Spectral gamut mapping using LabPQR

被引:14
|
作者
Tsutsumi, Shohei [1 ]
Rosen, Mitchell R. [2 ]
Berns, Roy S. [2 ]
机构
[1] Imaging Technol Dev Ctr, Canon Inc, Tokyo 1468501, Japan
[2] Rochester Inst Technol, Chester F Carlson Ctr Imaging Sci, Munsell Color Sci Lab, Rochester, NY 14623 USA
关键词
D O I
10.2352/J.ImagingSci.Technol.(2007)51:6(473)
中图分类号
TB8 [摄影技术];
学科分类号
0804 ;
摘要
Spectral color management requires inversion of printer spectral characterizations and necessarily involves the concept of spectral gamut mapping. A printer was spectrally characterized and the spectra were transformed to an interim connection space (ICS), a spectral description space with low dimensionality useful for building lookup tables (LUTs) of feasible sizes. LabPQR is the ICS used. It has separate dimensions describing colorimetry (CIELAB) and a spectrum's metameric black difference from a standard metamer (PQR). The relationship between digital value and LabPQR was inverted using a single stage objective function combining colorimetric and spectral criteria. The objective function's colorimetric criterion minimized CIEDE2000 under chosen conditions and its spectral criterion minimized Euclidian distance in PQR coordinates. A weight series was performed to find the optimal trade-off between colorimetric and spectral error. A 1:50 weighting ratio, CIEDE2000 to PQR difference, was deemed best. For the GretagMacbeth ColorChecker, the proposed single stage objective function showed equivalent levels of the performance to a full 31-dimensional unmodified spectra approach, resulting in an average RMS error of 4.18% and an average CIEDE2000 of 0.03. The single stage objective function for spectral gamut mapping using LabPQR proved to be promising for spectral reproduction. (c) 2007 Society for Imaging Science and Technology.
引用
收藏
页码:473 / 485
页数:13
相关论文
共 50 条
  • [1] Comparing LabPQR and the Spectral Gamut Mapping Framework
    Derhak, Maxim W.
    Berns, Roy S.
    COLOR SCIENCE AND ENGINEERING SYSTEMS, TECHNOLOGIES, AND APPLICATIONS: EIGHTEENTH COLOR AND IMAGING CONFERENCE, 2010, : 206 - 212
  • [2] Spectral gamut mapping and gamut concavity
    Bastani, Behnam
    Funt, Brian
    FIFTEENTH COLOR IMAGING CONFERENCE: COLOR SCIENCE AND ENGINEERING SYSTEMS, TECHNOLOGIES, AND APPLICATIONS, FINAL PROGRAM AND PROCEEDINGS, 2007, : 218 - +
  • [3] Spectral gamuts and spectral gamut mapping
    Rosen, Mitchell R.
    Derhak, Maxim W.
    SPECTRAL IMAGING: EIGHTH INTERNATIONAL SYMPOSIUM ON MULTISPECTRAL COLOR SCIENCE, 2006, 6062
  • [4] Spectral colorimetry using LabPQR: An interim connection space
    Derhak, Maxim W.
    Rosen, Mitchell R.
    JOURNAL OF IMAGING SCIENCE AND TECHNOLOGY, 2006, 50 (01) : 53 - 63
  • [5] Spectral colorimetry using LabPQR - An interim connection space
    Derhak, M
    Rosen, M
    12TH COLOR IMAGING CONFERENCE: COLOR SCIENCE AND ENGINEERING SYSTEMS, TECHNOLOGIES, APPLICATIONS, 2004, : 246 - 250
  • [6] Spatio-Spectral Gamut Mapping and Separation
    Samadzadegan, Sepideh
    Urban, Philipp
    JOURNAL OF IMAGING SCIENCE AND TECHNOLOGY, 2015, 59 (04)
  • [7] Gamut mapping using an analytical color gamut representation
    Herzog, PG
    Muller, M
    COLOR IMAGING: DEVICE-INDEPENDENT COLOR, COLOR HARD COPY, AND GRAPHIC ARTS II, 1997, 3018 : 117 - 128
  • [8] Paramer Mismatch-Based Spectral Gamut Mapping
    Urban, Philipp
    Berns, Roy S.
    IEEE TRANSACTIONS ON IMAGE PROCESSING, 2011, 20 (06) : 1599 - 1610
  • [9] Charamer mismatch-based spectral gamut mapping
    Wu, Guangyuan
    LASER PHYSICS LETTERS, 2019, 16 (09)
  • [10] Spectral gamut mapping and ink separation with fluorescing substrates
    Coppel, Ludovic Gustafsson
    2015 COLOUR AND VISUAL COMPUTING SYMPOSIUM (CVCS), 2015,