Infrared Technology, Volume. 47, Issue 3, 316(2025)

No-reference Quality Evaluation Algorithm for Color Gamut Mapped Images Based on Double-Order Color Information

Qiuhong HE1, Wei YU1、*, Zhilin GUO1, Lianhai YUAN1, and Yuying LIU2
Author Affiliations
  • 1Dept. of Electronic Information & Computer Engineering, the Engineering & Technical College of Chengdu University of Technology, Leshan 614000, China
  • 2School of Information and Control Engineering, China University of Mining and Technology, Xuzhou 221116, China
  • show less
    References(21)

    [1] [1] LI H L, ZHAO H X, LIU M N, et al. Research on spatial gamut mapping from source device to destination device[C]//2023 IEEE 18th Conference on Industrial Electronics and Applications. 2023: 1909-1914.

    [2] [2] Zamir S W, Vazquez Corral J, Bertalmio M. Vision models for wide color gamut imaging in cinema[J]. IEEE Transactions on Pattern Analysis and Machine Intelligence, 2021, 43(5): 1777-1790.

    [3] [3] Takeuchi M, Sakamoto Y, Yokoyama R. Gamut-extension methods considering color information restoration[J]. IEEE Access, 2019, 7: 80146-80158.

    [4] [4] Prashanth N, Dattathreya, Manjunath P, et al. High Dynamic Range (HDR) Imaging using Color Gamut Mapping[C]//2018 4th International Conference on Applied and Theoretical Computing and Communication Technology (iCATccT), 2018: 2104-2112.

    [5] [5] KIM J O, LEE K, KIM J, et al. Ambient light robust color gamut mapping for optical see-through displays[J]. Optics Express, 2020, 28(10): 15392-15405.

    [6] [6] ZHOU W, WANG Z. Blind omnidirectional image quality assessment: integrating local statistics and global semantics[C]//2023 IEEE International Conference on Image Processing, 2023: 1405-1409.

    [8] [8] CAI H, LI L D, YI Z L, et al. Towards a blind image quality evaluator using multi-scale second-order statistics[J]. Signal Processing: Image Communication, 2019, 71: 88-99.

    [11] [11] Mittal A, Moorthy A K, Bovik A C. No-reference image quality assessment in the spatial domain[J]. IEEE Transactions Image Processing, 2012, 21(12): 4695-4708.

    [12] [12] ZHANG Y, Chandler D M. No-reference image quality assessment based on log-derivative statistics of natural scenes[J]. Journal of Electronic Imaging, 2013, 22(4): 043025.

    [13] [13] WANG Z, BOVIK A C, SHEIKH H R, et al. Image quality assessment: From error visibility to structural similarity[J]. IEEE Transactions on Image Processing, 2004, 13(4): 600-612.

    [15] [15] CAI H, LI L D, YI Z L, et al. Blind quality assessment of gamut-mapped images via local and global statistical analysis[J]. Journal of Visual Communication & Image Representation, 2019, 61(5): 250-259.

    [18] [18] LEE D, Plataniotis K N. Toward a no-reference image quality assessment using statistics of perceptual color descriptors[J]. IEEE Transactions on Image Processing, 2016, 25(8): 3875-3889.

    [19] [19] TAN M T, Ryu S. Particle number fluctuations, Rnyi entropy, and symmetry-resolved entanglement entropy in a two-dimensional Fermi gas from multidimensional bosonization[J]. Physical Review B, 2020, 101(23): 2469-2450.

    [20] [20] Estanon C R, Aquino N, Puertas-Centeno D, et al. Two-dimensional confined hydrogen: An entropy and complexity approach[J]. International Journal of Quantum Chemistry, 2020, 120(11): 1596-1605.

    [21] [21] ZHOU Y, LI L D, WU J J, et al. Blind quality index for multiply distorted images using biorder structure degradation and nonlocal statistics[J]. IEEE Transactions on Multimedia, 2018, 20(11): 3019-3032.

    [24] [24] FANG Y M, MA K D, WANG Z, et al. No-reference quality assessment of contrast-distorted images based on natural scene statistics[J]. IEEE Signal Processing Letters, 2015, 22(7): 838-842.

    [25] [25] ZHOU Y, LI L D, ZHU H C, et al, No-reference quality assessment for contrast-distorted images based on multifaceted statistical representation of structure[J]. Journal of Visual Communication and image Representation, 2019, 60: 158-169.

    [26] [26] WANG W, LIANG R, QI Y, et al, Prediction model of spontaneous combustion risk of extraction borehole based on PSO-BPNN and its application[J]. Scientific Reports, 2024, 14(1): 577-581.

    [27] [27] Baranczuk Z, Zolliker P, Image-Individualized Gamut Mapping Algorithms[J]. Journal of Imaging Science & Technology, 2010, 54(3): 0302011-0302017.

    [29] [29] GU K, ZHAI G T, YANG X K, et al. Using free energy principle for blind image quality assessment[J]. IEEE Transaction on Multimedia, 2015, 11(1): 50-63.

    [30] [30] FANG Y M, YAN J B, DU R G et al. Blind quality assessment for tone-mapped images by analysis of gradient and chromatic statistics[J]. IEEE Transactions on Multimedia, 2021, 23: 955-966.

    Tools

    Get Citation

    Copy Citation Text

    HE Qiuhong, YU Wei, GUO Zhilin, YUAN Lianhai, LIU Yuying. No-reference Quality Evaluation Algorithm for Color Gamut Mapped Images Based on Double-Order Color Information[J]. Infrared Technology, 2025, 47(3): 316

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category:

    Received: Jan. 20, 2024

    Accepted: Apr. 18, 2025

    Published Online: Apr. 18, 2025

    The Author Email: YU Wei (yuweits@sicnu.edu.cn)

    DOI:

    Topics