Отрывок: The primaries of the display pixels are thus represent the transition matrix B from individual pixel (hardware) space to standard XYZ coordinates. The output of the algorithm is a set of HW compensa- tion matrices C of size 3 × 3, or, depending on the type of calibration, a set of 3D compensation vectors C. The algorithm is based on the minimization of the fol- lowing functional: , , , ( ) ( ( ( , ))...
Название : Two calibration models for compensation of the individual elements properties of self-emitting displays
Авторы/Редакторы : Basova, O.A.
Gladilin, S.A.
Grigoryev, A.S.
Nikolaev, D.P.
Ключевые слова : displays
dead pixel compensation
non-uniformity compensation
display calibration
image enhancement
spatial filtering
spatial resolution
human visual system model
S-CIELAB
Дата публикации : Апр-2022
Издательство : Самарский национальный исследовательский университет
Библиографическое описание : Basova OA, Gladilin SA, Grigoryev AS, Nikolaev DP. Two calibration models for compensation of the individual elements properties of self-emitting displays. Computer Optics 2022; 46(2): 335-344. DOI: 10.18287/2412-6179-CO-854.
Серия/номер : 46;2
Аннотация : In this paper, we examine the applicability limits of different methods of compensation of the individual properties of self-emitting displays with significant non-uniformity of chromaticity and maximum brightness. The aim of the compensation is to minimize the perceived image non-uniformity. Compensation of the displayed image non-uniformity is based on minimizing the perceived distance between the target (ideally displayed) and the simulated image displayed by the calibrated screen. The S-CIELAB model of the human visual system properties is used to estimate the perceived distance between two images. In this work, we compare the efficiency of the channel-wise and linear (with channel mixing) compensation models depending on the models of variation in the characteristics of display elements (subpixels). It was found that even for a display with uniform chromatic subpixels characteristics, the linear model with channel mixing is superior in terms of compensation accuracy.
URI (Унифицированный идентификатор ресурса) : 10.18287/2412-6179-CO-854
http://repo.ssau.ru/handle/Zhurnal-Komputernaya-optika/Two-calibration-models-for-compensation-of-the-individual-elements-properties-of-selfemitting-displays-102114
Другие идентификаторы : Dspace\SGAU\20230220\102114
ГРНТИ: 28.23.15
Располагается в коллекциях: Журнал "Компьютерная оптика"

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