Existing tone mapping methods operate on downsampled inputs and rely on handcrafted pyramids to recover high-frequency details.
The laplacian pyramid as a compact image code
P. Burt and E. Adelson · 1983
Earlier work this paper cites.
A spatial extension of cielab for digital color image reproduction
Xuemei Zhang, Brian A Wandell, et al · 1996
Earlier work this paper cites.
Object recognition from local scale-invariant features
David G Lowe · 1999
Earlier work this paper cites.
Adobe Photoshop 6.0
Adobe Systems · 2000
Earlier work this paper cites.
Perceptual effects in real-time tone mapping
Grzegorz Krawczyk, Karol Myszkowski, and Hans-Peter Seidel · 2005
Earlier work this paper cites.
High dynamic range image tone mapping based on local histogram equalization
A. Boschetti, N. Adami, R. Leonardi, and M. Okuda · 2010
Earlier work this paper cites.
Local laplacian filters
Sylvain Paris, Samuel W. Hasinoff, and Jan Kautz · 2011
Earlier work this paper cites.
An improved difference of gaussian filter in face recognition
Shoujia Wang, Wenhui Li, Ying Wang, Yuanyuan Jiang, Shan Jiang, and Ruilin Zhao · 2012
Earlier work this paper cites.
Objective quality assessment of tone-mapped images
Hojatollah Yeganeh and Zhou Wang · 2013
Earlier work this paper cites.
Photomatix [r] pro 5 hdrsoft [r]
Brad Ashbrook · 2014
Earlier work this paper cites.
Improved laplacian model for tone mapping of hdr image
Yun Liang and Junbin Mo · 2014
Earlier work this paper cites.
Real-time noise-aware tone mapping
Gabriel Eilertsen, Rafał K Mantiuk, and Jonas Unger · 2015
Earlier work this paper cites.
Burst photography for high dynamic range and low-light imaging on mobile cameras
Samuel W. Hasinoff, Dillon Sharlet, Ryan Geiss, Andrew Adams, Jonathan T. Barron, Florian Kainz, Jiawen Chen, and Marc Levoy · 2016
Earlier work this paper cites.
A comparative review of tone-mapping algorithms for high dynamic range video
Gabriel Eilertsen, Rafal Konrad Mantiuk, and Jonas Unger · 2017
Earlier work this paper cites.
Deep bilateral learning for real-time image enhancement
Michaël Gharbi, Jiawen Chen, Jonathan T. Barron, Samuel W. Hasinoff, and Frédo Durand · 2017
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Deep feature consistent deep image transformations: Downscaling, decolorization and hdr tone mapping
Xianxu Hou, Jiang Duan, and Guoping Qiu · 2017
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A hybrid l1-l0 layer decomposition model for tone mapping
Zhetong Liang, Jun Xu, David Zhang, Zisheng Cao, and Lei Zhang · 2018
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Multilayer perceptron (mlp)
Hind Taud and Jean-Franccois Mas · 2018
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The unreasonable effectiveness of deep features as a perceptual metric
Richard Zhang, Phillip Isola, Alexei A Efros, Eli Shechtman, and Oliver Wang · 2018
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Underexposed photo enhancement using deep illumination estimation
Tmo-net: A parameter-free tone mapping operator using generative adversarial network, and performance benchmarking on large scale hdr dataset
Karen Panetta, Landry Kezebou, Victor Oludare, Sos Agaian, and Zehua Xia · 2021
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Explorable tone mapping operators
Chien-Chuan Su, Ren Wang, Hung-Jin Lin, Yu-Lun Liu, Chia-Ping Chen, Yu-Lin Chang, and Soo-Chang Pei · 2021
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Gaussian fourier pyramid for local laplacian filter
Yuto Sumiya, Tomoki Otsuka, Yoshihiro Maeda, and Norishige Fukushima · 2021
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Real-time image enhancer via learnable spatial-aware 3d lookup tables
Tao Wang, Yong Li, Jingyang Peng, Yipeng Ma, Xian Wang, Fenglong Song, and Youliang Yan · 2021
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Early convolutions help transformers see better
Tete Xiao, Mannat Singh, Eric Mintun, Trevor Darrell, Piotr Dollár, and Ross Girshick · 2021
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Ruixing Wang, Qing Zhang, Chi-Wing Fu, Xiaoyong Shen, Wei-Shi Zheng, and Jiaya Jia · 2019
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Deep tone mapping network in hsv color space
Ning Zhang, Chao Wang, Yang Zhao, and Ronggang Wang · 2019
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Adversarial and adaptive tone mapping operator for high dynamic range images
X. Cao, K. Lai, S.N. Yanushkevich, and M. R. Smith · 2020
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Conditional sequential modulation for efficient global image retouching
Jingwen He, Yihao Liu, Yu Qiao, and Chao Dong · 2020
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Global and local enhancement networks for paired and unpaired image enhancement
Han-Ul Kim, Young Jun Koh, and Chang-Su Kim · 2020
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Deeplpf: Deep local parametric filters for image enhancement
Sean Moran, Pierre Marza, Steven McDonagh, Sarah Parisot, and Gregory Slabaugh · 2020
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Deep tone mapping operator for high dynamic range images
Aakanksha Rana, Praveer Singh, Giuseppe Valenzise, Frederic Dufaux, Nikos Komodakis, and Aljosa Smolic · 2020
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Litao Hu, Huaijin Chen, and Jan P. Allebach · 2022
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Clut-net: Learning adaptively compressed representations of 3dluts for lightweight image enhancement
Fengyi Zhang, Hui Zeng, Tianjun Zhang, and Lin Zhang · 2022
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Unsupervised hdr image and video tone mapping via contrastive learning
Cong Cao, Huanjing Yue, Xin Liu, and Jingyu Yang · 2023
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The hdr photographic survey
Mark D. Fairchild · 2023
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Real-time exposure correction via collaborative transformations and adaptive sampling
Ziwen Li, Feng Zhang, Meng Cao, Jinpu Zhang, Yuanjie Shao, Yuehuan Wang, and Nong Sang · 2024
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A low-latency noise-aware tone mapping operator for hardware implementation with a locally weighted guided filter
Qianwang Liang, Tianyu Yan, Nan Wang, Zhiying Zhu, and Jiongyao Ye · 2024
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Taming lookup tables for efficient image retouching
Sidi Yang, Binxiao Huang, Mingdeng Cao, Yatai Ji, Hanzhong Guo, Ngai Wong, and Yujiu Yang · 2024
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Lookup table meets local laplacian filter: pyramid reconstruction network for tone mapping
Feng Zhang, Ming Tian, Zhiqiang Li, Bin Xu, Qingbo Lu, Changxin Gao, and Nong Sang · 2024
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