Infrared and Laser Engineering, Volume. 54, Issue 6, 20240600(2025)
Imagedefogging algorithm based on transmittance multiple guidance and sharpening compensation
[2] [2] CHEN W T, CHEN I H, YEH C Y, et al. Sjdlvehicle: Semisupervised joint defogging learning f foggy vehicle reidentification[C]AAAI, 2022: 347355.
[3] [3] SAKARIDIS C, DAI D, HECKER S, et al. Model adaptation with synthetic real data f semantic dense foggy scene understing[C]ECCV,2018: 687704.
[6] [6] RIVERAAGUILAR B A, CUEVAS E, PÉREZ M, et al. A new histogram equalization technique f contrast enhancement of grayscale images using the differential evolution algithm[J]. Neural Computing Applications, 2024, 36(20): 1202912045.
[7] [7] FAN T, LI C, MA X, et al. An improved single image defogging method based on Retinex[C]2017 2nd International Conference on Image, Vision Computing (ICIVC), IEEE, 2017: 410413.
[8] HE K, SUN J, TANG X. Single image haze removal using dark channel prior[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 33, 2341-2353(2010).
[9] [9] DONG H, PAN J, XIANG L, et al. Multiscale boosted dehazing wk with dense feature fusion[C]CVPR, 2020: 21572167.
[10] [10] GUO C L, YAN Q, ANWAR S, et al. Image dehazing transfmer with transmissionaware 3D position embedding[C]CVPR,2022: 58125820.
[11] [11] HE K, FAN H, WU Y, et al. Momentum contrast f unsupervised visual representation learning[C]CVPR,2020: 97299738.
[12] [12] DONG J, PAN J. Physicsbased feature dehazing wks[C]ECCV,2020: 188204.
[13] [13] LIU X, MA Y, SHI Z, et al. Griddehaze: Attentionbased multiscale wk f image dehazing[C]ICCV, 2019: 73147323.
[14] [14] LIU W, ZHANG J. Research on image defogging algithm combining homomphic filtering retinex[C]2024 4th International Symposium on Computer Technology Infmation Science (ISCTIS), IEEE, 2024: 596599.
[16] [16] WANG Y, YUE F, DUAN J, et al. Adaptive imagedefogging algithm based on brightfield region detection[C]Photonics. MDPI, 2024, 11(8): 718.
[17] TIAN H, YU X Y. Research on image defogging algorithm based on dark channel prior and particle swarm optimization[J]. Journal of Beijing University of Posts and Telecommunications, 47, 118(2024).
[18] GUAN J, MA M, HUO Y. Underwater polarimetric dark channel prior descattering[J]. Optics & Laser Technology, 175, 110864(2024).
[20] [20] CHEN Z, WANG Y, YANG Y, et al. PSD: Principled synthetictoreal dehazing guided by physical pris[C]CVPR, 2021: 71807189.
[21] [21] ZHANG L, WANG S, WANG X. Single image dehazing based on bright channel pri model saliency analysis strategy[J]. IET Image Processing, 2021, 15(5): 10231031.
[22] [22] GUO CHUNLE, YAN QIXIN, SAEED ANWAR, et al. Image dehazing transfmer with transmissionaware 3D position embedding[C]CVPR, 2022: 5802–5810.
[23] [23] ZHENG Y, ZHAN J, HE S, et al. Curricular contrastive regularization f physicsaware single image dehazing[C]CVPR, 2023: 57855794.
[24] [24] WU R Q, DUAN Z P, GUO C L, et al. Ridcp: Revitalizing real image dehazing via highquality codebook pris[C]CVPR, 2023: 2228222291.
[25] [25] ZHANG Y, ZHOU S, LI H. Depth Infmation Assisted Collabative Mutual Promotion wk f Single Image Dehazing[C]CVPR, 2024: 28462855.
[27] BENZENATI T, KESSENTINI Y, KALLEL A et al. Generalized Laplacian pyramid pan-sharpening gain injection prediction based on CNN[J]. IEEE Geoscience and Remote Sensing Letters, 17, 651-655(2019).
[29] ZHANG Yan, CHEN Yong, ZHOU Dingfu, . et al. Influence of sharpen function on the object image of synthetic aperture ladar[J]. Infrared and Laser Engineering, 44, 2588-2592(2015).
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Dongyang SHI, Sheng HUANG, Liu YANG, Liujiang GUO. Imagedefogging algorithm based on transmittance multiple guidance and sharpening compensation[J]. Infrared and Laser Engineering, 2025, 54(6): 20240600
Category: Optical imaging, display and information processing
Received: Dec. 23, 2024
Accepted: --
Published Online: Jul. 1, 2025
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