CN200966121Y - Color conversion and color domain expansion device in laser display - Google Patents

Color conversion and color domain expansion device in laser display Download PDF

Info

Publication number
CN200966121Y
CN200966121Y CN 200620028129 CN200620028129U CN200966121Y CN 200966121 Y CN200966121 Y CN 200966121Y CN 200620028129 CN200620028129 CN 200620028129 CN 200620028129 U CN200620028129 U CN 200620028129U CN 200966121 Y CN200966121 Y CN 200966121Y
Authority
CN
China
Prior art keywords
circuit
laser
programmable logic
logic device
signal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN 200620028129
Other languages
Chinese (zh)
Inventor
刘伟奇
魏忠伦
冯睿
柳华
康玉思
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
CHANGCHUN SHIKAI TECHNOLOGY INDUSTRY CO., LTD.
Original Assignee
Changchun Institute of Optics Fine Mechanics and Physics of CAS
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Changchun Institute of Optics Fine Mechanics and Physics of CAS filed Critical Changchun Institute of Optics Fine Mechanics and Physics of CAS
Priority to CN 200620028129 priority Critical patent/CN200966121Y/en
Application granted granted Critical
Publication of CN200966121Y publication Critical patent/CN200966121Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Landscapes

  • Processing Of Color Television Signals (AREA)

Abstract

The utility model belongs to the field of laser video display and relates to a color transformation and color range expansion device in laser display, which comprises a decoding circuit, a programmable logic device and a control circuit. The decoding circuit accomplishes decoding the video signals and the inverse Gamma correction under the control of the signals that the control circuit outputs; the programmable logic device accomplishes converting the signals of TV RGB system to the signals of laser RGB system, the inverse Gamma correction of the signals of laser RGB system, the virtual color expansion and amplifying the signals after expansion; a coding circuit accomplishes recoding the signals of laser RGB system and outputs the video signals. What is realized is that the laser three primary colors are used to make the color range of the phosphor three primary colors reappear, the purpose of correctly restoring the colors is achieved and the small color range of the phosphor three primary colors is extended into the large color range of the laser three primary colors, and the colors with higher degree of saturation in the laser color range out of the phosphor color range are displayed.

Description

Colour switching and gamut extension device in the laser display
Technical field
The utility model belongs to laser video and shows the field, relates to a kind ofly correctly reappearing the color video frequency image that the fluorescent material three primary colors are synthesized with the laser three primary colors, and the device that is the big colour gamut of laser three primary colors with the trichromatic little gamut extension of fluorescent material further.
Background technology
The color rendition of coloured image is based on red, green, blue three look composition principles in the color TV.The international broadcasting television standard committee has been formulated multiple different coloud codings and modulation systems such as Phase Alternation Line system, TSC-system and Sequential Color and Memory system according to different fluorescent material three primary colors and different modulation systems, forms international colored radio and television standard.Present various videos show information source, video input-output apparatus all with this standard design manufacturing, thereby make color video display standardization, standardization.
Develop today with practicability rapidly at all solid state three primary colors laser, utilizing three one-wavelength lasers of red, green, blue to realize as three primary colors that the laser color video shows has become research direction very popular in the present color video demonstration field.Because the laser three primary colors are different with traditional fluorescent material three primary colors colour gamut, therefore directly utilize existing vision signal modulated laser three primary colors certainly will cause the deviation of color reproduction; In addition, the trichromatic gamut range of laser (as selects for use the three primary colors Wavelength of Laser to be: R~671nm, G~532nm, B~457nm) than the trichromatic gamut range of fluorescent material is big a lot of usually.Only go to reappear the trichromatic colour gamut of fluorescent material with the laser three primary colors, though can reach the purpose of the correct reduction of color, the characteristics of the trichromatic high saturation of laser, big colour gamut do not show.
Summary of the invention
The utility model purpose provides colour switching and gamut extension device in a kind of laser display, according to colorimetry colour switching principle, utilize matrixer that the fluorescent material video modulation signal is converted to the laser video modulation signal, realize going to reappear the trichromatic colour gamut of fluorescent material, reach the purpose of the correct reduction of color with the laser three primary colors; Criterion according to " tone is constant ", utilize NAND gate, comparator, the color colour gamut of checking in the computing on the fluorescent material gamut boundary is carried out the outer, the outer is to the laser border, with the trichromatic little gamut extension of fluorescent material is the big colour gamuts of laser three primary colors, has represented the higher color of saturation in the fluorescent material colour gamut laser colour gamut in addition.
Realize the utility model circuit as shown in Figure 2, comprise decoding circuit 1, programmable logic device 2, control circuit 4, coding circuit 3; Decoding circuit 1 output connects programmable logic device 2 inputs, and decoding circuit 1 is TV RGB standard signal with the video signal decomposition that receives and carries out the anti-correction of coffee, is transferred to programmable logic device 2 then; Programmable logic device 2 is converted to TV RGB standard signal laser RGB standard signal, judges that whether TV RGB standard signal is whether one or two is arranged among Rp, Gp, the Bp is zero, finishes the anti-correction of coffee that signal after virtual color expansion and the expansion amplifies, realizes laser RGB standard signal again on the edge of colour gamut triangle; The output of programmable logic device 2 connects the input of coding circuit 3, will send into coding circuit 3 through the anti-laser RGB standard signal of proofreading and correct of coffee; Programmable logic device 2 extracts synchronizing signal and time-delay from decoding circuit 1, make coding circuit 3 under the synchronization pulse after the time-delay to laser RGB standard signal recompile and export the video signal; Control circuit 4 is connected with decoding circuit 1, programmable logic device 2, coding circuit 3 respectively; Decoding circuit 1 is finished the video signal decoding under the signal controlling of control circuit 4 output, and the output control signal is given that programmable logic device 2 finishes that TV RGB standard signal is converted to that the coffee of laser RGB standard signal, laser RGB standard signal is instead proofreaied and correct, the signal after virtual color expansion and the expansion amplifies again; Coding circuit 3 is finished laser RGB standard signal recompile and is exported the video signal.
Beneficial effect: the utility model utilizes matrixer that the fluorescent material video modulation signal is converted to the laser video modulation signal, realizes going to reappear the trichromatic colour gamut of fluorescent material with the laser three primary colors, reaches the purpose of the correct reduction of color; Utilize NAND gate, comparator, the color colour gamut of checking in the computing on the fluorescent material gamut boundary is carried out the outer, the outer is the big colour gamuts of laser three primary colors to the laser border with the trichromatic little gamut extension of fluorescent material, has represented the higher color of saturation in the fluorescent material colour gamut laser colour gamut in addition.
Description of drawings
Fig. 1 is the utility model laser display color virtual extended principle schematic.2 is the colour triangle of laser among the figure, and 1 is the colour triangle of the fluorescent material of EBU TV, and the zone that curve 3 constitutes is the nature colour gamut.
Fig. 2 is an electrical block diagram of the present utility model, also is Figure of abstract.Decoding circuit 1 among the figure, programmable logic device 2, control circuit 4, coding circuit 3, matrixer 5, NAND gate 6, the first switching circuits 7, second switch circuit 8, comparator 9, computing kernel 10,11 delay circuits.
Embodiment
Programmable logic device 2 internal structures comprise matrixer 5, NAND gate 6, the first switching circuits 7, second switch circuit 8, comparator 9, computing kernel 10, delay circuit 11; The output of decoding circuit 1 is connected with the input of NAND gate 6, matrixer 5 respectively; The output of matrixer 5 is connected with first switching circuit 7, second switch circuit 8 respectively; The output of NAND gate 6 is connected with first switching circuit 7, second switch circuit 8 respectively; Second switch circuit 8 is connected with intrinsic computing kernel 10 in comparator 9 and the programmable logic device 2 respectively, and computing kernel 10 intrinsic in first switching circuit 7 and the programmable logic device 2 is connected, and delay circuit 11 is connected with coding circuit 3 with decoding circuit 1.
Control circuit 4 adopts single-chip microcomputer, and its model is PLC2046; It is the chip of AD9884 that decoding circuit 1 adopts model; It is FPGA100F that programmable logic device 2 adopts model; It is the chip of TDA8501 that coding circuit 3 adopts model.Single-chip microcomputer is connected with the corresponding interface of decoding circuit 1, programmable logic device 2, coding circuit 3.
Because it is different that laser three primary colors and traditional fluorescent material three primary colors exist chroma point, their gamut range is also different, and therefore according to the colorimetry principle, two trichromatic color systems of difference can carry out color conversion by the matrix of a linear transformation.XYZ system is desirable Mathematical Modeling in the color system, and the RGB system is the actual physical model.Can set up following conversion relational expression between two systems:
X Y Z = [ Ar ] - 1 R G B . . . ( 1 )
When selecting different three primary colors for use as the primary colours of color system, corresponding different conversion relational expressions (1), i.e. [Ar] -1Different.But corresponding XYZ is constant, thus two kinds select for use the color system of different base colors can use XYZ system to set up the equation relation, and then set up two transformational relations between system.Transformational relation with Phase Alternation Line system and TSC-system fluorescent material and laser is an example, and its conversion relational expression is as follows.
[ Br ] - 1 R p G p B p = [ L Nr ] - 1 R L G L B L . . . ( 2 )
[ Cr ] - 1 R p G p B p = [ L Pr ] - 1 R L G L B L . . . ( 3 )
Top two equatioies (2), (3) be multiply by [B respectively r] and [C r] after have following equation to set up:
The color system transformational relation of laser color system and Phase Alternation Line system fluorescent material:
R p G p B p = [ C r ] [ L Pr ] - 1 R L G L B L . . . ( 4 )
[ C r ] [ L Pr 473 ] - 1 = 1.531 0.4143 0.8512 1.085 0.9377 1.356 0.00 0.2128 1.129 . . . ( 5 )
[ C r ] [ L Pr 460 ] - 1 = 0.4451 04558 3.537 0.1818 1.032 3.24 56.16 0.2314 0.00 . . . ( 6 )
[ C r ] [ L Pr 457 ] - 1 = 0.4412 0.4672 3.381 0.1455 1.057 3.101 52.85 0.24 0.0000 . . . ( 7 )
The color system transformational relation of laser color system and TSC-system fluorescent material:
R P G P B P = [ B r ] [ L Nr ] - 1 R L G L B L . . . ( 8 )
[ B r ] [ L Nr 473 ] - 1 = 1.116 0.7949 0.8262 0.8289 1.103 0.9209 0.00 0.4092 1.036 . . . ( 9 )
[ B r ] [ L Nr 460 ] - 1 = 0.3309 0.897 3.12 1.386 1.244 2.003 0.00 0.4614 0.00 . . . ( 10 )
[ B r ] [ L Nr 457 ] - 1 = 0.3409 0.9082 3.08 0.1178 1.26 1.977 0.000 0.4675 0.0000 . . . ( 11 )
More than be with 473nm, 532nm, 672nm; 460nm, 532nm, 672nm; 457nm, 532nm, 672nm are that conversion relational expression (9), (10), (11) between pal mode conversion relational expression (5), (6), (7) and TSC-system formula in laser RGB standard and the existing TV RGB standard are set up in three groups of laser displaies of primary colours.
(4) Rp, Gp, Bp represent fluorescent material three primary colors psychrometric colour specification, R respectively in formula, (8) formula L, G L, B LRepresent laser three primary colors psychrometric colour specification respectively.
Can distinguish design matrix change-over circuit 5 according to conversion relational expression (9), (10), (11) between pal mode conversion relational expression (5), (6), (7) and TSC-system formula in laser RGB standard and the existing TV RGB standard, input signal is resolved into the energy ratio of the laser laser beam of corresponding R, G, three kinds of primary colours of B voltage signal control, synthesize correct color effects thereby reach, realize correctly reappearing the fluorescent material three primary colors with the laser three primary colors.
The course of work of the present utility model: the video signal of input enters programmable logic device 2 after decoding circuit 1 resolves into TV RGB standard signal and the anti-correction of coffee sign indicating number, be converted to laser RGB standard signal by the matrixer in the programmable logic device 25; 6 couples of TV RGB of NAND gate standard signal is judged, if color signal is in fluorescent material colour gamut triangle, be that Rp, Gp, Bp are non-vanishing, gating first switching circuit 7 then, laser RGB standard signal are undertaken by computing kernel intrinsic in the programmable logic device 2 10 that coffee is anti-to be proofreaied and correct; Supply with coding circuit 3 by the synchronizing signal that decoding circuit 1 extracts through delay circuit 11 time-delays, make coding circuit 3 under synchronization pulse after the time-delay, carry out recompile and export the video signal laser RGB standard signal; If color signal is on the edge of fluorescent material colour gamut triangle, promptly one or two is arranged is zero for Rp, Gp, Bp, and then gating second switch circuit 8 goes out laser color tristimulus values R by the comparison circuit ratio L, G L, B LMiddle minimum.Suppose B LValue is minimum, in the intrinsic computing kernel 10 of programmable logic device 2, all tristimulus values is deducted B LValue, the laser color tristimulus values becomes (R L-B L), (G L-B L), 0; Calculate the total brightness of laser color; Total brightness and laser color tristimulus values (R according to laser color L-B L), (G L-B L), 0 calculating needs laser color tristimulus values amplification multiple K again; With laser color tristimulus values (R L-B L), (G L-B L), 0 amplifies K again becomes K (R after doubly L-B L), K (G L-B L), 0, finish laser signal virtual extended function thus; Laser RGB standard signal is carried out the anti-correction of coffee, and output at last expands to the laser RGB standard signal of the big colour gamut of laser three primary colors.By the laser RGB standard signal of intrinsic computing kernels 10 outputs of programmable logic device 2 by coding circuit 3 under synchronization pulse after the time-delay, carry out recompile and export the video signal.

Claims (3)

1, colour switching and gamut extension device in a kind of laser display is characterized in that comprising decoding circuit (1), programmable logic device (2), control circuit (4), coding circuit (3); Decoding circuit (1) output connects programmable logic device (2) input, and decoding circuit (1) is TV RGB standard signal with the video signal decomposition that receives and carries out the anti-correction of coffee, is transferred to programmable logic device (2) then; Programmable logic device (2) is converted to TV RGB standard signal laser RGB standard signal, judges that whether TV RGB standard signal is whether one or two is arranged among Rp, Gp, the Bp is zero, finishes the anti-correction of coffee that signal after virtual color expansion and the expansion amplifies, realizes laser RGB standard signal again on the edge of colour gamut triangle; The output of programmable logic device (2) connects the input of coding circuit (3), will send into coding circuit (3) through the anti-laser RGB standard signal of proofreading and correct of coffee; Programmable logic device (2) extracts synchronizing signal and time-delay from decoding circuit (1), make coding circuit (3) under the synchronization pulse after the time-delay to laser RGB standard signal recompile and export the video signal; Control circuit (4) is connected with decoding circuit (1), programmable logic device (2), coding circuit (3) respectively; Decoding circuit (1) is finished the video signal decoding under the signal controlling of control circuit (4) output, and the output control signal is given that programmable logic device (2) finishes that TV RGB standard signal is converted to that the coffee of laser RGB standard signal, laser RGB standard signal is instead proofreaied and correct, the signal after virtual color expansion and the expansion amplifies again; Coding circuit (3) is finished laser RGB standard signal recompile and is exported the video signal.
2, colour switching and gamut extension device in the laser display according to claim 1, it is characterized in that programmable logic device (2) internal structure comprises matrixer (5), NAND gate (6), first switching circuit (7), second switch circuit (8), comparator (9), computing kernel (10), delay circuit (11); The output of decoding circuit (1) is connected with the input of NAND gate (6), matrixer (5) respectively; The output of matrixer (5) is connected with first switching circuit (7), second switch circuit (8) respectively; The output of NAND gate (6) is connected with first switching circuit (7), second switch circuit (8) respectively; Second switch circuit (8) is connected with intrinsic computing kernel (10) in comparator (9) and the programmable logic device (2) respectively, computing kernel (10) intrinsic in first switching circuit (7) and the programmable logic device (2) is connected, and delay circuit (11) is connected with coding circuit (3) with decoding circuit (1).
3, colour switching and gamut extension device in the laser display according to claim 1 is characterized in that control circuit (4) adopts single-chip microcomputer, and its model is PLC2046; It is the chip of AD9884 that decoding circuit (1) adopts model; It is FPGA100F that programmable logic device (2) adopts model; It is the chip of TDA8501 that coding circuit (3) adopts model.
CN 200620028129 2006-01-12 2006-01-12 Color conversion and color domain expansion device in laser display Expired - Lifetime CN200966121Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200620028129 CN200966121Y (en) 2006-01-12 2006-01-12 Color conversion and color domain expansion device in laser display

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200620028129 CN200966121Y (en) 2006-01-12 2006-01-12 Color conversion and color domain expansion device in laser display

Publications (1)

Publication Number Publication Date
CN200966121Y true CN200966121Y (en) 2007-10-24

Family

ID=38870141

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200620028129 Expired - Lifetime CN200966121Y (en) 2006-01-12 2006-01-12 Color conversion and color domain expansion device in laser display

Country Status (1)

Country Link
CN (1) CN200966121Y (en)

Similar Documents

Publication Publication Date Title
CN1897713A (en) Color changing and color-gamut expanding method and expander in laser display
CN108267918B (en) Projection light source drive control circuit
CN101720045B (en) Method of hue/brightness conversion in laser-displayed color gamut expansion
CN101383126B (en) Method and apparatus for processing digital image to be displayed on display device with backlight module
TWI416454B (en) A method for compensating the uniformity of a liquid crystal display with a non - uniform backlight and the display
CN102768828B (en) Liquid crystal display and control method thereof
CN107529049A (en) Display device image processing method, image processing structure and display device
CN101790100B (en) Virtual expansion method of laser television color gamut based on 1931CIE (Coherent Infrared Energy)-XYZ system
CN104575403A (en) Display device, method for driving display device, and electronic device
CN102663975A (en) Display
TW501083B (en) Flat-panel display drive using sub-sampled YCBCR color signals
CN107507580A (en) Local dimming method applied to Novel backlight
US7768539B2 (en) Method and system for color correction for a display terminal
JP2005233982A (en) Display device, method for driving display device, display information forming apparatus, and display information transmission system
CN102779491B (en) Method and device for compensating field sequential backlight color
CN105304026A (en) Display device with a backlight
CN100369097C (en) Method for deciding signal of driving organic electroluminescence module
CN101378515A (en) Method for transferring video signal colors and television set
CN200966121Y (en) Color conversion and color domain expansion device in laser display
JPH1091083A (en) Method and device for displaying color
CN101025497A (en) Display system with LED backlight device
CN101737701A (en) Light-emitting diode lighting system and control method thereof
Sugiura et al. Wide color gamut displays using LED backlight-signal processing circuits, color calibration system and multi-primaries
CN101540141B (en) Backlight assembly, method of driving the same and display system having the same thereof
CN102915697A (en) Color gamut compensation method for display

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Owner name: CHANGCHUN SHIKAI SCIENCE AND TECHNOLOGY INDUSTRY C

Free format text: FORMER OWNER: CHANGCHUN INSTITUTE OF OPTICS, FINE MECHANICS AND PHYSICS, CAS

Effective date: 20090911

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20090911

Address after: No. 1395, Torch Road, Jilin, Changchun Province: 130012

Patentee after: CHANGCHUN SHIKAI TECHNOLOGY INDUSTRY CO., LTD.

Address before: No. 16 southeast Lake Road, Jilin, Changchun Province: 130031

Patentee before: Changchun Inst. of Optics and Fine Mechanics and Physics, Chinese Academy of Sci

CX01 Expiry of patent term

Granted publication date: 20071024

EXPY Termination of patent right or utility model