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WO2018196119A1 - Oled显示装置的亮度补偿系统及亮度补偿方法 - Google Patents

Oled显示装置的亮度补偿系统及亮度补偿方法 Download PDF

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Publication number
WO2018196119A1
WO2018196119A1 PCT/CN2017/088166 CN2017088166W WO2018196119A1 WO 2018196119 A1 WO2018196119 A1 WO 2018196119A1 CN 2017088166 W CN2017088166 W CN 2017088166W WO 2018196119 A1 WO2018196119 A1 WO 2018196119A1
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Prior art keywords
brightness
pixel
aging
oled display
image
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Ceased
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PCT/CN2017/088166
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English (en)
French (fr)
Inventor
黄泰钧
曾玉超
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Shenzhen China Star Optoelectronics Semiconductor Display Technology Co Ltd
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Shenzhen China Star Optoelectronics Semiconductor Display Technology Co Ltd
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Priority to EP17906923.2A priority Critical patent/EP3629319B1/en
Priority to JP2019557467A priority patent/JP6843488B2/ja
Priority to US15/542,655 priority patent/US10515583B2/en
Priority to KR1020197034570A priority patent/KR102256279B1/ko
Publication of WO2018196119A1 publication Critical patent/WO2018196119A1/zh
Anticipated expiration legal-status Critical
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    • 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
    • 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
    • G09G3/22Control 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 using controlled light sources
    • G09G3/30Control 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 using controlled light sources using electroluminescent panels
    • G09G3/32Control 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 using controlled light sources using electroluminescent panels semiconductive, e.g. using light-emitting diodes [LED]
    • G09G3/3208Control 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 using controlled light sources using electroluminescent panels semiconductive, e.g. using light-emitting diodes [LED] organic, e.g. using organic light-emitting diodes [OLED]
    • 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
    • G09G2320/02Improving the quality of display appearance
    • G09G2320/0233Improving the luminance or brightness uniformity across the screen
    • 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
    • G09G2320/02Improving the quality of display appearance
    • G09G2320/0271Adjustment of the gradation levels within the range of the gradation scale, e.g. by redistribution or clipping
    • 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
    • G09G2320/02Improving the quality of display appearance
    • G09G2320/029Improving the quality of display appearance by monitoring one or more pixels in the display panel, e.g. by monitoring a fixed reference pixel
    • 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
    • G09G2320/04Maintaining the quality of display appearance
    • G09G2320/043Preventing or counteracting the effects of ageing
    • G09G2320/045Compensation of drifts in the characteristics of light emitting or modulating elements
    • 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
    • G09G2320/0626Adjustment of display parameters for control of overall brightness
    • 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
    • G09G2320/066Adjustment of display parameters for control of contrast
    • 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
    • G09G2320/0673Adjustment of display parameters for control of gamma adjustment, e.g. selecting another gamma curve
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2360/00Aspects of the architecture of display systems
    • G09G2360/16Calculation or use of calculated indices related to luminance levels in display data

Definitions

  • OLED Organic Light Emitting Display
  • OLED has self-illumination, low driving voltage, high luminous efficiency, short response time, high definition and contrast ratio, near 180° viewing angle, wide temperature range, and flexible display.
  • a large-area full-color display and many other advantages have been recognized by the industry as the most promising display device.
  • the organic light emitting diode display device is a current driving device.
  • the organic light emitting diode emits light, and the light emitting brightness is determined by the current flowing through the organic light emitting diode itself.
  • Most existing integrated circuits (ICs) only transmit voltage signals, so the pixel driving circuit of the organic light emitting diode display device needs to complete the task of converting the voltage signal into a current signal.
  • the pixel driving circuit of a typical OLED display device is usually a 2T1C structure composed of a switching thin film transistor, a driving thin film transistor and a storage capacitor. The switching transistor is controlled by a scanning signal, and the data signal is written and driven via a switching thin film transistor.
  • the OLED display device is usually further provided with a brightness compensation system.
  • the brightness compensation system of the existing OLED display device includes: an image pre-processing unit 100 and the image pre-processing unit 100.
  • An aging compensation unit 200 electrically connected to the aging parameter detecting unit 300 electrically connected to the aging compensation unit 200, and an OLED display panel 400 electrically connected to the aging compensation unit 200 and the aging parameter detecting unit 300
  • the working process is: detecting the aging parameter of the OLED display panel 400 (ie, the current threshold voltage of the driving thin film transistor) by the aging parameter detecting unit 300, and improving the display by the aging compensation unit 200 according to the aging parameter of the OLED display panel 400.
  • the pixel voltage of the image to compensate for the brightness of the OLED display panel 400, but as time accumulates, the aging parameters will become larger and larger, and the pixel voltage that the hardware system can provide is limited and cannot be increased indefinitely.
  • the pixel voltage reaches the upper limit, and the aging parameter continues to increase, the brightness of the OLED display panel 400 becomes smaller and smaller. This leads to a worse user experience and affects the competitiveness of the product.
  • An object of the present invention is to provide a brightness compensation system for an OLED display device, which can prevent the brightness of the OLED display device from being lowered due to aging of the OLED display device, ensure display quality of the OLED display device, and improve user experience and product competitiveness.
  • the present invention provides a brightness compensation system for an OLED display device, comprising: an image pre-processing unit, an image contrast control unit electrically connected to the image pre-processing unit, and the image contrast control unit An aging compensation unit that is electrically connected, an aging parameter detecting unit electrically connected to the aging compensation unit and the image contrast control unit, and an OLED display panel electrically connected to the aging compensation unit and the aging parameter detecting unit ;
  • a plurality of pixels are disposed in the OLED display panel
  • the image pre-processing unit is configured to provide display data of each pixel of an image to be displayed to the image contrast control unit;
  • the aging parameter detecting unit is configured to detect an aging parameter of the OLED display panel, and provide the image contrast control unit and the aging compensation unit;
  • the image contrast control unit is configured to adjust display data of each pixel of the image to be displayed according to the aging parameter of the OLED display panel to improve the contrast of the image to be displayed, and provide display data of each pixel after the contrast is improved to the aging compensation. unit;
  • the aging compensation unit is configured to adjust display data of each pixel after the contrast enhancement according to the aging parameter of the OLED display panel to perform aging compensation, and provide display data of each pixel after the aging compensation to the OLED display panel. display.
  • the aging parameter is an average value of threshold voltages of driving thin film transistors of the pixel driving circuit in each pixel at the current time, and the display data of each pixel is a brightness value of each pixel.
  • the preset brightness threshold is calculated as:
  • AveY is the geometric average brightness of the picture to be displayed
  • n is the total number of pixels in the OLED display panel
  • Y i is the brightness value of the ith pixel.
  • the preset brightness enhancement formula is:
  • the preset brightness reduction formula is:
  • the invention also provides a brightness compensation method for an OLED display device, comprising the following steps:
  • Step 4 The image contrast control unit adjusts display data of each pixel of the image to be displayed according to the aging parameter of the OLED display panel, so as to improve the contrast of the image to be displayed, and provide the display data of each pixel after the contrast is improved to the aging. Compensation unit
  • Step 5 The aging compensation unit adjusts display data of each pixel after the contrast enhancement according to the aging parameter of the OLED display panel to perform aging compensation, and provides display data of each pixel after aging compensation to the OLED display panel. Display.
  • the aging parameter of the OLED display panel detected in the step 3 is an average value of threshold voltages of the driving thin film transistors of the pixel driving circuit in each pixel at the current time, and the display data of each pixel provided in the step 2 is the brightness value of each pixel. .
  • the preset brightness threshold is calculated as:
  • the preset brightness enhancement formula is:
  • the invention also provides a brightness compensation system for an OLED display device, comprising: an image preprocessing unit, an image contrast control unit electrically connected to the image preprocessing unit, and an aging compensation electrically connected to the image contrast control unit An aging parameter detecting unit electrically connected to the aging compensation unit and the image contrast control unit, and an OLED display panel electrically connected to the aging compensation unit and the aging parameter detecting unit;
  • the image pre-processing unit is configured to provide display data of each pixel of an image to be displayed to the image contrast control unit;
  • the aging parameter detecting unit is configured to detect an aging parameter of the OLED display panel, and provide the image contrast control unit and the aging compensation unit;
  • the image contrast control unit is configured to adjust display data of each pixel of the image to be displayed according to an aging parameter of the OLED display panel to improve the contrast of the image to be displayed, and The display data of each pixel after the contrast is improved is supplied to the aging compensation unit;
  • the aging compensation unit is configured to adjust display data of each pixel after the contrast enhancement according to the aging parameter of the OLED display panel to perform aging compensation, and provide display data of each pixel after the aging compensation to the OLED display panel. display;
  • the present invention provides a brightness compensation system for an OLED display device, the system comprising: an image pre-processing unit, an image contrast control unit electrically connected to the image pre-processing unit, and the image contrast
  • An aging compensation unit electrically connected to the control unit, an aging parameter detecting unit electrically connected to the aging compensation unit and the image contrast control unit, and an aging compensation unit and an aging parameter detecting unit are electrically connected
  • the OLED display panel improves the contrast of the image to be displayed according to the aging parameter by the image contrast control unit before aging compensation, and then performs aging compensation and display on the image to be displayed after the contrast is improved, thereby avoiding the darkness of the OLED display device.
  • the OLED display panel 40 is provided with a plurality of pixels. Generally, the plurality of pixel arrays are arranged.
  • the image pre-processing unit 10 is for supplying the image contrast control unit 50 with display data of respective pixels of an image to be displayed.
  • the display data of each pixel refers to the luminance value of each pixel.
  • the aging parameter detecting unit 30 is configured to detect an aging parameter of the OLED display panel 40 and provide the image contrast control unit 50 and the aging compensation unit 20.
  • the aging parameter of the OLED display panel 40 refers to the average value of the threshold voltages of the driving thin film transistors in the pixel driving circuits of the respective pixels.
  • the luminance value of each pixel input to the aging compensation unit 20 is equal to the luminance value output by the image pre-processing unit 10, and FIG. 3
  • the solid line in the middle shows that after the contrast is increased, the luminance value of the higher pixel output by the image pre-processing unit 10 is higher when input to the aging compensation unit 20, and the luminance value of the lower pixel output by the image pre-processing unit 10 is higher.
  • the input to the aging compensation unit 20 is lower, that is, the image contrast control unit 50 enhances the contrast of the image to be displayed by making the originally brighter pixels brighter and the darker pixels darker.
  • the brightness threshold is calculated according to the brightness value of each pixel and the preset brightness threshold calculation formula, and then the brightness value of each pixel is compared with the brightness threshold, when the image is When the brightness value of the pixel is greater than the brightness threshold, the brightness value of the pixel is raised according to the aging parameter of the pixel and the preset brightness enhancement formula. When the brightness value of the pixel is less than or equal to the brightness threshold, the pixel is determined according to the pixel. And a preset brightness reduction formula reduces the brightness value of the pixel.
  • the preset brightness threshold is calculated as:
  • AveY is the geometric average brightness of the picture to be displayed
  • n is the total number of pixels in the OLED display panel 40
  • Y i is the brightness value of the ith pixel.
  • the preset brightness enhancement formula is:
  • the preset brightness reduction formula is:
  • Vth is the threshold voltage of the driving thin film transistor in the preset OLED display panel 40
  • the reference value, Vth is the aging parameter detected by the aging parameter detecting unit 30.
  • the reference value of the threshold voltage of the driving thin film transistor in the preset OLED display panel 40 is generally an average value of the threshold voltages of the driving thin film transistors in the respective pixels of the OLED display panel 40 before leaving the factory.
  • the aging compensation unit 20 is configured to adjust display data of each pixel after the contrast enhancement according to the aging parameter of the OLED display panel 40 to perform aging compensation, and provide display data of each pixel after aging compensation to the OLED display.
  • the panel 40 performs display.
  • the brightness of the OLED display device can be prevented from being lowered due to aging of the OLED display device, so that the user does not suffer from the aging of the OLED display device during viewing. It feels that the picture is darkened, ensuring the display quality of the OLED display device, improving the user experience and product competitiveness.
  • the present invention further provides a brightness compensation method for an OLED display device, including the following steps:
  • Step 1 please refer to FIG. 2, a brightness compensation system for an OLED display device, including: an image pre-processing unit 10, and an image contrast control electrically connected to the image pre-processing unit 10 a unit 50, an aging compensation unit 20 electrically connected to the image contrast control unit 50, an aging parameter detecting unit 30 electrically connected to the aging compensation unit 20 and the image contrast control unit 50, and the aging
  • the OLED display panel 40 is electrically connected to both the compensation unit 20 and the aging parameter detecting unit 30.
  • Step 2 The image pre-processing unit 10 supplies the image contrast control unit 50 with display data of respective pixels of an image to be displayed.
  • the display data of each pixel provided in the step 2 is a brightness value of each pixel.
  • Step 3 The aging parameter detecting unit 30 detects the aging parameter of the OLED display panel 40 and provides it to the image contrast control unit 50 and the aging compensation unit 20.
  • the aging parameter of the OLED display panel 40 detected in the step 3 is the threshold voltage of the driving thin film transistor of the pixel driving circuit of each pixel.
  • Step 4 The image contrast control unit 50 adjusts the display data of each pixel of the image to be displayed according to the aging parameter of the OLED display panel 40 to improve the contrast of the image to be displayed, and provides the display data of each pixel after the contrast is improved.
  • the aging compensation unit 20 is given.
  • the luminance value of each pixel input to the aging compensation unit 20 is equal to the luminance value output by the image pre-processing unit 10, and FIG. 3
  • the solid line in the middle shows that after the contrast is increased, the luminance value of the higher pixel output by the image pre-processing unit 10 is higher when input to the aging compensation unit 20, and the luminance value of the lower pixel output by the image pre-processing unit 10 is higher.
  • the image contrast control unit 50 enhances the image to be displayed by making the originally brighter pixels brighter and the darker pixels are darker. Contrast.
  • the brightness threshold is calculated according to the brightness value of each pixel and the preset brightness threshold calculation formula, and the brightness value of each pixel is compared with the brightness threshold, when the brightness value of the pixel is greater than the brightness threshold. And increasing the brightness value of the pixel according to the aging parameter of the pixel and the preset brightness enhancement formula. When the brightness value of the pixel is less than or equal to the brightness threshold, the method reduces the brightness according to the pixel and the preset brightness reduction formula. The brightness value of the pixel.
  • the preset brightness threshold is calculated as:
  • AveY is the geometric average brightness of the picture to be displayed
  • n is the total number of pixels in the OLED display panel 40
  • Y i is the brightness value of the ith pixel.
  • the preset brightness enhancement formula is:
  • the preset brightness reduction formula is:
  • Vth is the threshold voltage of the driving thin film transistor in the preset OLED display panel 40
  • the reference value, Vth is the aging parameter detected by the aging parameter detecting unit 30.
  • the reference value of the threshold voltage of the driving thin film transistor in the preset OLED display panel 40 is generally an average value of the threshold voltages of the driving thin film transistors in the respective pixels of the OLED display panel 40 before leaving the factory.
  • Step 5 The aging compensation unit 20 adjusts the display data of each pixel after the contrast enhancement according to the aging parameter of the OLED display panel 40 to perform aging compensation, and provides display data of each pixel after the aging compensation to the OLED.
  • the display panel 40 performs display.
  • the brightness of the OLED display device can be prevented from being lowered due to aging of the OLED display device, so that the user does not suffer from the aging of the OLED display device during viewing. It feels that the picture is darkened, ensuring the display quality of the OLED display device, improving the user experience and product competitiveness.
  • the present invention provides a brightness compensation system for an OLED display device, the system comprising: an image pre-processing unit, an image contrast control unit electrically connected to the image pre-processing unit, and the image contrast control An aging compensation unit electrically connected to the unit, an aging parameter detecting unit electrically connected to the aging compensation unit and the image contrast control unit, and an OLED electrically connected to the aging compensation unit and the aging parameter detecting unit
  • the display panel improves the contrast of the image to be displayed according to the aging parameter by the image contrast control unit before aging compensation, and then performs aging compensation and display on the image to be displayed after the contrast is improved, thereby avoiding the brightness of the OLED display device due to OLED
  • the aging of the display device is reduced, the display quality of the OLED display device is ensured, and the user experience and product competitiveness are improved.
  • the invention also provides a brightness compensation method for an OLED display device, which can prevent the brightness of the OLED display device from being lowered due to aging of the OLED display

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Computer Hardware Design (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Control Of Indicators Other Than Cathode Ray Tubes (AREA)
  • Electroluminescent Light Sources (AREA)
  • Control Of El Displays (AREA)

Abstract

一种OLED显示装置的亮度补偿系统及亮度补偿方法。该系统包括:图像预处理单元(10)、与所述图像预处理单元(10)电性连接的图像对比度控制单元(50)、与所述图像对比度控制单元(50)电性连接的老化补偿单元(20)、与所述老化补偿单元(20)以及图像对比度控制单元(50)均电性连接的老化参数侦测单元(30)、以及与所述老化补偿单元(20)和老化参数侦测单元(30)均电性连接的OLED显示面板(40),在老化补偿之前先通过图像对比度控制单元(50)根据老化参数提高待显示图像的对比度,而后再对对比度提高后的待显示图像进行老化补偿并进行显示,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。

Description

OLED显示装置的亮度补偿系统及亮度补偿方法 技术领域
本发明涉及显示技术领域,尤其涉及一种OLED显示装置的亮度补偿系统及亮度补偿方法。
背景技术
有机发光二极管显示装置(Organic Light Emitting Display,OLED)具有自发光、驱动电压低、发光效率高、响应时间短、清晰度与对比度高、近180°视角、使用温度范围宽,可实现柔性显示与大面积全色显示等诸多优点,被业界公认为是最有发展潜力的显示装置。
有机发光二极管显示装置是电流驱动器件,当有电流流过有机发光二极管时,有机发光二极管发光,且发光亮度由流过有机发光二极管自身的电流决定。大部分已有的集成电路(Integrated Circuit,IC)都只传输电压信号,故有机发光二极管显示装置的像素驱动电路需要完成将电压信号转变为电流信号的任务。典型的有机发光二极管显示装置的像素驱动电路通常为由一个开关薄膜晶体管、一个驱动薄膜晶体管和一个存储电容构成的2T1C结构,通过扫描信号控制开关薄膜晶体管打开,数据信号经由开关薄膜晶体管写入驱动薄膜晶体管的栅极控制驱动薄膜晶体管打开,有机发光二极管发光,随着使用时间的增强,驱动薄膜晶体管和有机发光二极管均会出现老化,导致驱动薄膜晶体管的阈值电压发生漂移,有机发光二极管的亮度逐渐衰减,有机发光二极管显示装置的亮度越来越低。
因此,为了保证显示质量,OLED显示装置通常还设有亮度补偿系统,如图1所示,现有的OLED显示装置的亮度补偿系统包括:图像预处理单元100、与所述图像预处理单元100电性连接的老化补偿单元200、与所述老化补偿单元200电性连接的老化参数侦测单元300、与所述老化补偿单元200和老化参数侦测单元300均电性连接的OLED显示面板400,其工作过程为:通过老化参数侦测单元300侦测OLED显示面板400的老化参数(即驱动薄膜晶体管当前的阈值电压),并通过老化补偿单元200根据OLED显示面板400的老化参数提升需要显示的图像的像素电压,以补偿OLED显示面板400的亮度,但随着时间的积累,老化参数会变得越来越大,而硬件系统能够提供的像素电压是有限的,不能无限增大,当像素电压达到上限,而老化参数继续增大时,OLED显示面板400的亮度就会越来越小, 导致用户体验变差,影响产品的竞争力。
发明内容
本发明的目的在于提供一种OLED显示装置的亮度补偿系统,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。
本发明的目的还在于提供一种OLED显示装置的亮度补偿方法,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。
为实现上述目的,本发明提供了一种OLED显示装置的亮度补偿系统,包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板;
所述OLED显示面板中设有多个像素;
所述图像预处理单元用于向图像对比度控制单元提供待显示图像的各个像素的显示数据;
所述老化参数侦测单元用于侦测所述OLED显示面板的老化参数,并提供给图像对比度控制单元和老化补偿单元;
所述图像对比度控制单元用于根据OLED显示面板的老化参数相应调整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将对比度提升之后的各个像素的显示数据提供给老化补偿单元;
所述老化补偿单元用于根据所述OLED显示面板的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板进行显示。
所述老化参数为当前时刻各个像素中像素驱动电路的驱动薄膜晶体管的阈值电压的平均值,所述各个像素的显示数据为各个像素的亮度值。
所述图像对比度控制单元先根据各个像素的亮度值及预设的亮度阈值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像素的亮度值大于该亮度阈值时,则根据所述老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据所述老化参数以及预设的亮度降低公式降低该像素的亮度值。
所述预设的亮度阈值计算公式为:
Figure PCTCN2017088166-appb-000001
其中,M为亮度阈值,AveY为待显示画面的几何平均亮度,n为OLED显示面板中的像素总数,Yi为第i个像素的亮度值。
所述预设的亮度提升公式为:
Figure PCTCN2017088166-appb-000002
所述预设的亮度降低公式为:
Figure PCTCN2017088166-appb-000003
其中,
Figure PCTCN2017088166-appb-000004
Y’i为对比度提升之后的第i个像素的亮度值,Vmax为OLED显示面板中的像素能够获得的最大电压值,Vthini为预设的OLED显示面板中驱动薄膜晶体管的阈值电压的参考值,Vth为老化参数侦测单元侦测到的老化参数。
本发明还提供一种OLED显示装置的亮度补偿方法,包括如下步骤:
步骤1、提供一OLED显示装置的亮度补偿系统,包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板;
步骤2、所述图像预处理单元向图像对比度控制单元提供待显示图像的各个像素的显示数据;
步骤3、所述老化参数侦测单元侦测OLED显示面板的老化参数,并提供给图像对比度控制单元和老化补偿单元;
步骤4、所述图像对比度控制单元根据OLED显示面板的老化参数相应调整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将对比度提升之后的各个像素的显示数据提供给老化补偿单元;
步骤5、所述老化补偿单元根据所述OLED显示面板的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板进行显示。
所述步骤3侦测的OLED显示面板的老化参数为当前时刻各个像素中像素驱动电路的驱动薄膜晶体管的阈值电压的平均值,所述步骤2提供的各个像素的显示数据为各个像素的亮度值。
所述步骤4中,图像对比度控制单元先根据各个像素的亮度值及预设的亮度阈值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像素的亮度值大于该亮度阈值时,则根据所述老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据所述老化参数以及预设的亮度降低公式降低该像素的亮度值。
所述预设的亮度阈值计算公式为:
Figure PCTCN2017088166-appb-000005
其中,M为亮度阈值,AveY为待显示画面的几何平均亮度,n为OLED显示面板中的像素总数,Yi为第i个像素的亮度值。
所述预设的亮度提升公式为:
Figure PCTCN2017088166-appb-000006
所述预设的亮度降低公式为:
Figure PCTCN2017088166-appb-000007
其中,
Figure PCTCN2017088166-appb-000008
Y’i为对比度提升之后的第i个像素的亮度值,Vmax为OLED显示面板中的像素能够获得的最大电压值,Vthini为预设的OLED显示面板中驱动薄膜晶体管的阈值电压的参考值,Vth为老化参数侦测单元侦测到的老化参数。
本发明还提供一种OLED显示装置的亮度补偿系统,包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板;
所述OLED显示面板中设有多个像素;
所述图像预处理单元用于向图像对比度控制单元提供待显示图像的各个像素的显示数据;
所述老化参数侦测单元用于侦测所述OLED显示面板的老化参数,并提供给图像对比度控制单元和老化补偿单元;
所述图像对比度控制单元用于根据OLED显示面板的老化参数相应调整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将 对比度提升之后的各个像素的显示数据提供给老化补偿单元;
所述老化补偿单元用于根据所述OLED显示面板的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板进行显示;
其中,所述老化参数为当前时刻各个像素中像素驱动电路的驱动薄膜晶体管的阈值电压的平均值,所述各个像素的显示数据为各个像素的亮度值;
其中,所述图像对比度控制单元先根据各个像素的亮度值及预设的亮度阈值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像素的亮度值大于该亮度阈值时,则根据所述老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据所述老化参数以及预设的亮度降低公式降低该像素的亮度值。
本发明的有益效果:本发明提供了一种OLED显示装置的亮度补偿系统,该系统包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板,在老化补偿之前先通过图像对比度控制单元根据老化参数提高待显示图像的对比度,而后再对对比度提高后的待显示图像进行老化补偿并进行显示,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。本发明还提供一种OLED显示装置的亮度补偿方法,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。
附图说明
为了能更进一步了解本发明的特征以及技术内容,请参阅以下有关本发明的详细说明与附图,然而附图仅提供参考与说明用,并非用来对本发明加以限制。
附图中,
图1为现有的OLED显示装置的亮度补偿系统的结构图;
图2为本发明的OLED显示装置的亮度补偿系统的结构图;
图3为本发明的OLED显示装置的亮度补偿方法步骤3的波形图;
图4为本发明的OLED显示装置的亮度补偿方法的流程图。
具体实施方式
为更进一步阐述本发明所采取的技术手段及其效果,以下结合本发明的优选实施例及其附图进行详细描述。
请参阅图2,本发明提供一种OLED显示装置的亮度补偿系统,包括:图像预处理单元10、与所述图像预处理单元10电性连接的图像对比度控制单元50、与所述图像对比度控制单元50电性连接的老化补偿单元20、与所述老化补偿单元20以及图像对比度控制单元50均电性连接的老化参数侦测单元30、以及与所述老化补偿单元20和老化参数侦测单元30均电性连接的OLED显示面板40。
其中,所述OLED显示面板40中设有多个像素,一般情况下,所述多个像素阵列排布。
所述图像预处理单元10用于向图像对比度控制单元50提供待显示图像的各个像素的显示数据。
具体地,在本发明的优选实施例中,所述各个像素的显示数据指的是各个像素的亮度值。
所述老化参数侦测单元30用于侦测所述OLED显示面板40的老化参数,并提供给图像对比度控制单元50和老化补偿单元20。
具体地,在上述本发明的优选实施例中,所述OLED显示面板40的老化参数指的是各个像素的像素驱动电路中的驱动薄膜晶体管的阈值电压的平均值。
所述图像对比度控制单元50用于根据OLED显示面板40的老化参数相应调整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将对比度提升之后的各个像素的显示数据提供给老化补偿单元20。
进一步地,请参阅图3,如图3中的虚线所示为不进行对比度提升时,输入到老化补偿单元20的各个像素的亮度值等于图像预处理单元10输出的亮度值,而如图3中的实线所示,经过对比度提升之后,图像预处理单元10输出的较高的像素的亮度值输入到老化补偿单元20时更高,图像预处理单元10输出的较低的像素的亮度值输入到老化补偿单元20时更低,也即所述图像对比度控制单元50通过使得原本较亮的像素更亮,原本较暗的像素更暗的方法,来提升待显示图像的对比度。
具体为:先根据各个像素的亮度值及预设的亮度阈值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像 素的亮度值大于该亮度阈值时,则根据该像素的老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据该像素的以及预设的亮度降低公式降低该像素的亮度值。
详细地,所述预设的亮度阈值计算公式为:
Figure PCTCN2017088166-appb-000009
其中,M为亮度阈值,AveY为待显示画面的几何平均亮度,n为OLED显示面板40中的像素总数,Yi为第i个像素的亮度值。
更详细地,所述预设的亮度提升公式为:
Figure PCTCN2017088166-appb-000010
所述预设的亮度降低公式为:
Figure PCTCN2017088166-appb-000011
其中,
Figure PCTCN2017088166-appb-000012
Y’i为对比度提升之后的第i个像素的亮度值,Vmax为OLED显示面板40中的像素能够获得的最大电压值,Vthini为预设的OLED显示面板40中驱动薄膜晶体管的阈值电压的参考值,Vth为老化参数侦测单元30侦测到的老化参数。
优选地,所述预设的OLED显示面板40中驱动薄膜晶体管的阈值电压的参考值通常为OLED显示面板40在出厂前各个像素中的驱动薄膜晶体管的阈值电压的平均值。
所述老化补偿单元20用于根据所述OLED显示面板40的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板40进行显示。
具体地,所述老化补偿的方法均为现有技术,此处不再赘述。
需要说明的是,由于在老化补偿之前先提高了待显示图像的对比度,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,从而用户在观看时不会因OLED显示装置的老化而感觉到画面变暗,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。
请参阅图4,本发明还提供一种OLED显示装置的亮度补偿方法,包括如下步骤:
步骤1、请参阅图2,提供一OLED显示装置的亮度补偿系统,包括:图像预处理单元10、与所述图像预处理单元10电性连接的图像对比度控制 单元50、与所述图像对比度控制单元50电性连接的老化补偿单元20、与所述老化补偿单元20以及图像对比度控制单元50均电性连接的老化参数侦测单元30、以及与所述老化补偿单元20和老化参数侦测单元30均电性连接的OLED显示面板40。
步骤2、所述图像预处理单元10向图像对比度控制单元50提供待显示图像的各个像素的显示数据。
具体地,所述步骤2提供的各个像素的显示数据为各个像素的亮度值。
步骤3、所述老化参数侦测单元30侦测OLED显示面板40的老化参数,并提供给图像对比度控制单元50和老化补偿单元20。
具体地,所述步骤3侦测的OLED显示面板40的老化参数为各个像素的像素驱动电路的驱动薄膜晶体管的阈值电压。
步骤4、所述图像对比度控制单元50根据OLED显示面板40的老化参数相应调整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将对比度提升之后的各个像素的显示数据提供给老化补偿单元20。
进一步地,请参阅图3,如图3中的虚线所示为不进行对比度提升时,输入到老化补偿单元20的各个像素的亮度值等于图像预处理单元10输出的亮度值,而如图3中的实线所示,经过对比度提升之后,图像预处理单元10输出的较高的像素的亮度值输入到老化补偿单元20时更高,图像预处理单元10输出的较低的像素的亮度值输入到老化补偿单元20时更低,也即所述步骤4中,所述图像对比度控制单元50通过使得原本较亮的像素更亮,原本较暗的像素更暗的方法来提升待显示图像的对比度。
具体为:先根据各个像素的亮度值及预设的亮度阈值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像素的亮度值大于该亮度阈值时,则根据该像素的老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据该像素的以及预设的亮度降低公式降低该像素的亮度值。
详细地,所述预设的亮度阈值计算公式为:
Figure PCTCN2017088166-appb-000013
其中,M为亮度阈值,AveY为待显示画面的几何平均亮度,n为OLED显示面板40中的像素总数,Yi为第i个像素的亮度值。
更详细地,所述预设的亮度提升公式为:
Figure PCTCN2017088166-appb-000014
所述预设的亮度降低公式为:
Figure PCTCN2017088166-appb-000015
其中,
Figure PCTCN2017088166-appb-000016
Y’i为对比度提升之后的第i个像素的亮度值,Vmax为OLED显示面板40中的像素能够获得的最大电压值,Vthini为预设的OLED显示面板40中驱动薄膜晶体管的阈值电压的参考值,Vth为老化参数侦测单元30侦测到的老化参数。
优选地,所述预设的OLED显示面板40中驱动薄膜晶体管的阈值电压的参考值通常为OLED显示面板40在出厂前各个像素中的驱动薄膜晶体管的阈值电压的平均值。
步骤5、所述老化补偿单元20根据所述OLED显示面板40的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板40进行显示。
具体地,所述老化补偿的方法均为现有技术,此处不再赘述。
需要说明的是,由于在老化补偿之前先提高了待显示图像的对比度,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,从而用户在观看时不会因OLED显示装置的老化而感觉到画面变暗,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。
综上所述,本发明提供了一种OLED显示装置的亮度补偿系统,该系统包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板,在老化补偿之前先通过图像对比度控制单元根据老化参数提高待显示图像的对比度,而后再对对比度提高后的待显示图像进行老化补偿并进行显示,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。本发明还提供一种OLED显示装置的亮度补偿方法,能够避免OLED显示装置的明暗度因OLED显示装置的老化而降低,保证OLED显示装置的显示品质,提升用户体验和产品竞争力。
以上所述,对于本领域的普通技术人员来说,可以根据本发明的技术方案和技术构思作出其他各种相应的改变和变形,而所有这些改变和变形都应属于本发明权利要求的保护范围。

Claims (13)

  1. 一种OLED显示装置的亮度补偿系统,包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板;
    所述OLED显示面板中设有多个像素;
    所述图像预处理单元用于向图像对比度控制单元提供待显示图像的各个像素的显示数据;
    所述老化参数侦测单元用于侦测所述OLED显示面板的老化参数,并提供给图像对比度控制单元和老化补偿单元;
    所述图像对比度控制单元用于根据OLED显示面板的老化参数相应调整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将对比度提升之后的各个像素的显示数据提供给老化补偿单元;
    所述老化补偿单元用于根据所述OLED显示面板的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板进行显示。
  2. 如权利要求1所述的OLED显示装置的亮度补偿系统,其中,所述老化参数为当前时刻各个像素中像素驱动电路的驱动薄膜晶体管的阈值电压的平均值,所述各个像素的显示数据为各个像素的亮度值。
  3. 如权利要求2所述的OLED显示装置的亮度补偿系统,其中,所述图像对比度控制单元先根据各个像素的亮度值及预设的亮度阈值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像素的亮度值大于该亮度阈值时,则根据所述老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据所述老化参数以及预设的亮度降低公式降低该像素的亮度值。
  4. 如权利要求3所述的OLED显示装置的亮度补偿系统,其中,所述预设的亮度阈值计算公式为:
    Figure PCTCN2017088166-appb-100001
    其中,M为亮度阈值,AveY为待显示画面的几何平均亮度,n为OLED显示面板中的像素总数,Yi为第i个像素的亮度值。
  5. 如权利要求4所述的OLED显示装置的亮度补偿系统,其中,所述预设的亮度提升公式为:
    Figure PCTCN2017088166-appb-100002
    所述预设的亮度降低公式为:
    Figure PCTCN2017088166-appb-100003
    其中,
    Figure PCTCN2017088166-appb-100004
    Y’i为对比度提升之后的第i个像素的亮度值,Vmax为OLED显示面板中的像素能够获得的最大电压值,Vthini为预设的OLED显示面板中驱动薄膜晶体管的阈值电压的参考值,Vth为老化参数侦测单元侦测到的老化参数。
  6. 一种OLED显示装置的亮度补偿方法,包括如下步骤:
    步骤1、提供一OLED显示装置的亮度补偿系统,包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板;
    步骤2、所述图像预处理单元向图像对比度控制单元提供待显示图像的各个像素的显示数据;
    步骤3、所述老化参数侦测单元侦测OLED显示面板的老化参数,并提供给图像对比度控制单元和老化补偿单元;
    步骤4、所述图像对比度控制单元根据OLED显示面板的老化参数相应调整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将对比度提升之后的各个像素的显示数据提供给老化补偿单元;
    步骤5、所述老化补偿单元根据所述OLED显示面板的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板进行显示。
  7. 如权利要求6所述的OLED显示装置的亮度补偿方法,其中,所述步骤3侦测的OLED显示面板的老化参数为当前时刻各个像素的像素驱动电路的驱动薄膜晶体管的阈值电压的平均值,所述步骤2提供的各个像素的显示数据为各个像素的亮度值。
  8. 如权利要求7所述的OLED显示装置的亮度补偿方法,其中,所述步骤4中,图像对比度控制单元先根据各个像素的亮度值及预设的亮度阈 值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像素的亮度值大于该亮度阈值时,则根据所述老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据所述老化参数以及预设的亮度降低公式降低该像素的亮度值。
  9. 如权利要求8所述的OLED显示装置的亮度补偿方法,其中,所述预设的亮度阈值计算公式为:
    Figure PCTCN2017088166-appb-100005
    其中,M为亮度阈值,AveY为待显示画面的几何平均亮度,n为OLED显示面板中的像素总数,Yi为第i个像素的亮度值。
  10. 如权利要求9所述的OLED显示装置的亮度补偿方法,其中,所述预设的亮度提升公式为:
    Figure PCTCN2017088166-appb-100006
    所述预设的亮度降低公式为:
    Figure PCTCN2017088166-appb-100007
    其中,
    Figure PCTCN2017088166-appb-100008
    Y’i为对比度提升之后的第i个像素的亮度值,Vmax为OLED显示面板中的像素能够获得的最大电压值,Vthini为预设的OLED显示面板中驱动薄膜晶体管的阈值电压的参考值,Vth为老化参数侦测单元侦测到的老化参数。
  11. 一种OLED显示装置的亮度补偿系统,包括:图像预处理单元、与所述图像预处理单元电性连接的图像对比度控制单元、与所述图像对比度控制单元电性连接的老化补偿单元、与所述老化补偿单元以及图像对比度控制单元均电性连接的老化参数侦测单元、以及与所述老化补偿单元和老化参数侦测单元均电性连接的OLED显示面板;
    所述OLED显示面板中设有多个像素;
    所述图像预处理单元用于向图像对比度控制单元提供待显示图像的各个像素的显示数据;
    所述老化参数侦测单元用于侦测所述OLED显示面板的老化参数,并提供给图像对比度控制单元和老化补偿单元;
    所述图像对比度控制单元用于根据OLED显示面板的老化参数相应调 整待显示图像的各个像素的显示数据,以提升待显示图像的对比度,并将对比度提升之后的各个像素的显示数据提供给老化补偿单元;
    所述老化补偿单元用于根据所述OLED显示面板的老化参数相应调整对比度提升之后的各个像素的显示数据,以进行老化补偿,并将老化补偿之后的各个像素的显示数据提供给OLED显示面板进行显示;
    其中,所述老化参数为当前时刻各个像素中像素驱动电路的驱动薄膜晶体管的阈值电压的平均值,所述各个像素的显示数据为各个像素的亮度值;
    其中,所述图像对比度控制单元先根据各个像素的亮度值及预设的亮度阈值计算公式计算得到一亮度阈值,再将每一个像素的亮度值与该亮度阈值进行比较,当该像素的亮度值大于该亮度阈值时,则根据所述老化参数以及预设的亮度提升公式提升该像素的亮度值,当该像素的亮度值小于或等于该亮度阈值时,则根据所述老化参数以及预设的亮度降低公式降低该像素的亮度值。
  12. 如权利要求11所述的OLED显示装置的亮度补偿系统,其中,所述预设的亮度阈值计算公式为:
    Figure PCTCN2017088166-appb-100009
    其中,M为亮度阈值,AveY为待显示画面的几何平均亮度,n为OLED显示面板中的像素总数,Yi为第i个像素的亮度值。
  13. 如权利要求12所述的OLED显示装置的亮度补偿系统,其中,所述预设的亮度提升公式为:
    Figure PCTCN2017088166-appb-100010
    所述预设的亮度降低公式为:
    Figure PCTCN2017088166-appb-100011
    其中,
    Figure PCTCN2017088166-appb-100012
    Y’i为对比度提升之后的第i个像素的亮度值,Vmax为OLED显示面板中的像素能够获得的最大电压值,Vthini为预设的OLED显示面板中驱动薄膜晶体管的阈值电压的参考值,Vth为老化参数侦测单元侦测到的老化参数。
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