WO2019184656A1 - 屏幕校准方法、装置及系统 - Google Patents

屏幕校准方法、装置及系统 Download PDF

Info

Publication number
WO2019184656A1
WO2019184656A1 PCT/CN2019/076794 CN2019076794W WO2019184656A1 WO 2019184656 A1 WO2019184656 A1 WO 2019184656A1 CN 2019076794 W CN2019076794 W CN 2019076794W WO 2019184656 A1 WO2019184656 A1 WO 2019184656A1
Authority
WO
WIPO (PCT)
Prior art keywords
display screen
chromaticity
chromaticity coordinate
register
preset
Prior art date
Application number
PCT/CN2019/076794
Other languages
English (en)
French (fr)
Inventor
张晓亮
杨定洲
王剑平
Original Assignee
中兴通讯股份有限公司
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 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Priority to US16/976,754 priority Critical patent/US11417292B2/en
Priority to EP19777468.0A priority patent/EP3748625A4/en
Publication of WO2019184656A1 publication Critical patent/WO2019184656A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G5/00Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators
    • G09G5/02Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators characterised by the way in which colour is displayed
    • G09G5/024Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators characterised by the way in which colour is displayed using colour registers, e.g. to control background, foreground, surface filling
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • G06F3/1423Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display
    • G06F3/1446Digital output to display device ; Cooperation and interconnection of the display device with other functional units controlling a plurality of local displays, e.g. CRT and flat panel display display composed of modules, e.g. video walls
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G3/00Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
    • G09G3/20Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
    • G09G3/2003Display of colours
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G5/00Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators
    • G09G5/02Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators characterised by the way in which colour is displayed
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G5/00Control arrangements or circuits for visual indicators common to cathode-ray tube indicators and other visual indicators
    • G09G5/10Intensity circuits
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2300/00Aspects of the constitution of display devices
    • G09G2300/02Composition of display devices
    • G09G2300/026Video wall, i.e. juxtaposition of a plurality of screens to create a display screen of bigger dimensions
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/06Adjustment of display parameters
    • G09G2320/0666Adjustment of display parameters for control of colour parameters, e.g. colour temperature
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/06Adjustment of display parameters
    • G09G2320/0686Adjustment of display parameters with two or more screen areas displaying information with different brightness or colours
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/06Adjustment of display parameters
    • G09G2320/0693Calibration of display systems
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/08Arrangements within a display terminal for setting, manually or automatically, display parameters of the display terminal

Definitions

  • the present application relates to electronic technology, for example, to a screen calibration method, apparatus, and system.
  • the color of the display is different even in the case of displaying pure white.
  • the white of the display of the terminal produced by different manufacturers is different, even if the display of the same model produced by the same manufacturer is displaying the same pure white.
  • many screens have different subjective colors on the human eye. This is because the human eye recognition ability is too high and many colors can be recognized.
  • At least one embodiment of the present application provides a screen calibration method, apparatus, and system for reducing color differences when a screen is displayed.
  • At least one embodiment of the present application provides a screen calibration method, including: changing parameters of a preset register input to the first display screen and a preset register of the second display screen, and collecting the different parameters a chromaticity coordinate of a display screen to obtain a first chromaticity coordinate set, collecting chromaticity coordinates of the second display screen under different parameters to obtain a second chromaticity coordinate set, and the first display screen and the second display
  • the screen displays the same monochrome image
  • At least one embodiment of the present application provides a screen calibration apparatus including a memory and a processor, the memory storing a program that, when read by the processor, implements the screen of any of the embodiments Calibration method.
  • An embodiment of the present application provides a screen calibration system, including: a chroma acquisition device, a chroma acquisition module, and a chroma matching module, where:
  • the chrominance collecting device is configured to: after receiving the instruction sent by the chromaticity acquiring module, collect chromaticity coordinates of the first display screen and send the chromaticity coordinates to the chromaticity acquiring module; and collect chromaticity coordinates of the second display screen And sending to the chroma acquisition module;
  • the chroma acquisition module is configured to sequentially input different parameters to the preset register of the first display screen and the preset register of the second display screen, and send the first display screen to the first display screen and the second display screen.
  • An instruction for displaying the same monochrome image sending an instruction for collecting chromaticity coordinates to the chromaticity collecting device, receiving chromaticity coordinates of the first display screen and chromaticity coordinates of the second display screen sent by the chromaticity collecting device, Obtaining a first chromaticity coordinate set formed by chromaticity coordinates of the first display screen under different parameters, and a second chromaticity coordinate set formed by chromaticity coordinates of the second display screen under different parameters;
  • the chrominance matching module is configured to acquire two chromaticity coordinates from the first chromaticity coordinate set and the second chromaticity coordinate set respectively, and the two chromaticity coordinates closest to the distance belong to the One chromaticity coordinate of the first chromaticity coordinate set is used as the first chromaticity coordinate, and another chromaticity coordinate belonging to the second chromaticity coordinate set among the two closest chromaticity coordinates is used as the second color a first coordinate corresponding to the first chromaticity coordinate is stored in a preset register of the first display screen, and a second parameter corresponding to the second chromaticity coordinate is stored in the second display Preset register.
  • FIG. 1 is a flowchart of a screen calibration method according to an embodiment of the present application
  • FIG. 2 is a schematic diagram of a screen calibration system according to an embodiment of the present application.
  • FIG. 3 is a schematic diagram of a screen calibration system according to an embodiment of the present application.
  • FIG. 4 is a schematic diagram of a dual screen terminal according to an embodiment of the present application.
  • FIG. 5 is a block diagram of a screen calibration apparatus according to an embodiment of the present application.
  • multi-screen terminals or terminals that form a large display screen through the display screen.
  • the white balance is adjusted by the gamma calibration scheme of the display screen, and a white chromaticity coordinate value is set, and all the screens are calibrated to the target value. Due to the accuracy of the calibration equipment or the deviation after calibration to the target value, some of the coordinates of the target value, some of which are to the right of the target value, result in a large gap between the different screens.
  • calibration is performed using a difference in color temperature caused by a difference in color temperature register parameters or voltage register parameters in a liquid crystal display (LCD) integrated circuit (IC) integrated circuit (IC).
  • LCD liquid crystal display
  • IC integrated circuit
  • an embodiment of the present application provides a screen calibration method, including: step 101, step 102, and step 103.
  • step 101 the parameters input to the preset register of the first display screen and the preset register of the second display screen are changed, and the chromaticity coordinates of the first display screen under different parameters are acquired to obtain the first a set of chromaticity coordinates, collecting chromaticity coordinates of the second display screen under different parameters to obtain a second chromaticity coordinate set, and the first display screen and the second display screen display the same monochrome image.
  • step 102 two chromaticity coordinates from the first chromaticity coordinate set and the second chromaticity coordinate set are respectively obtained, and the two chromaticity coordinates closest to the distance belong to the One chromaticity coordinate of the first chromaticity coordinate set is used as the first chromaticity coordinate, and another chromaticity coordinate belonging to the second chromaticity coordinate set among the two closest chromaticity coordinates is used as the second color Degree coordinates.
  • step 103 the first parameter corresponding to the first chromaticity coordinate is stored in a preset register of the first display screen; and the second parameter corresponding to the second chromaticity coordinate is stored in the second The default register for the display.
  • the first parameter corresponding to the first chromaticity coordinate means: when the first parameter is taken by the register, the collected chromaticity coordinate is the first chromaticity coordinate; and the second chromaticity coordinate corresponds to the second parameter When the register takes the second parameter, the acquired chromaticity coordinates are the second chromaticity coordinates.
  • the calibration method provided in this embodiment eliminates the need for the naked eye and avoids being objective. In addition, the problem that the calibration to the target value is affected by the accuracy in the related art is avoided.
  • the distance can be determined by: calculating (xa 1 - xb 1 ) 2 + (ya 2 -yb 2 ) 2 .
  • the distance calculation method here is only an example and can be calculated in other ways.
  • the preset register is a color temperature register or a voltage register corresponding to a gamma parameter.
  • the acquiring the chromaticity coordinates of the first display screen under different parameters to obtain the first chromaticity coordinate set comprises:
  • first chromaticity coordinate set Acquiring the chromaticity coordinates of the first display screen under all the parameters in the parameter range supported by the first display screen to obtain the first chromaticity coordinate set; for example, if the first display screen supports 256 register values, 256 values are respectively input into the color temperature register to obtain a first chromaticity coordinate set composed of 256 chromaticity coordinates. For example, if the first display screen supports 100 register values, 100 values are respectively input into the voltage register to obtain 100 colors. A set of first chromaticity coordinates composed of degrees of coordinates. It should be noted that only a subset of them may be taken.
  • 128 values are respectively input into the color temperature register to obtain a first chromaticity coordinate set composed of 128 chromaticity coordinates, and for example, 50 values are respectively input to the voltage.
  • the register obtains a first set of chromaticity coordinates composed of 50 chromaticity coordinates.
  • the acquiring the chromaticity coordinates of the second display screen under different parameters to obtain the second chromaticity coordinate set comprises:
  • 128 values are respectively input into the color temperature register to obtain a first chromaticity coordinate set composed of 128 chromaticity coordinates, and for example, 50 values are respectively input to the voltage.
  • the register obtains a first set of chromaticity coordinates composed of 50 chromaticity coordinates.
  • the same monochrome image is the same white image. In other embodiments, it may also be a monochrome image of other colors, such as a red image or the like.
  • a pure white screen is selected, and the colors of the two display screens under the pure white screen are calibrated so that the two screens are displayed. The pure white is close to the state.
  • the first parameter corresponding to the first chromaticity coordinate is stored in a preset register of the first display screen; and the second parameter corresponding to the second chromaticity coordinate is stored in the
  • the preset registers of the second display screen include:
  • the first chromaticity coordinate includes a first abscissa and a first ordinate
  • the second chromaticity coordinate includes a second abscissa and a second ordinate, when the first abscissa and the second ordinate
  • the first parameter corresponding to the first chromaticity coordinate is stored
  • the preset register of the first display screen stores the second parameter corresponding to the second chromaticity coordinate into a preset register of the second display screen.
  • the method further includes
  • the first chromaticity coordinate includes a first abscissa and a first ordinate
  • the second chromaticity coordinate includes a second abscissa and a second ordinate, when the first abscissa and the second ordinate
  • This method can be used to screen two displays as a display for a dual or multi-screen terminal. It can also be used to evaluate whether a dual-screen or multi-screen terminal is qualified (whether the color difference meets the requirements).
  • the first preset threshold, the second preset threshold, and the third preset threshold may be set as needed, for example, 0.005.
  • first display screen and the second display screen may be two display screens of a dual screen or a multi-screen terminal, or may be two independent display screens.
  • the embodiment of the present application compares the chromaticity coordinates of the two display screens to obtain the chromaticity coordinates closest to the distance, and performs calibration according to the closest chromaticity coordinates, thereby reducing the difference in screen display.
  • This calibration method avoids the objectivity of the naked eye and avoids the problem that the calibration to the target value is affected by the accuracy in the related art.
  • an embodiment of the present application provides a screen calibration system, including: a chroma acquisition device 201, a chroma adjustment module 202, and a chroma matching module 203, wherein:
  • the chrominance collecting device 201 is configured to: after receiving the instruction sent by the chromaticity acquiring module, collect chromaticity coordinates of the first display screen and send the chromaticity coordinates to the chromaticity adjusting module; and collect chromaticity coordinates of the second display screen Sended to the chroma adjustment module.
  • the chromaticity adjustment module 202 is configured to sequentially input different parameters to the preset register of the first display screen and the preset register of the second display screen to the first display screen and the second display screen Sending an instruction for displaying the same monochrome image, transmitting an instruction for collecting chromaticity coordinates to the chromaticity collecting device, receiving chromaticity coordinates of the first display screen and chromaticity coordinates of the second display screen sent by the chromaticity collecting device And obtaining a first chromaticity coordinate set formed by the chromaticity coordinates of the first display screen under different parameters, and a second chromaticity coordinate set formed by the chromaticity coordinates of the second display screen under different parameters.
  • the chrominance matching module 203 is configured to acquire two chromaticity coordinates that are closest to each other from the first chromaticity coordinate set and the second chromaticity coordinate set respectively, and the two chromaticity coordinates that are the closest to the distance
  • One chromaticity coordinate belonging to the first chromaticity coordinate set is used as the first chromaticity coordinate
  • another chromaticity coordinate belonging to the second chromaticity coordinate set among the two chromaticity coordinates closest to the distance is used as a second chromaticity coordinate; storing a first parameter corresponding to the first chromaticity coordinate in a preset register of the first display screen, and storing a second parameter corresponding to the second chromaticity coordinate into the first parameter The preset register of the second display.
  • the chroma acquisition device 201 is a device for collecting the chromaticity coordinates of the display screen.
  • it may be a CA-310 device such as Konica. Since the acquisition accuracy is related to the brightness, the first display screen and the second display screen are performed. When displayed, it can be displayed with maximum brightness.
  • the present application is not limited thereto, and other brightness may be used for display.
  • the chroma adjustment module 202 sequentially inputs different parameters to the preset register of the first display screen and the preset register of the second display screen, including: supporting the first display screen All the parameters in the parameter range are sequentially input into the preset register of the first display screen; all parameters in the parameter range supported by the second display screen are sequentially input into the preset register of the second display screen.
  • the chroma matching module 203 is further configured to:
  • the first chromaticity coordinate includes a first abscissa and a first ordinate
  • the second chromaticity coordinate includes a second abscissa and a second ordinate
  • the indication information that the color difference of the first display screen and the second display screen does not match is output.
  • a specific register in the LCD IC is set to adjust the color temperature of the LCD display.
  • the color of the screen display can be adjusted from warm (yellow) to cold (blue). Take an IC as an example.
  • the default value of this register is 00 (hexadecimal). From 00 to 7F (hexadecimal), it is adjusted from typical value to cold, and from FF to 80 (hexadecimal) is from typical value. Adjust to warmer.
  • the color temperature register is used to calibrate the display screen.
  • the dual-screen terminal has two screens with the same specification parameters, which are respectively referred to as a first display screen and a second display screen.
  • the 256 parameters from 00 to 7F and FF to 80 are respectively input to the color temperature register of the first display screen, and the chromaticity of the first display screen in the Coordinate Internationale de L'Eclairage (CIE) coordinate system is measured. Coordinate values: (xa n , yb n ), n from 1 to 256. During this process, the first display shows a white image.
  • CIE Coordinate Internationale de L'Eclairage
  • the second display screen displays the same white image as the first display screen.
  • the color temperature register is, for example, an 84H register, and n' and m' are respectively written into the 84H register of the first display screen and the 84H register of the second display screen.
  • the 84H register is called.
  • Value when the second display is displayed, the value of the 84H register is called.
  • GVDDP and GVDDN are the voltages that regulate the Gamma parameter of the display. They are controlled by the value in the voltage register. Each value of the voltage register corresponds to a GVDDP and GVDDN value. Changing the value of the voltage register changes the GVDDP and GVDDN values. GVDDP and GVDDN are a pair of voltages with the same value, which are positive and negative.
  • the voltage of GVDDP is set to vary from 4V to 5V.
  • the white screen displayed on the display screen is from blue to yellow. Variety.
  • the 97H register corresponds to the voltage of GVDDP
  • the 98H register corresponds to the voltage of GVDDN.
  • the dual-screen mobile phone has two screens with the same specification parameters, namely a first display screen and a second display screen.
  • the value of the 97H register is hexadecimal. There are a total of 100 (decimal) values from D7 (hexadecimal) to 74 (hexadecimal), which corresponds to displaying a white screen from warm to cool.
  • the value of the 98H register is hexadecimal. There are a total of 100 (decimal) values from D7 (hexadecimal) to 74 (hexadecimal), which corresponds to displaying a white screen from warm to cool.
  • the 97H and 98H registers write the same parameter values.
  • This embodiment provides a screen calibration system, as shown in FIG. 3, including a dual screen terminal 301, a chroma acquisition device 302, a control device 303 (such as a computer, etc.), and the control device 303 includes a chroma adjustment module 202 and color. Degree matching module 203. It should be noted that, in another embodiment, the control device 303 may not be provided, and the chrominance adjustment module 202 and the chrominance matching module 203 are directly disposed on the dual screen terminal 301.
  • the dual-screen terminal 301 has two display screens of the same size and specification. After the dual-screen terminal is deployed, the two display screens are placed side by side, which are a first display screen 401 and a second display screen 402, respectively. The middle of the display screen is connected by a rotating shaft 403, and the two display screens (the first display screen 401 and the second display screen 402) realize the back-to-back folding and the deployment of the left and right placement by rotating the rotating shaft 403.
  • the chrominance collecting device 302 is configured to: after receiving the command sent by the chromaticity acquiring module, collect the chromaticity coordinates of the first display screen and send the chromaticity coordinates to the control device 303, for example, to the chromaticity adjusting module 202; The chromaticity coordinates of the display are sent to the control device 303, for example to the chromaticity adjustment module 202.
  • the chromaticity adjustment module 202 is configured to sequentially input different parameters to the preset register of the first display screen and the preset register of the second display screen to the first display screen and the second display screen Sending an instruction for displaying the same monochrome image, transmitting an instruction for collecting chromaticity coordinates to the chromaticity collecting device, receiving chromaticity coordinates of the first display screen and chromaticity coordinates of the second display screen sent by the chromaticity collecting device Obtaining a first chromaticity coordinate set formed by chromaticity coordinates of the first display screen under different parameters, and a second chromaticity coordinate set formed by chromaticity coordinates of the second display screen under different parameters; for example, Input 256 parameters into the color temperature register, obtain a first chromaticity coordinate set composed of 256 chromaticity coordinates and a second chromaticity coordinate set composed of 256 chromaticity coordinates, or input 100 parameters into the voltage register to obtain 100 colors.
  • the first chromaticity coordinate composed of the degree coordinates
  • the chrominance matching module 203 is configured to acquire the closest chromaticity coordinates in the first chromaticity coordinate set and the second chromaticity coordinate set, respectively being the first chromaticity coordinate and the second chromaticity coordinate;
  • the first parameter corresponding to the first chromaticity coordinate is stored in the preset register of the first display screen
  • the second parameter corresponding to the second chromaticity coordinate is stored in the preset register of the second display screen.
  • the first parameter and the second parameter are sent to the dual screen terminal 301, and the dual screen terminal 301 writes the first parameter and the second parameter into the corresponding display IC register, the first display screen and the second display, respectively. This parameter is executed while the screen is displaying.
  • an embodiment of the present application provides a screen calibration apparatus 50, which includes a memory 510 and a processor 520.
  • the memory 510 stores a program, when the program is read and executed by the processor 520, A screen calibration method as described in any of the embodiments is implemented.
  • An embodiment of the present application provides a computer readable storage medium storing one or more programs, the one or more programs being executable by one or more processors to implement any The screen calibration method described in the embodiment.
  • the computer readable storage medium includes: a USB flash drive, a read-only memory (ROM), a random access memory (RAM), a mobile hard disk, a magnetic disk, or an optical disk, and the like, which can store program codes. Medium.

Landscapes

  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • Multimedia (AREA)
  • Human Computer Interaction (AREA)
  • General Engineering & Computer Science (AREA)
  • Controls And Circuits For Display Device (AREA)
  • Testing, Inspecting, Measuring Of Stereoscopic Televisions And Televisions (AREA)

Abstract

一种屏幕校准方法、装置及系统,屏幕校准方法包括:采集不同参数下的待校准的显示屏的色度坐标,将最接近的色度坐标对应的参数存入寄存器,实现屏幕校准。

Description

屏幕校准方法、装置及系统
本申请要求在2018年03月30日提交中国专利局、申请号为201810286991.2的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及电子技术,例如涉及一种屏幕校准方法、装置及系统。
背景技术
显示屏的颜色即使在显示纯白色的情况下也是不相同的,不同厂家生产的终端的显示屏的白色是不同的,即使是同一个厂家生产的同一个型号的显示屏在显示同一张纯白色画面的时候,很多屏幕在人眼主观上看颜色也是不同的,这是由于人眼识别能力太高,可以识别出很多颜色。
当多个显示屏幕拼接起来形成一个大的显示屏进行显示的时候,两个屏幕之间的色彩上的差异容易被人感知到。因此,有必要对屏幕进行校准。
发明内容
本申请至少一实施例提供了一种屏幕校准方法、装置及系统,降低屏幕显示时的颜色差异。
本申请至少一实施例提供了一种屏幕校准方法,包括:改变输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器的参数,采集不同参数下所述第一显示屏的色度坐标以获得第一色度坐标集合,采集不同参数下所述第二显示屏的色度坐标以获得第二色度坐标集合,且所述第一显示屏和第二显示屏显示同一单色图像;
获取分别来自所述第一色度坐标集合与所述第二色度坐标集合的距离最近的两个色度坐标,将所述距离最近的两个色度坐标中属于所述第一色度坐标集合的一个色度坐标作为第一色度坐标,且将所述距离最近的两个色度坐标中属于所述第二色度坐标集合的另一个色度坐标作为第二色度坐标;
将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器;将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
本申请至少一实施例提供一种屏幕校准装置,包括存储器和处理器,所述 存储器存储有程序,所述程序在被所述处理器读取执行时,实现任一项实施例所述的屏幕校准方法。
本申请一实施例提供一种屏幕校准系统,包括:色度采集设备、色度获取模块、色度匹配模块,其中:
所述色度采集设备设置为,接收到所述色度采集模块发送的指令后,采集第一显示屏的色度坐标并发送给所述色度获取模块;采集第二显示屏的色度坐标并发送给所述色度获取模块;
所述色度获取模块设置为,依次将不同参数输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器,向所述第一显示屏和第二显示屏发送显示同一单色图像的指令,向所述色度采集设备发送采集色度坐标的指令,接收所述色度采集设备发送的第一显示屏的色度坐标和第二显示屏的色度坐标,获得不同参数下所述第一显示屏的色度坐标构成的第一色度坐标集合,以及,不同参数下所述第二显示屏的色度坐标构成的第二色度坐标集合;
所述色度匹配模块设置为,获取分别来自第一色度坐标集合与第二色度坐标集合的距离最近的两个色度坐标,将所述距离最近的两个色度坐标中属于所述第一色度坐标集合的一个色度坐标作为第一色度坐标,且将所述距离最近的两个色度坐标中属于所述第二色度坐标集合的另一个色度坐标作为第二色度坐标;将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
本申请的其它特征和优点将在随后的说明书中阐述,并且,部分地从说明书中变得显而易见,或者通过实施本申请而了解。本申请的目的和其他优点可通过在说明书、权利要求书以及附图中所特别指出的结构来实现和获得。
附图概述
附图用来提供对本申请技术方案的进一步理解,并且构成说明书的一部分,与本申请的实施例一起用于解释本申请的技术方案,并不构成对本申请技术方案的限制。
图1为本申请一实施例提供的屏幕校准方法流程图;
图2为本申请一实施例提供的屏幕校准系统示意图;
图3为本申请一实施例提供的屏幕校准系统示意图;
图4为本申请一实施例提供的双屏终端示意图;
图5为本申请一实施例提供的屏幕校准装置框图。
具体实施方式
下文中将结合附图对本申请的实施例进行详细说明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互任意组合。
在附图的流程图示出的步骤可以在诸如一组计算机可执行指令的计算机系统中执行。并且,虽然在流程图中示出了逻辑顺序,但是在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤。
目前,市场上将多个显示屏幕拼接成一个大的屏幕进行显示的终端较少,通常通过人工肉眼判断两个或者多个显示屏显示的颜色色差是否较小,然后组合在一起。使用人工肉眼判断的方式有如下缺点,一个是主观性比较强,每个人肉眼观察能力不同,如果让色弱的人来判断就会出现大问题,一个是肉眼观察时间较长之后,人眼会出现疲劳,会出现判断能力下降的问题。
还有多屏幕终端或者通过显示屏拼接形成大的显示屏的终端,利用显示屏的gamma校准方案调整白平衡,设定一个白色的色度坐标值,所有的屏幕都校准到这个目标值附近,由于校准设备的精度或者校准到目标值后的偏差,有的在目标值的坐标,有的在目标值的右边,导致不同的屏幕之间的白平衡依然差距比较大。本申请中,利用液晶显示器(Liquid Crystal Display,LCD)集成电路(Integrated Circuit,IC)中色温寄存器参数或者电压寄存器参数的不同导致的色温不同进行校准。
实施例一
如图1所示,本申请一实施例提供一种屏幕校准方法,包括:步骤101、步骤102和步骤103。
在步骤101中,改变输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器的参数,采集不同参数下所述第一显示屏的色度坐标以获得第一色度坐标集合,采集不同参数下所述第二显示屏的色度坐标以获得第二色度坐标集合,且所述第一显示屏和第二显示屏显示同一单色图像。
在步骤102中,获取分别来自所述第一色度坐标集合与所述第二色度坐标集合的距离最近的两个色度坐标,将所述距离最近的两个色度坐标中属于所述第一色度坐标集合的一个色度坐标作为第一色度坐标,且将所述距离最近的两 个色度坐标中属于所述第二色度坐标集合的另一个色度坐标作为第二色度坐标。
在步骤103中,将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器;将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
其中,所述第一色度坐标对应的第一参数含义为:寄存器取第一参数时,采集到的色度坐标为第一色度坐标;所述第二色度坐标对应的第二参数含义为:寄存器取第二参数时,采集到的色度坐标为第二色度坐标。
本实施例提供的校准方法,无需肉眼,避免了不客观。另外,避免了相关技术中校准到目标值受精度影响的问题。
其中,步骤102中,对任意两个色度坐标(xa 1,yb 1)和(xb 2,yb 2),可以通过如下方式判断其距离:计算(xa 1-xb 1) 2+(ya 2-yb 2) 2。此处距离计算方式仅为示例,可以采用其他方式计算。
在一实施例中,所述预设寄存器为色温寄存器或者gamma参数对应的电压寄存器。
在一实施例中,所述采集不同参数下所述第一显示屏的色度坐标获得第一色度坐标集合包括:
采集所述第一显示屏所支持的参数范围内所有参数下所述第一显示屏的色度坐标获得所述第一色度坐标集合;比如,第一显示屏支持256个寄存器值,则将256个值分别输入色温寄存器,获得256个色度坐标组成的第一色度坐标集合,又比如,第一显示屏支持100个寄存器值,则将100个值分别输入电压寄存器,获得100个色度坐标组成的第一色度坐标集合。需要说明的是,也可以仅取其中的子集,比如,将128个值分别输入色温寄存器,获得128个色度坐标组成的第一色度坐标集合,又比如,将50个值分别输入电压寄存器,获得50个色度坐标组成的第一色度坐标集合。
所述采集不同参数下所述第二显示屏的色度坐标获得第二色度坐标集合包括:
采集所述第二显示屏所支持的参数范围内所有参数下所述第二显示屏的色度坐标获得所述第二色度坐标集合。比如,第一显示屏支持256个寄存器值,则将256个值分别输入色温寄存器,获得256个色度坐标组成的第一色度坐标集合,又比如,第一显示屏支持100个寄存器值,则将100个值分别输入电压寄存器,获得100个色度坐标组成的第一色度坐标集合。需要说明的是,也可 以仅取其中的子集,比如,将128个值分别输入色温寄存器,获得128个色度坐标组成的第一色度坐标集合,又比如,将50个值分别输入电压寄存器,获得50个色度坐标组成的第一色度坐标集合。
在一实施例中,所述同一单色图像为同一白色图像。在其他实施例中,也可以是其他颜色的单色图像,比如红色图像等。显示屏在纯白色画面时,两个屏幕之间的色差更容易被看出来,因此本实施例中,选择纯白色画面,校准两个显示屏幕在纯白色画面下的颜色,使两个屏幕显示的纯白色达到接近状态。
在一实施例中,所述将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器;将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器包括:
当所述第一色度坐标和所述第二色度坐标的距离小于第一预设阈值时,将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器;
或者,所述第一色度坐标包括第一横坐标和第一纵坐标,所述第二色度坐标包括第二横坐标和第二纵坐标,当所述第一横坐标和所述第二横坐标的距离小于第二预设阈值,以及所述第一纵坐标和所述第二纵坐标的距离小于第三预设阈值时,将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
在一实施例中,所述方法还包括,
当所述第一色度坐标和所述第二色度坐标的距离大于等于第一预设阈值时,输出所述第一显示屏和第二显示屏的色差不匹配的指示信息;
或者,所述第一色度坐标包括第一横坐标和第一纵坐标,所述第二色度坐标包括第二横坐标和第二纵坐标,当所述第一横坐标和所述第二横坐标的距离大于等于第二预设阈值,或者所述第一纵坐标和所述第二纵坐标的距离大于等于第三预设阈值时,输出所述第一显示屏和第二显示屏的色差不匹配的指示信息。该方法可以用来筛选两个显示屏作为双拼或多屏终端的显示屏。也可以用来评估双屏或多屏终端是否合格(色差是否满足要求)。所述第一预设阈值、第二预设阈值、第三预设阈值可以根据需要设定,比如,为0.005。
需要说明的是,所述第一显示屏和第二显示屏可以是双屏或多屏终端的两个显示屏,也可以是独立的两个显示屏。
与相关技术相比,本申请实施例通过对比两个显示屏的色度坐标,获取距 离最近的色度坐标,根据距离最近的色度坐标进行校准,降低了屏幕显示时的差异。该校准方法避免了肉眼的不客观,也避免了相关技术中校准到目标值受精度影响的问题。
实施例二
如图2所示,本申请一实施例提供一种屏幕校准系统,包括:色度采集设备201、色度调节模块202、色度匹配模块203,其中:
所述色度采集设备201设置为,接收到所述色度采集模块发送的指令后,采集第一显示屏的色度坐标发送给所述色度调节模块;采集第二显示屏的色度坐标发送给所述色度调节模块。
所述色度调节模块202设置为,依次将不同参数输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器,向所述第一显示屏和第二显示屏发送显示同一单色图像的指令,向所述色度采集设备发送采集色度坐标的指令,接收所述色度采集设备发送的第一显示屏的色度坐标和第二显示屏的色度坐标,获得不同参数下所述第一显示屏的色度坐标构成的第一色度坐标集合,以及,不同参数下所述第二显示屏的色度坐标构成的第二色度坐标集合。
所述色度匹配模块203设置为,获取分别来自第一色度坐标集合与第二色度坐标集合的距离最近最接近的两个色度坐标,将所述距离最近的两个色度坐标中属于所述第一色度坐标集合的一个色度坐标作为第一色度坐标,且将所述距离最近的两个色度坐标中属于所述第二色度坐标集合的另一个色度坐标作为第二色度坐标;将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
其中,色度采集设备201是采集显示屏色度坐标的设备,比如可以是柯尼卡生产的CA-310等设备,由于采集精度与亮度有关,因此,第一显示屏和第二显示屏进行显示时,可以用最大亮度进行显示。当然,本申请不限于此,也可以使用其他亮度进行显示。
在一实施例中,所述色度调节模块202依次将不同参数输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器包括:将所述第一显示屏支持的参数范围内所有参数依次输入所述第一显示屏的预设寄存器;将所述第二显示屏支持的参数范围内所有参数依次输入所述第二显示屏的预设寄存器。
在一实施例中,所述色度匹配模块203还设置为:
当所述第一色度坐标和所述第二色度坐标的距离大于等于第一预设阈值时,输出所述第一显示屏和第二显示屏的色差不匹配的指示信息;
或者,所述第一色度坐标包括第一横坐标和第一纵坐标,所述第二色度坐标包括第二横坐标和第二纵坐标,当所述第一色度坐标包括的第一横坐标和所述第二色度坐标第二横坐标的距离大于等于第二预设阈值,或者所述第一色度坐标包括的第一纵坐标和所述第二色度坐标第二纵坐标的距离大于等于第三预设阈值时,输出所述第一显示屏和第二显示屏的色差不匹配的指示信息。
下面通过应用实施例进一步说明本申请。
实施例三
LCD IC中的一个特定的寄存器即色温寄存器设置为调整LCD显示画面的色温,可以调整画面显示的颜色从暖(偏黄)到冷(偏蓝)。以某一个IC为例,此寄存器默认值为00(16进制),从00到7F(16进制)是从典型值调整到偏冷,从FF到80(16进制)是从典型值调整到偏暖。本实施例中利用色温寄存器来对显示屏进行校准。
以双屏幕终端为例,双屏幕终端具有两个屏幕,具有相同的规格参数,分别称为第一显示屏和第二显示屏。
分别将从00到7F,从FF到80这256个参数输入到第一显示屏的色温寄存器,测量第一显示屏在国际照明委员会(Commission Internationale de L'Eclairage,CIE)坐标系中的色度坐标值:(xa n,yb n),n从1到256。此过程中,第一显示屏显示一白色图像。
分别输入从00到7F,从FF到80这256个参数到第二显示屏的色温寄存器,测量第二显示屏的色度坐标值:(xb m,yb m),m从1到256。此过程中,第二显示屏显示与第一显示屏相同的一白色图像。
计算(xa n-xb m) 2+(ya n-yb m) 2,n从1到256,m从1到256,获得(xa n-xb m) 2+(ya n-yb m) 2为最小值时的n和m的值假设为n'和m',即查找距离最近的两个色度坐标,本实施例中为(xa n',yb n')和(xb m',yb m')。
判断|xa n'-xb m'|的值是否小于第二预设阈值(比如为0.005),判断|ya n'-yb m'|的值是否小于第三预设阈值(比如为0.005),若都小于,则显示屏色差可以接受,将(xa n',yb n')对应的参数写入第一显示屏的色温寄存器,且将(xb m',yb m')对应 的参数写入第二显示屏的色温寄存器。后续当第一显示屏进行显示时,调用该色温寄存器中的值,第二显示屏进行显示时,调用该色温寄存器中的值。在一实施例中,色温寄存器比如为84H寄存器,将n'和m'分别写入第一显示屏的84H寄存器和第二显示屏的84H寄存器,第一显示屏进行显示时,调用84H寄存器的值,第二显示屏进行显示时,调用84H寄存器的值。
如果|xa n'-xb m'|大于等于第二预设阈值,或者,|ya n'-yb m'|大于等于第三预设阈值,则输出所述第一显示屏和第二显示屏的色差不匹配的指示信息。
当然,也可以直接判断(xa n'-xb m') 2+(ya n'-yb m') 2是否小于第一预设阈值,如果小于,则显示屏色差可以接受,将(xa n',yb n')对应的参数写入第一显示屏的色温寄存器,且将(xb m',yb m')对应的参数写入第二显示屏的色温寄存器。如果(xa n'-xb m') 2+(ya n'-yb m') 2大于等于第一预设阈值,则输出所述第一显示屏和第二显示屏的色差不匹配的指示信息。该方法可以用于对显示屏进行配对,将色差满足需求的显示屏进行组合。
实施例四
GVDDP和GVDDN是调节显示屏Gamma参数的电压,由电压寄存器中的值控制,电压寄存器的每个值对应一个GVDDP和GVDDN值,改变电压寄存器的值,即可改变GVDDP和GVDDN值。GVDDP和GVDDN是一对电压,数值相同,分别是正电压和负电压。
本实施例中,GVDDP的电压设定在4V到5V之间变化,从小到大时,从4.01V,4.02V一直到5V,共计100组电压,显示屏显示的白色画面从偏蓝到偏黄变化。以某一款显示屏IC为例,97H寄存器对应GVDDP的电压,98H寄存器对应GVDDN的电压。
以双屏幕手机为例,双屏幕手机具有两个屏幕,具有相同的规格参数,分别是第一显示屏和第二显示屏。
97H寄存器的值为16进制,从D7(16进制)到74(16进制)共计有100(10进制)个值,对应显示白色画面从暖色调到冷色调;
98H寄存器的值为16进制,从D7(16进制)到74(16进制)共计有100(10进制)个值,对应显示白色画面从暖色调到冷色调;
97H和98H寄存器写相同的参数值。
改变电压寄存器(97H和98H寄存器)的值,使得GVDDN从4V变化到 5V,测量第一显示屏上显示的白色图像在CIE坐标系中的色度坐标值:(xa i,ya i),i从1到100。测量第二显示屏上显示的白色图像在CIE坐标系中的色度坐标值:(xb j,yb j),j从1到100。
计算(xa i-xb j) 2+(ya i-yb j) 2,i从1到100,j从1到100,获得(xa i-xb j) 2+(ya i-yb j) 2为最小值时的i和j的值分别为i'和j'。即查找距离最近的两个色度坐标,本实施例中为(xa i',yb i')和(xb j',yb j')。
判断|xa i'-xb j'|的值是否小于第二预设阈值(比如为0.005),判断|ya i'-yb j'|的值是否小于第三预设阈值(比如为0.005),若都小于,则显示屏色差可以接受,将(xa i',yb i')和(xb j',yb j')对应的参数分别写入第一显示屏的电压寄存器和第二显示屏的电压寄存器。后续当第一显示屏进行显示时,调用该电压寄存器中的值,第二显示屏进行显示时,调用该色温寄存器中的值。如果|xa i'-xb j'|大于等于第二预设阈值,|ya i'-yb j'|大于等于第三预设阈值,则输出所述第一显示屏和第二显示屏的色差不匹配的指示信息。
当然,也可以直接判断(xa i'-xb j') 2+(ya i'-yb j') 2是否小于第一预设阈值,如果小于,则显示屏色差可以接受,将n'和m'分别写入第一显示屏的色温寄存器和第二显示屏的色温寄存器。如果(xa i'-xb j') 2+(ya i'-yb j') 2大于等于第一预设阈值,则输出所述第一显示屏和第二显示屏的色差不匹配的指示信息。该方法可以用于对显示屏进行配对,将色差满足需求的显示屏进行组合,或者,用于判断双屏终端两个显示屏是否匹配。
实施例五
本实施例提供一种屏幕校准系统,如图3所示,包括双屏终端301、色度采集设备302、控制设备303(比如电脑等),所述控制设备303包括色度调节模块202和色度匹配模块203。需要说明的是,在另一实施例中,也可以没有控制设备303,色度调节模块202和色度匹配模块203直接设置在双屏终端301上。
如图4所示,所述双屏终端301具有两个相同尺寸和规格的显示屏,双屏终端展开后两个显示屏并排放置,分别是第一显示屏401和第二显示屏402,两个显示屏中间由转轴403连接,两个显示屏(第一显示屏401和第二显示屏402)通过旋转转轴403实现背靠背折叠和左右放置的展开。
所述色度采集设备302设置为,接收到所述色度采集模块发送的指令后,采集第一显示屏的色度坐标发送给控制设备303,例如发送给色度调节模块202; 采集第二显示屏的色度坐标发送给控制设备303,例如发送给色度调节模块202。
所述色度调节模块202设置为,依次将不同参数输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器,向所述第一显示屏和第二显示屏发送显示同一单色图像的指令,向所述色度采集设备发送采集色度坐标的指令,接收所述色度采集设备发送的第一显示屏的色度坐标和第二显示屏的色度坐标,获得不同参数下所述第一显示屏的色度坐标构成的第一色度坐标集合,以及,不同参数下所述第二显示屏的色度坐标构成的第二色度坐标集合;比如,将256个参数输入色温寄存器,获得256个色度坐标组成的第一色度坐标集合和256个色度坐标组成的第二色度坐标集合,或者将100个参数输入电压寄存器,获得100个色度坐标组成的第一色度坐标结合和第二色度坐标集合。
所述色度匹配模块203设置为,获取第一色度坐标集合中与第二色度坐标集合中最接近的色度坐标,分别为第一色度坐标和第二色度坐标;将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。例如,将第一参数和第二参数发送给双屏终端301,所述双屏终端301将第一参数和第二参数分别写入对应的显示屏IC寄存器中,第一显示屏和第二显示屏在显示时执行此参数。
如图5所示,本申请一实施例提供一种屏幕校准装置50,包括存储器510和处理器520,所述存储器510存储有程序,所述程序在被所述处理器520读取执行时,实现任一实施例所述的屏幕校准方法。
本申请一实施例提供一种计算机可读存储介质,所述计算机可读存储介质存储有一个或者多个程序,所述一个或者多个程序可被一个或者多个处理器执行,以实现任一实施例所述的屏幕校准方法。
所述计算机可读存储介质包括:U盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。

Claims (10)

  1. 一种屏幕校准方法,包括:
    改变输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器的参数,采集不同参数下所述第一显示屏的色度坐标以获得第一色度坐标集合,采集不同参数下所述第二显示屏的色度坐标以获得第二色度坐标集合,且所述第一显示屏和第二显示屏显示同一单色图像;
    获取分别来自所述第一色度坐标集合与所述第二色度坐标集合的距离最近的两个色度坐标,将所述距离最近的两个色度坐标中属于所述第一色度坐标集合的一个色度坐标作为第一色度坐标,且将所述距离最近的两个色度坐标中属于所述第二色度坐标集合的另一个色度坐标作为第二色度坐标;
    将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器;将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
  2. 如权利要求1所述的方法,其中,所述预设寄存器为色温寄存器或者gamma参数对应的电压寄存器。
  3. 如权利要求1所述的方法,其中,
    所述采集不同参数下所述第一显示屏的色度坐标以获得第一色度坐标集合包括:
    采集所述第一显示屏所支持的参数范围内所有参数下所述第一显示屏的色度坐标以获得所述第一色度坐标集合;
    所述采集不同参数下所述第二显示屏的色度坐标以获得第二色度坐标集合包括:
    采集所述第二显示屏所支持的参数范围内所有参数下所述第二显示屏的色度坐标以获得所述第二色度坐标集合。
  4. 如权利要求1所述的方法,其中,所述同一单色图像为同一白色图像。
  5. 如权利要求1至4任一项所述的方法,其中,所述将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器;将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器包括:
    基于确定所述第一色度坐标和所述第二色度坐标的距离小于第一预设阈值,将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,且将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器;
    或者,所述第一色度坐标包括第一横坐标和第一纵坐标,所述第二色度坐标包括第二横坐标和第二纵坐标,基于确定所述第一横坐标和所述第二横坐标 的距离小于第二预设阈值,以及所述第一纵坐标和所述第二纵坐标的距离小于第三预设阈值,将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,且将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
  6. 如权利要求1至4任一项所述的方法,还包括:
    基于确定所述第一色度坐标和所述第二色度坐标的距离大于等于第一预设阈值,输出所述第一显示屏和第二显示屏不匹配的指示信息;
    或者,所述第一色度坐标包括第一横坐标和第一纵坐标,所述第二色度坐标包括第二横坐标和第二纵坐标,基于确定所述第一横坐标和所述第二横坐标的距离大于等于第二预设阈值,或者所述第一纵坐标和所述第二纵坐标的距离大于等于第三预设阈值,输出所述第一显示屏和第二显示屏不匹配的指示信息。
  7. 一种屏幕校准装置,包括存储器和处理器,所述存储器存储有程序,所述程序在被所述处理器读取执行时,实现如权利要求1至6任一项所述的屏幕校准方法。
  8. 一种屏幕校准系统,包括:色度采集设备、色度调节模块、色度匹配模块,其中:
    所述色度采集设备设置为,接收到所述色度采集模块发送的指令后,采集第一显示屏的色度坐标并发送给所述色度调节模块;采集第二显示屏的色度坐标并发送给所述色度调节模块;
    所述色度调节模块设置为,依次将不同参数输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器,向所述第一显示屏和第二显示屏发送显示同一单色图像的指令,向所述色度采集设备发送采集色度坐标的指令,接收所述色度采集设备发送的第一显示屏的色度坐标和第二显示屏的色度坐标,获得不同参数下所述第一显示屏的色度坐标构成的第一色度坐标集合,以及,不同参数下所述第二显示屏的色度坐标构成的第二色度坐标集合;
    所述色度匹配模块设置为,获取分别来自第一色度坐标集合与第二色度坐标集合的距离最近的两个色度坐标,将所述距离最近的两个色度坐标中属于所述第一色度坐标集合的一个色度坐标作为第一色度坐标,且将所述距离最近的两个色度坐标中属于所述第二色度坐标集合的另一个色度坐标作为第二色度坐标;将所述第一色度坐标对应的第一参数存入所述第一显示屏的预设寄存器,将所述第二色度坐标对应的第二参数存入所述第二显示屏的预设寄存器。
  9. 如权利要求8所述的系统,所述色度获取模块设置为依次将不同参数输入至所述第一显示屏的预设寄存器和所述第二显示屏的预设寄存器包括:将所述第一显示屏支持的参数范围内所有参数依次输入所述第一显示屏的预设寄存器;将所述第二显示屏支持的参数范围内所有参数依次输入所述第二显示屏的预设寄存器。
  10. 如权利要求8或9所述的屏幕校准系统,其中,所述色度匹配模块还设置为:
    基于确定所述第一色度坐标和所述第二色度坐标的距离大于等于第一预设阈值,输出所述第一显示屏和第二显示屏不匹配的指示信息;
    或者,基于确定所述第一色度坐标包括的第一横坐标和所述第二色度坐标包括的第二横坐标的距离大于等于第二预设阈值,或者所述第一色度坐标包括的第一纵坐标和所述第二色度坐标包括的第二纵坐标的距离大于等于第三预设阈值,输出所述第一显示屏和第二显示屏不匹配的指示信息。
PCT/CN2019/076794 2018-03-30 2019-03-04 屏幕校准方法、装置及系统 WO2019184656A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
US16/976,754 US11417292B2 (en) 2018-03-30 2019-03-04 Screen calibration method, apparatus and system
EP19777468.0A EP3748625A4 (en) 2018-03-30 2019-03-04 METHOD, DEVICE AND SYSTEM FOR CALIBRATING A SCREEN

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201810286991.2A CN108648719B (zh) 2018-03-30 2018-03-30 一种屏幕校准方法、装置及系统
CN201810286991.2 2018-03-30

Publications (1)

Publication Number Publication Date
WO2019184656A1 true WO2019184656A1 (zh) 2019-10-03

Family

ID=63745475

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2019/076794 WO2019184656A1 (zh) 2018-03-30 2019-03-04 屏幕校准方法、装置及系统

Country Status (4)

Country Link
US (1) US11417292B2 (zh)
EP (1) EP3748625A4 (zh)
CN (1) CN108648719B (zh)
WO (1) WO2019184656A1 (zh)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108648719B (zh) * 2018-03-30 2022-03-15 中兴通讯股份有限公司 一种屏幕校准方法、装置及系统
CN109243378A (zh) * 2018-10-25 2019-01-18 厦门美图移动科技有限公司 一种亮度校准方法、移动终端及存储介质
CN109461409B (zh) * 2018-10-31 2021-01-26 北京小米移动软件有限公司 屏幕显示方法及装置
CN111656432B (zh) * 2019-01-04 2023-04-18 京东方科技集团股份有限公司 用于显示装置的柔性显示面板和显示装置
CN110400548B (zh) * 2019-07-05 2021-02-02 深圳市华星光电技术有限公司 显示器的白平衡调整系统及其调整方法
CN112179494B (zh) * 2020-09-30 2022-10-21 宜昌南玻显示器件有限公司 触控显示系统中触摸屏所需颜色计算方法

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040032534A1 (en) * 2002-08-19 2004-02-19 Nec Viewtechnology, Ltd. Dynamic white balance control circuit and multi-screen display device
CN102097082A (zh) * 2010-12-06 2011-06-15 广东威创视讯科技股份有限公司 一种多显示单元拼接显示系统的颜色调整方法及其系统
CN104661006A (zh) * 2013-11-20 2015-05-27 三菱电机株式会社 多画面显示装置
CN105161057A (zh) * 2015-07-01 2015-12-16 深圳天珑无线科技有限公司 一种自动校准移动终端显示屏色坐标的方法及系统
CN105336286A (zh) * 2014-07-29 2016-02-17 杭州海康威视数字技术股份有限公司 拼接屏色彩的调节方法及装置
CN105609027A (zh) * 2016-03-10 2016-05-25 杭州虹视科技有限公司 一种消除色温差的激光大屏幕显示装置
CN108648719A (zh) * 2018-03-30 2018-10-12 中兴通讯股份有限公司 一种屏幕校准方法、装置及系统

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI339384B (en) * 2006-01-13 2011-03-21 Realtek Semiconductor Corp Color temperature calibration method and related device
CN100589583C (zh) * 2007-06-05 2010-02-10 广东威创视讯科技股份有限公司 一种多屏幕拼墙校正方法
CN101894541A (zh) * 2009-12-31 2010-11-24 四川虹欧显示器件有限公司 校正显示器件色温的方法与系统
WO2011126574A1 (en) * 2010-04-09 2011-10-13 William Howard Speegle Methods and systems for controlling devices via power lines
JP2014060545A (ja) * 2012-09-14 2014-04-03 Sharp Corp マルチディスプレイのキャリブレーションシステム及び記録媒体
CN103077691B (zh) * 2013-01-16 2016-03-30 深圳市华星光电技术有限公司 一种液晶拼接屏及其校正方法和一种液晶显示装置
JP6416576B2 (ja) * 2014-10-03 2018-10-31 Eizo株式会社 表示装置の色温度設定方法、表示システム、表示装置の色温度設定プログラム、表示装置の色温度決定方法
CN104766574B (zh) * 2015-03-24 2019-02-12 小米科技有限责任公司 色温调节方法及装置
JP2016208327A (ja) * 2015-04-24 2016-12-08 シャープ株式会社 表示装置、ホワイトバランス調整方法およびテレビジョン装置
CN104882098B (zh) * 2015-06-08 2018-07-10 广东威创视讯科技股份有限公司 基于led拼接显示屏的图像校正方法及图像传感器
CN108257572B (zh) * 2018-03-05 2019-07-30 中兴通讯股份有限公司 一种色坐标校准方法、装置和系统

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040032534A1 (en) * 2002-08-19 2004-02-19 Nec Viewtechnology, Ltd. Dynamic white balance control circuit and multi-screen display device
CN102097082A (zh) * 2010-12-06 2011-06-15 广东威创视讯科技股份有限公司 一种多显示单元拼接显示系统的颜色调整方法及其系统
CN104661006A (zh) * 2013-11-20 2015-05-27 三菱电机株式会社 多画面显示装置
CN105336286A (zh) * 2014-07-29 2016-02-17 杭州海康威视数字技术股份有限公司 拼接屏色彩的调节方法及装置
CN105161057A (zh) * 2015-07-01 2015-12-16 深圳天珑无线科技有限公司 一种自动校准移动终端显示屏色坐标的方法及系统
CN105609027A (zh) * 2016-03-10 2016-05-25 杭州虹视科技有限公司 一种消除色温差的激光大屏幕显示装置
CN108648719A (zh) * 2018-03-30 2018-10-12 中兴通讯股份有限公司 一种屏幕校准方法、装置及系统

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3748625A4

Also Published As

Publication number Publication date
US11417292B2 (en) 2022-08-16
EP3748625A1 (en) 2020-12-09
CN108648719B (zh) 2022-03-15
US20210005159A1 (en) 2021-01-07
CN108648719A (zh) 2018-10-12
EP3748625A4 (en) 2021-10-27

Similar Documents

Publication Publication Date Title
WO2019184656A1 (zh) 屏幕校准方法、装置及系统
CN104981077B (zh) 色温控制方法、色温控制装置和电子设备
TWI388220B (zh) 可降低色偏之影像處理方法
WO2020093495A1 (zh) 显示面板的伽马值调试方法及装置
CN105259687A (zh) 一种液晶显示屏的画面一致性调节方法及系统
US20080180375A1 (en) Method for establishing gamma correction table for liquid crystal display
US20090167782A1 (en) Correction of color differences in multi-screen displays
WO2016052309A1 (ja) 映像処理装置、表示装置、配置判定装置、配置判定方法、記録媒体
CN109979401A (zh) 驱动方法、驱动装置、显示设备和计算机可读介质
WO2019119587A1 (zh) 显示装置的驱动方法及显示装置
US20080079746A1 (en) Method and device of obtaining a color temperature point
CN103067743A (zh) 液晶电视的快速调整系统及方法
WO2019119588A1 (zh) 显示面板的背光调节方法、背光调节装置及显示装置
CN106060490B (zh) 图像生成装置、评价系统和图像生成方法
US20140218411A1 (en) Method and System for Improving a Color Shift of Viewing Angle of Skin Color of an LCD Screen
JPS63282883A (ja) 色覚変換装置
US20200388243A1 (en) Multi-screen color correction method and electronic device using the same
CN108062937B (zh) 一种显示装置的驱动方法及显示装置
CN106409265A (zh) 调整显示器色差的方法
CN107274857A (zh) 调整显示器的输出图像的方法及显示系统
JP6378031B2 (ja) 配置判定装置、配置判定方法、プログラム、記録媒体
TWI541785B (zh) Lcd白平衡即時切換選擇之最佳化方法與系統
JP2010197656A (ja) 映像表示装置
TWI751587B (zh) 顯示影像校正方法以及顯示影像校正裝置
US20180268779A1 (en) Image display apparatus, image display method, and storage medium

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19777468

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 2019777468

Country of ref document: EP

Effective date: 20200901