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CN1658679A - Methods of Color Correction - Google Patents

Methods of Color Correction Download PDF

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Publication number
CN1658679A
CN1658679A CN200410039149.7A CN200410039149A CN1658679A CN 1658679 A CN1658679 A CN 1658679A CN 200410039149 A CN200410039149 A CN 200410039149A CN 1658679 A CN1658679 A CN 1658679A
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gtg
value
interval
gray scale
function
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CN1324902C (en
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沈毓仁
许景翔
吕菱芝
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VastView Technology Inc
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VastView Technology Inc
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Abstract

The invention relates to a color correction method, which comprises the steps of respectively selecting a plurality of gray scale values and gray scale expression values of a display light source by a color measurement system, respectively carrying out numerical value calculation on selected data of each color light, obtaining a curve fitting fitting curve function of gray scale value data in each interval, obtaining the fitting gray scale expression value of the gray scale value in the interval by using the fitting curve function, manufacturing a comparison table, carrying out logarithm conversion on two curves when corresponding to correspond a gamma curve of normalized image gray scale data to a preset target curve, obtaining a modified gray scale signal by using the comparison table, and outputting the modified gray scale signal to be used for the display to present a gray scale distribution state, wherein the modified gray scale signal is suitable for various displays, particularly liquid crystal displays.

Description

The method of colour correction
Technical field
The present invention relates to a kind of method of colour correction, particularly a kind of color correcting method that the original GTG performance value distribution of image data is distributed, its method is to agree with curvilinear function with an interval to obtain and agree with GTG performance value, and make comparison list, the table of comparisons is obtained fast and is revised the GTG signal so that display adjustment gray-scale distribution state to be provided by this, and the color image that is particularly suitable for LCD is handled.
Background technology
LCD (Liquid Crystal Display, be called for short LCD) belongs to a kind of of photovoltaic midplane display, has that volume is little, light weight, thin thickness, power consumption are low, do not glimmer, numerous advantages such as radiationless; On the image processing technique of display, be subjected to the property effect of liquid crystal molecule own, such as coefficient of viscosity, dielectric constant and coefficient of elasticity etc., have the problem that the response time crosses of a specified duration and ghost phenomena, therefore need to improve image quality with the type of drive of improvement, wherein again with the tool industry using value of active-matrix type (Active Matrix) type of drive, this kind type of drive is to add an active (Active) sub-prime at the electrode crossing place that disposes picture element originally, the most popular TFT (Thin Film Transistor) technology belongs to wherein a kind of exactly at present, the TFT type LCD electrode crossing place that on liquid crystal panel, originally disposes picture element particularly, add a counter electrode, and place the active sub-prime of film like at the infall of these three electrodes.
Each pixel (Pixel) of LCD panel can produce ruddiness (Red), green glow (Green) and blue light (Blue) three primary colors, be called for short RGB, in fact liquid crystal itself does not have color, color is that light passes through the set colour filter of LCD panel and produces, and control the brightness of color by the amount of pixel with control light, the degree of brightness and chromatic color filter are irrelevant, and that generally claim is " GTG value " (Gray level).In LCD inside, the GTG value produces driven by driven unit, one 8 driven unit can produce 256 gray scale voltages, middle colourity then produces intermediate voltage value in driven unit, yet the optical transmission of liquid crystal is non-linear, therefore must revise voltage to obtain the even color distribution character, it is to be similar to a curvilinear function that the input and output of voltage and pixel intensity are closed: light output=input voltage γ, its parameter is represented with γ (gamma), if with the corresponding pass of GTG value and brightness (or title GTG performance value) is to be shown in then to be a curve on the coordinate, be called " gamma curve " (gamma curve), shown in 1A figure, when input GTG data was divided into RGB three coloured light, gamma curve can be shown in 1B figure, generally can be with the original luma data normalization (normalized) of this gamma curve, obtain the origin of curve gamma curve identical of three coloured light with terminal point, shown in Fig. 1 C, generally speaking, the color correction of image is according to this normalization gamma curve.
For a chip for driving that comprises type of drive, make display pannel present the optimum color performance, just Zui Jia gamma curve state must be measured the GTG performance value of panel by color measurements system or device earlier, and give chip for driving to handle original GTG data; In the known techniques, for a shade is the display pannel of 8 demonstrations, 768 GTG performance values must be measured by the color measurements system, just can obtain gamma curve, very time-consuming, therefore the inventor of this case the color measurements time is shortened dramatically, and then it is faster, abundanter to make color produce speed with a novel effectively color correction method.
In addition, for LCD, one 8 controller can be produced 256 shades of grey, if showing 256 colourities, each primary colors on the pixel changes, then each pixel just can show 256 * 256 * 256 kinds of colors, just 16,777,216 kinds of colors, but this can not satisfy the requirement of people's eyes to color change, though display picture is not seen the difference of color change when dynamic demonstration, during static the demonstration, human eye will discover obviously that gray scale variation smooth-going inadequately, in order to solve this problem, so develop the picture frame rate controlled (Frame Rate Control, FRC) technology, method promptly are to be subdivided into several picture frame data in image shows time of cost, when dark in the handoff procedure of image data and than the light tone degree between when switching, colourity in the middle of pixel can produce in handoff procedure presents the GTG value more smoothly, also makes more horn of plenty of color representation.Open or close light and shade simultaneously as if adjacent two pixels in the colors of image handoff procedure, will produce a kind of scintillation (flicker phenomenon), make the people produce sticky feeling, therefore in order to eliminate this kind phenomenon, must make two pixels produce different GTG values, the method that produces be the original GTG value with original gamma curve correspond to an aim curve and, aim curve is to set up according to the characteristic of panel of LCD, or set the RGB gamma curve wherein one as aim curve, again with the correction GTG signal that obtains after the correspondence with the FRC technical finesse, on display, present gray scale states; In the known techniques in the past, the color processing mode can be shown in the 2nd figure step method, can correspond to GTG performance value on the aim curve via the original GTG value of the gamma curve of a shade through step 1, step 2 brightness pointed just, this brightness can be 128.5 performances by the GTG value of original gamma curve, the method of step 3 just, yet this GTG value is between 128 and 129, therefore need the computing position is promoted to 9 from 8, ask with linear interpolation and to obtain corresponding GTG performance value, if the middle GTG value that produces is between 128.5 and 129 or between 128 and 128.5, then the computing position just must be promoted to more than 10, for hardware resource is a burden, and can't accurately correspond to target function fast again with the linear interpolation computing.
In view of this, the present invention is improved above-mentioned shortcoming, makes the image data processing speed faster with the color correcting method of a novelty, and color presents abundanter.
Summary of the invention
Main purpose of the present invention provides a kind of method of colour correction, with the GTG performance value of quick acquisition image data, reduces the color measurements time.
Another object of the present invention provides a kind of method of colour correction, with the revised GTG performance of quick acquisition image value, make LCD can revise GTG signal distribution gray scale states according to this, make the color of display present more horn of plenty, and do not reduce the resolution of image.
In order to achieve the above object, color correcting method of the present invention is made numerical value to the data of choosing of each coloured light respectively and is calculated, try to achieve the curvilinear function that agrees with of GTG Value Data in the every interval of curve fit (curve fitting), utilize this agree with curvilinear function obtain interval in the GTG value agree with GTG performance value, and make comparison list, a gamma curve will be got after the image gray scale data normalization of input, this gamma curve is corresponded to a default aim curve, to seasonable elder generation with two curve logarithmeticses, try to achieve one by the table of comparisons and revise the GTG signal, to revise the GTG signal with the FRC technical finesse, present the gray-scale distribution state for display, especially be suitable for various LCD.
The present invention is described in detail with instantiation below in conjunction with accompanying drawing.
Description of drawings
Figure 1A is the schematic diagram of known gamma curve;
Figure 1B is the schematic diagram of the original gamma curve of different color light;
Fig. 1 C is the schematic diagram of gamma curve after the normalization of different color light;
Fig. 2 is the method schematic diagram that known gamma curve corresponds to aim curve;
Fig. 3 is the step schematic diagram that the input GTG value of the method for colour correction of the present invention is tried to achieve the target gray scale performance value of target function curve;
Fig. 4 is the method schematic diagram relatively of the method and the known techniques of colour correction of the present invention;
Fig. 5 is the flow chart that agrees with the GTG performance value table of comparisons of setting up each coloured light GTG value of the method for colour correction of the present invention;
Fig. 6 is the original GTG document signal of setting up each coloured light GTG value and the flow chart of revising the GTG signal table of comparisons of the method for colour correction of the present invention.
Embodiment
With the LCD is example, for the brightness of correcting liquid crystal display pannel is present condition, can import the GTG value of different color light, again with the GTG performance value of a color measurement mechanism or systematic survey panel of LCD, obtain the gamma graph of each coloured light shown in Figure 1B with this, after normalization shown in Fig. 1 C, in the present invention, 256 GTG values and the GTG performance value to each coloured light do not deal with, calculate gamma curve but only get N group luma data, N is that positive integer and minimum value are 2, maximum is the maximum of the display GTG value scope that can show, so the N value is more little, measuring speed is fast more, but accuracy is inaccurate more; The N value is big more, and Measuring Time increases, but accuracy can improve; With RGB three coloured light is that the display of display light source is an example, and choosing of its best adds up to 30 groups, and be as follows respectively:
The measurement GTG value of ruddiness is: 0,31,63,95,127,159,191,207,223,239,255;
The measurement GTG value of green glow is: 31,63,95,127,159,191,207,223,239,255;
The measurement GTG value of blue light is: 30,63,96,129,162,195,215,235,255;
After measuring the GTG performance value (Q) of above-mentioned GTG value (P), every n group is classified as an interval, n is a positive integer and more than or equal to 2, smaller or equal to N, if per 2 measurement GTG data are an interval, get the maximum of interval interior GTG value and GTG performance value, be divided by after taking the logarithm, obtain a gamma parametric function (a):
r = log Q max log P max ( a )
According to this gamma parameter with a power function Q=aP rAll chose data in+b curve fit (curve fitting) was interval, in the hope of coefficient a, b value, make each interval one agree with curvilinear function and store, utilize the curvilinear function that agrees with in each every interval of coloured light, obtain agreeing with GTG performance value and making comparison list (lookup table) of interval interior each GTG value, can handle or proofread and correct and use for subsequent color.
If per 3 groups of GTG data are classified as an interval, get maximum substitution (a) formula of adjacent two interval GTG values and GTG performance value equally, try to achieve a gamma parameter, with this parameter with a multinomial Q=aP rAll choose data in the+bP+c curve fit interval, in the hope of coefficient a, b and c value, make each interval one agree with curvilinear function and store.
If every n group GTG data is classified as an interval, n is during more than or equal to 2, smaller or equal to the positive integer of N, gets maximum substitution (a) formula of adjacent two interval GTG values and GTG performance value equally earlier, tries to achieve a gamma parameter, with this parameter with a multinomial (b):
Q = Σ m = 2 n a m P r m + a 1 P + a 0 - - - ( b )
All choose data in the curve fit interval, and try to achieve the coefficient a of function m, a 1And a 0, and make each polynomial a N-1=0, r mValue by each interval in GTG value determined that asking method is the gamma parameter that the maximum substitution function (a) with interval interior adjacent GTG value and GTG performance value obtains; With n=4 is example, Q=a 4P R4+ a 2P R2+ a 1P+a 0, wherein an interval of ruddiness comprises GTG value 207,223,239 and 255, then r 4By GTG value 255 and GTG performance value substitution gamma parametric function (a) thereof determine r 2Determined r by GTG value 239 and GTG performance value thereof 1Determined by GTG value 223 and GTG performance value thereof, again with 4 GTG values and GTG performance value substitution Q function, solve each coefficient and can obtain the curvilinear function that agrees with in this interval, utilize the curvilinear function that agrees with in each every interval of coloured light, the GTG performance value of agreeing with that obtains interval interior each GTG value is made comparison list, for the use of subsequent color processing.
Above-mentioned step can be by the flowcharting as Fig. 5, can set up a complete table of comparisons via carrying out this step, in other words, this table of comparisons is by under different gamma parameters, different GTG values and corresponding GTG performance value constitute, relatively learn through experimental data, the error of resulting gamma curve of this kind method and the gamma curve that measures is less than the permissible range of measurement mechanism, therefore can learn, the color correcting method of this kind curve fit not only reduces the time of measuring display effectively, also obtain the high measured value of precision, the method of this kind colour correction is applicable to various display, for example LCD, projector, plasma display panel or the like.
In addition, behind the original GTG document signal input display of image, the gamma curve of supposing this image data is that parameter is the function of r: Y=X r(c), wherein X, Y are the GTG value and the GTG performance value of GTG signal, and desire corresponds to a default aim curve Function Y with this gamma curve function t=X t R '(d), Y wherein tBe target gray scale performance value, r ' is the gamma parameter of aim curve, makes display handle color representation according to revised GTG signal, and method is for (d) to take the logarithm function (c), and makes X t=X obtains function:
LogY=r log X (c '); And
logY t=r′log?X(d’);
Above-mentioned two formulas obtain function (e) through the simultaneous computing:
log Yt = r ′ r log Y - - - ( e )
Can try to achieve target gray scale performance value Y by function (e) t, if with coordinate representation then as shown in Figure 3, the logarithmic coordinates axle is respectively GTG value and GTG performance value, the numerical value of function (c ') (d ') forms the straight line that slope is respectively r and r ', as the GTG value X of image data InAfter the input,, can obtain target gray scale performance value Y through step 1 and step 2 t,, promptly try to achieve X on the transverse axis for the straight line of-r ' with a slope again through step 3 Out, with X OutBe initial transition GTG value X nReferring to the above-mentioned table of comparisons, try to achieve corresponding transition GTG performance value Y nWith Y nWith Y tCompare, if both differences are less than an admissible error value, then with Y nValue replaces Y tValue is with transition GTG value X nReplace target gray scale value X t, otherwise repeat above-mentioned steps, up to Y nWith Y tDifference less than an admissible error value, then will show target gray scale value X tCorrection GTG signal output, to revise the GTG signal with a FRC technology shows, the flow chart of above-mentioned steps as shown in Figure 6, via the resulting GTG value of this step accuracy can according under the different gamma parameters that the above-mentioned table of comparisons provided, the decision of different GTG value and corresponding GTG performance value, be not subjected to hardware resource limitations, therefore expressible gradation horn of plenty more, and original GTG document signal with revise the GTG signal and can correspondingly make comparison list and provide display to present the gray-scale distribution state as foundation.
See also Fig. 4, can linear interpolation handle 128.5 GTG value performance with 9 devices, but, the GTG value can be classified as near value 128.5 if being 128.7, and with 128.5 performances of exporting and present this value, review the method for this case can be directly with GTG value 128.7 data by follow-up FRC technical finesse, obtain GTG value output accurately.
Therefore, the present invention has following advantage:
1, color correcting method of the present invention shortens the display color Measuring Time, and error is less than measurement The permissible range of device.
2, that color correcting method of the present invention makes the performance level of color is more abundant, and does not lower picture Resolution ratio, what make display bright in lusterly has a third dimension.

Claims (13)

1, a kind of method of colour correction may further comprise the steps:
(1) by the GTG value (p) of color measurements systematic survey display display light source and GTG performance value (q);
(2) with GTG value and GTG performance value normalization (normalized), and choose N group GTG value (P) and GTG performance value (Q), N is a positive integer, and minimum value is 2, maximum is the maximum of the display GTG value scope that can show;
(3) the every n of the selected value of above-mentioned steps group is classified as an interval, n is a positive integer and more than or equal to 2, smaller or equal to N;
(4) be divided by after the GTG value (P) in every interval and GTG performance value (Q) are taken the logarithm, obtain gamma parameter (gamma): r = log Q log P , All choose data in interval to agree with (curvefitting) according to this gamma parameter with a function curve respectively, make each interval one agree with curvilinear function;
(5) utilize the curvilinear function that agrees with in each every interval of coloured light, obtain interval in each GTG value agree with GTG performance value, and GTG value and the corresponding sequence of values of agreeing with GTG performance value are made comparison list (lookup table);
(6) with the original GTG data normalization (normalized) of image, obtain the gamma curve (gamma curve) that each coloured light comprises the GTG signal of GTG value (X) and GTG performance value (Y) respectively, the gamma curve function is Y=X r, r is the gamma parameter;
(7) be Y=X with the gamma curve function rThe image gray scale signal correspond to a default aim curve Function Y t=X t R 'Even, X tEqual X, approach through iterative method and try to achieve a correction GTG signal, the steps include:
(a) respectively with gamma curve function and aim curve function logarithmetics, therefore log Yt = r ′ r log Y , Try to achieve target gray scale performance value Y thus t
(b) with a transition GTG value X nReferring to this table of comparisons, try to achieve corresponding transition GTG performance value Y n
(c) with transition GTG performance value Y nWith target gray scale performance value Y tCompare, if both differences are less than an admissible error value, then with Y nReplace Y tValue, and with this transition GTG value X nReplace target gray scale value X t, otherwise repeat above-mentioned steps;
(d) will comprise target gray scale value X tCorrection GTG signal output; And
(8) will revise the output of GTG signal, and make display present the gray-scale distribution state according to revising the GTG signal.
2, the method for colour correction as claimed in claim 1, wherein display light source is to be RGB (RGB) three coloured light.
3, the method for colour correction as claimed in claim 1, wherein the maximum of adjacent GTG value and GTG performance value is got in each interval, in the hope of the gamma parameter, promptly r = log Q max log P max .
4, the method for colour correction as claimed in claim 1, wherein function is to be the multinomial of foundation with the gamma parameter Q = Σ m = 2 n a m P r m + a 1 P + a 0 , N is more than or equal to 2, smaller or equal to the positive integer of N, a m, a 1And a 0The coefficient of function for this reason, and make each polynomial a N-1=0, r mValue by each interval in GTG value determined.
5, a kind of method of colour correction may further comprise the steps:
(9) by the GTG value (p) of color measurements systematic survey display display light source and GTG performance value (q);
(10) with GTG value and GTG performance value normalization (normalized), and choose N group GTG value (P) and GTG performance value (Q), N is a positive integer, and minimum value is 2, maximum is the maximum of the display GTG value scope that can show;
(11) the every n of the selected value of above-mentioned steps group is classified as an interval, n is a positive integer and more than or equal to 2, smaller or equal to N;
(12) be divided by after the GTG value (P) in every interval and GTG performance value (Q) are taken the logarithm, obtain gamma parameter (gamma): r = log Q log P , All choose data in interval to agree with (curvefitting) according to this gamma parameter with a function curve respectively, make each interval one agree with curvilinear function; And
Utilize the curvilinear function that agrees with in each every interval of coloured light, obtain interval in each GTG value agree with GTG performance value; By this, display presents prediction gray-scale distribution state according to GTG value after proofreading and correct and GTG performance value.
6, the method for colour correction as claimed in claim 5, wherein the maximum of adjacent GTG value and GTG performance value is got in each interval, in the hope of the gamma parameter, promptly r = log Q max log P max .
7, the method for colour correction as claimed in claim 5, wherein function is to be the multinomial of foundation with the gamma parameter Q = Σ m = 2 n a m P r m + a 1 P + a 0 , N is more than or equal to 2, smaller or equal to the positive integer of N, a m, a 1And a 0The coefficient of function for this reason, and make each polynomial a N-1=0, r mValue by each interval in GTG value determined.
8, the method for colour correction as claimed in claim 5, wherein this light source is a redgreenblue light, wherein:
Ruddiness is measured the GTG value: 0,31,63,95,127,159,191,207,223,239,255; The measurement GTG value of green glow is: 31,63,95,127,159,191,207,223,239,255; The measurement GTG value of blue light is: 30,63,96,129,162,195,215,235,255.
9, the method for colour correction as claimed in claim 5, wherein display is a LCD.
10, the method for colour correction as claimed in claim 5, wherein display is a projector.
11, the method for colour correction as claimed in claim 5, wherein display is plasma display panel (Plasma Display Panel).
12, a kind of method of colour correction may further comprise the steps:
With the gamma curve function is Y=X rThe image gray scale signal correspond to a default aim curve Function Y t=X t R 'Even Xt equals X, approach through iterative method and to try to achieve one and revise the GTG signal, the steps include:
(a) respectively with gamma curve function and aim curve function logarithmetics, therefore log Yt = r ′ r log Y , Try to achieve target gray scale performance value Y thus t
Referring to a built-in table of comparisons (lookup table), try to achieve corresponding transition GTG performance value Yn with a transition GTG value Xn;
Transition GTG performance value Yn and target gray scale performance value Yt are compared, if both differences less than an admissible error value, then replace the Yt value with Yn, and replace target gray scale value Xt, otherwise repeat above-mentioned steps with this transition GTG value Xn;
To comprise the correction GTG signal output of target gray scale value Xt; And
To revise the output of GTG signal, and make display present the gray-scale distribution state according to revising the GTG signal.
13, the method for colour correction as claimed in claim 12, wherein this table of comparisons by the user adjust it, it comprises the pairing GTG performance of each GTG value value.
CNB2004100391497A 2004-02-16 2004-02-16 Methods of Color Correction Expired - Fee Related CN1324902C (en)

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Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4802350B2 (en) * 1998-03-12 2011-10-26 ソニー株式会社 Display device
US6043797A (en) * 1996-11-05 2000-03-28 Clarity Visual Systems, Inc. Color and luminance control system for liquid crystal projection displays
US7030846B2 (en) * 2001-07-10 2006-04-18 Samsung Electronics Co., Ltd. Color correction liquid crystal display and method of driving same

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US9659520B2 (en) 2010-11-29 2017-05-23 Himax Display, Inc. Gamma correction method based on a gamma curve obtained from single or multiple primary-color frames
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US9666144B2 (en) 2014-08-18 2017-05-30 Shenzhen China Star Optoelectronics Technology Co., Ltd. Image display method and system
RU2668392C2 (en) * 2014-08-18 2018-09-28 Шэньчжэнь Чайна Стар Оптоэлектроникс Текнолоджи Ко., Лтд. Image display method and display system
CN106023954A (en) * 2016-06-01 2016-10-12 厦门天马微电子有限公司 Correcting method for gray scale brightness and chroma of display device
CN106023954B (en) * 2016-06-01 2018-07-24 厦门天马微电子有限公司 A kind of bearing calibration of display device gray-scale intensity and coloration
CN106409212A (en) * 2016-12-12 2017-02-15 深圳Tcl数字技术有限公司 Gamma curve adjustment method and device
CN106409212B (en) * 2016-12-12 2021-03-12 深圳Tcl数字技术有限公司 Gamma curve adjusting method and device
CN108541327A (en) * 2017-01-06 2018-09-14 Trisys株式会社 A kind of antidote of display panel spot
CN107863086A (en) * 2017-12-20 2018-03-30 惠科股份有限公司 Display device and driving method thereof
CN111785220A (en) * 2019-04-03 2020-10-16 名硕电脑(苏州)有限公司 Display correction method and system
CN111785220B (en) * 2019-04-03 2022-02-08 名硕电脑(苏州)有限公司 Display correction method and system
CN111223466A (en) * 2020-01-21 2020-06-02 Tcl华星光电技术有限公司 Color correction method for display
CN116686037A (en) * 2020-10-19 2023-09-01 西安诺瓦星云科技股份有限公司 Gray scale measurement method and device
WO2022082370A1 (en) * 2020-10-19 2022-04-28 西安诺瓦星云科技股份有限公司 Grayscale measurement method and apparatus
GB2614973A (en) * 2020-10-19 2023-07-26 Xian Novastar Tech Co Ltd Grayscale measurement method and apparatus
CN116686037B (en) * 2020-10-19 2024-12-17 西安诺瓦星云科技股份有限公司 Grayscale measurement method and device
US12175910B2 (en) 2020-10-19 2024-12-24 Xi'an Novastar Tech Co., Ltd. Method for gray scale measurement, non-transitory storage medium, and processor
CN114449238A (en) * 2020-11-06 2022-05-06 中强光电股份有限公司 Projection system and its gamma curve correction method
CN114449238B (en) * 2020-11-06 2024-05-31 中强光电股份有限公司 Projection system and gamma curve correction method thereof
CN114356253B (en) * 2021-12-29 2023-08-29 厦门汉印电子技术有限公司 Method, device, equipment and storage medium for acquiring lookup table of gray level value
CN114356253A (en) * 2021-12-29 2022-04-15 厦门汉印电子技术有限公司 Method, device and equipment for acquiring lookup table of gray-scale values and storage medium

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