Acta Photonica Sinica, Volume. 54, Issue 6, 0610002(2025)

Research on Color Gamut Mapping Algorithm in Multi-primary Color Display

Cheng LIN1,2, Jiazhan ZHANG1,2, Yuze XIAO1,2, Sheng XU1,2, Yun YE1,2, Tailiang GUO1,2, and Enguo CHEN1,2、*
Author Affiliations
  • 1College of Physics and Information Engineering,National & Local United Engineering Laboratory of Flat Panel Display Technology,Fuzhou University,Fuzhou 350108,China
  • 2Fujian Science & Technology Innovation Laboratory for Optoelectronic Information of China(Mindu Innovation Laboratory),Fuzhou 350108,China
  • show less
    References(31)

    [1] SAMPELL J B. White light enhanced color field sequential projection[P]. US.

    [2] TANIOKA H. Image processing apparatus which extracts white component data[P]. US.

    [4] WANG Ziming. Research on key technologies of multi-primary color display[D](2019).

    [5] WANG L, TU Y, CHEN L et al. Trade‐off between luminance and color in RGBW displays for mobile‐phone usage[J]. SID Symposium Digest of Technical Papers, 38, 1142-1145(2012).

    [6] SHLAYAN N, VENKAT R, GINOBBI P et al. Energy efficient RGBW pixel configuration for light-emitting displays[J]. Journal of Display Technology, 5, 418-424(2009).

    [7] LAI C C, TSAI C C[M]. A modified stripe-RGBW TFT-LCD with image-processing engine for mobile phone displays, 53, 1628-1633(2007).

    [8] KWON K J, KIM Y H. Scene-adaptive RGB-to-RGBW conversion using retinex theory-based color preservation[J]. Journal of Display Technology, 8, 684-694(2012).

    [9] TERAGAWA M, YOUSHIDA A, YOUSHIYAMA K et al. Review paper: multi‐primary‐color displays: the latest technologies and their benefits[J]. Journal of the Society for Information Display, 20, 1-11(2012).

    [10] CAN C, UNDERWOOD I. Compact and efficient RGB to RGBW data conversion method and its application in OLED microdisplays[J]. Journal of the Society for Information Display, 21, 109-119(2013).

    [11] MILLER M E, MURDOCH M J. RGB‐to‐RGBW conversion with current limiting for OLED displays[J]. Information Display, 17, 195-202(2009).

    [12] CHONG W C, WONG K M, LIU Z J et al. A novel full-color 3LED projection system using R-G-B light emitting diodes on silicon (LEDoS) micro-displays[J]. SID International Symposium: Digest of Technology Papers, 838-841(2013).

    [13] LIN S, TAN G, YU J et al. Multi-primary-color quantum-dot down-converting films for display applications[J]. Optics Express, 27, 28480-28493(2019).

    [14] YAN Y, XIAO Y, CAI J et al. Quantum-dot color wheel for projection displays[J]. Optica, 10, 1559-1566(2023).

    [15] ZHANG W, CHEN Y, CAI J et al. Uniformity improvement of a mini-LED backlight by a quantum-dot color conversion film with nonuniform thickness[J]. Optics Letters, 48, 5643-5646(2023).

    [16] Li G, TSENG M, CHEN Y et al. Color-conversion displays: current status and future outlook[J]. Light: Science & Applications, 13, 301(2024).

    [17] CHEN Xiaogang, ZHAO Mengyun, CAI Junhu et al. Color conversion characteristics of micro-LED based on quantum dot@ordered mesoporous composite materials[J]. Chinese Journal of Luminescence, 45, 59-68(2024).

    [18] YIN Maojun. Research on white organic light-emitting devices with quantum dot down-conversion films[D](2019).

    [19] ZHAO Di. Research on Fabrication and properties of white-light inorganic electroluminescent devices by optical conversion[D](2020).

    [20] ZHU Liquan. Research on color gamut characteristics of multi-primary laser display system[D](2023).

    [21] DENG Linxiao, YANG Yuhua, YAO Binghui et al. Distribution characteristics of color speckle in multi-primary laser display system[J]. Laser Technology, 47, 736-741(2023).

    [22] YAO Binghui, DENG Linxiao, XU Lixin et al. Calculation and discussion of the primary luminances in multi-primary display system[J]. Laser Technology, 48, 20-26(2024).

    [23] LI Yasheng, LIAO Ningfang, LI Yumei. Production of driven images for wide-color-gamut multi-primary display Systems[J]. Acta Optica Sinica, 43, 273-280(2023).

    [24] TANG N, WANG J, ZHANG H Q M. Accurate luminance and chromaticity controls of digital colors using CIE-based RGBW algorithms[J]. Journal of the Optical Society of America, 40, A178-A182(2023).

    [25] HUNG K Y, YANG T C, PEI C C et al. A dual-gap RGBW transflective TFT-LCD with adjustable color gamut[J]. Journal of the Society for Information Display, 15, 187-191(2007).

    [26] CANDICE H, CREDELLE T L, HIGGINS M F. Adding a white subpixel[J]. Information Display, 21, 26-31(2005).

    [27] YAN Limin, WANG Zimin. Improvement of RGBW sub-pixel arrangement and color gamut mapping optimization algorithm[J]. Laser & Optoelectronics Progress, 55, 151-157(2018).

    [28] LEE C, MONGA V. Power-constrained RGB-to-RGBW conversion for emissive displays[J]. IEEE International Conference on Acoustics, 1205-1209(2014).

    [29] HIRANO S. Liquid crystal display apparatus[P]. european.

    [30] PAN Dingping, WU Xuezhong. Strategy of display mapping algorithm[J]. Chinese Journal of Liquid Crystals and Displays, 34, 194-199(2019).

    [31] PAN Dingping, JIN Weiqi, QIU Su. RGBW signal mapping algorithm assessment based on colorimetry[J]. Spectroscopy and Spectral Analysis, 36, 3119-3126(2016).

    [32] KWAK Y, PARK J, PARK D S et al. Generating vivid colors on red-green-blue-white electronic-paper display[J]. Applied Optics, 47, 491-500(2008).

    Tools

    Get Citation

    Copy Citation Text

    Cheng LIN, Jiazhan ZHANG, Yuze XIAO, Sheng XU, Yun YE, Tailiang GUO, Enguo CHEN. Research on Color Gamut Mapping Algorithm in Multi-primary Color Display[J]. Acta Photonica Sinica, 2025, 54(6): 0610002

    Download Citation

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

    Category:

    Received: Dec. 16, 2024

    Accepted: Feb. 6, 2025

    Published Online: Jul. 14, 2025

    The Author Email: Enguo CHEN (ceg@fzu.edu.cn)

    DOI:10.3788/gzxb20255406.0610002

    Topics