WO2020124633A1 - 彩膜基板加工方法和系统 - Google Patents

彩膜基板加工方法和系统 Download PDF

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Publication number
WO2020124633A1
WO2020124633A1 PCT/CN2018/123826 CN2018123826W WO2020124633A1 WO 2020124633 A1 WO2020124633 A1 WO 2020124633A1 CN 2018123826 W CN2018123826 W CN 2018123826W WO 2020124633 A1 WO2020124633 A1 WO 2020124633A1
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Prior art keywords
pixel row
similarity
data
pixel
row
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French (fr)
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曾德康
胡水秀
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HKC Co Ltd
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HKC Co Ltd
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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
    • 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
    • G09G3/34Control 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 by control of light from an independent source
    • G09G3/36Control 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 by control of light from an independent source using liquid crystals
    • G09G3/3607Control 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 by control of light from an independent source using liquid crystals for displaying colours or for displaying grey scales with a specific pixel layout, e.g. using sub-pixels
    • 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
    • G09G3/34Control 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 by control of light from an independent source
    • G09G3/36Control 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 by control of light from an independent source using liquid crystals
    • G09G3/3611Control of matrices with row and column drivers
    • 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

Definitions

  • the present application relates to the field of display technology, in particular to a display data processing method and a display device.
  • liquid crystal display panels are widely used in people's production and life. After the production of the LCD panel is completed, modules are usually assembled to form a complete machine. However, since different assembled housing shells have different widths, when the liquid crystal display panel of the same size is assembled with different housing shells, it may happen that the housing blocks the display screen, thereby affecting the screen display.
  • a display data processing method and a display device are provided.
  • a display data processing method includes:
  • a display data processing method including:
  • a display device including:
  • Display panel set to display screen
  • the controller electrically connected to the display panel, includes a memory, a processor, and a computer program stored on the memory and executable on the processor.
  • the program is executed by the processor, the following steps are realized:
  • FIG. 1 is a flowchart of a display data processing method provided by an embodiment
  • FIG. 2 is a flowchart of a display data processing method provided by a specific embodiment
  • FIG. 3 is a flowchart of a display data processing method provided by another specific embodiment
  • FIG. 4 is a flowchart of a display data processing method provided by yet another specific embodiment
  • FIG. 5 is a schematic structural diagram of a display panel provided by an embodiment of the present application.
  • a method for processing display data including the following steps:
  • Step S110 Obtain the number P of the pixel rows obscured by the upper frame of the display device and the number Q of the pixel rows obscured by the lower frame of the display device, and the sum of the number of lines P and the number Q is the number N of lines of pixels to be deleted.
  • the display device includes a display panel and a housing case.
  • the housing case may block part of the display panel, so that the display screen of the display panel cannot be fully seen by the user, so the display screen of the display panel needs to be processed.
  • the number P of pixel rows in the display panel blocked by the upper frame of the housing case and the number Q of pixel rows in the display panel blocked by the lower frame of the housing case are obtained.
  • the sum of the number of lines P and the number of lines Q is the number of lines N of the total pixel lines blocked by the border, and the number of lines N is the number of pixel lines to be deleted.
  • Step S120 Determine the similarity between the data of adjacent pixel rows under the current frame display screen, and the pixel row includes the pixel row to be deleted.
  • the pixel rows are all the pixel rows on the liquid crystal display panel, and the pixel rows to be deleted have a plurality of pixel rows with a large similarity.
  • the data similarity of adjacent pixel rows is determined by comparing gray-scale data of adjacent pixel rows. Because the content of each frame of the display screen may be different, the similarity between the data of adjacent pixel rows under each frame of the display screen needs to be compared and deleted, so that the display screen of each frame can be adapted to the assembly of the housing shell size of.
  • Step S130 delete the data of the pixel row to be deleted corresponding to the larger N similarities according to the mapping relationship between the similarity and the pixel row.
  • the similarity is stored in a one-to-one correspondence with the pixel row located next in the adjacent pixel row, and the similarity is compared with the pixel row located next
  • the one-to-one correspondence is the mapping relationship.
  • Step S140 Re-assign the pixel row to be deleted according to the data corresponding to the pixel row next to the pixel row to be deleted.
  • each pixel row after the pixel row to be deleted is copied again by the data of the pixel row of the next row. For example, if the pixel row to be deleted is the third row of pixel rows, after the data of the third row of pixel rows is deleted, the data of the fourth row of pixel rows will need to be input to the third row of pixel rows to reassign the third row of pixel rows . The data of each pixel row after the fourth pixel row is transferred to the previous row.
  • S150 Reassign the data of the current pixel row of each row to the corresponding pixel row, where the corresponding pixel row is located after the P row of the current pixel row.
  • step S140 the number of pixel rows that can be displayed on the current frame display screen matches the number of pixel rows on the display panel framed by the housing case, and the current frame display screen starts from the first row of pixel lines on the display panel display. Because the upper border of the housing shell may block part of the pixel rows on the upper part of the display panel, the data of each pixel row of the current frame display screen needs to be moved down, that is, the data of each row of the current pixel row is re-assigned to the corresponding pixel row.
  • the corresponding pixel row is located after the P row of the current pixel row, that is, the number of rows of data of each pixel row of the current frame display screen is moved down is equal to the number of rows of pixel rows obscured by the upper border of the housing shell, after the data is moved down
  • the display picture of the current frame can be completely displayed in the area of the display panel framed by the casing. Then, you can end the comparison of the current frame display.
  • the above display data processing method by comparing the similarity between adjacent pixel rows in a frame of the display screen, and deleting the data of multiple rows of pixel rows with greater similarity, when the LCD panel and the housing are assembled, After inputting data to the liquid crystal display panel, the size of the display area can be flexibly adapted to different shells and shells, the display screen is not blocked, improving display quality, and improving the flexibility and adaptability of the liquid crystal display panel.
  • the above method can solve the problem that when the liquid crystal display panel is assembled with different housing shells through an algorithm, the housing may block the display picture, and there is no cost increase.
  • determining the similarity between the data of adjacent pixel rows under the display picture of the current frame includes:
  • Step S121 Determine whether the similarity between the first pixel row and the second pixel row in the two adjacent pixel rows is 100%.
  • Step S122 When the similarity between the first pixel row and the second pixel row is less than 100%, the first register stores the mapping relationship between the similarity and the second pixel row.
  • mapping relationship includes the correspondence between the similarity and the second pixel row in the next two adjacent pixel rows that determine the similarity.
  • the second pixel row is the pixel row to be deleted.
  • the first pixel row is the pixel row at the front, and the second pixel row is at the rear pixel row.
  • the positional relationship between the first pixel row and the second pixel row may also be opposite to this embodiment.
  • the data of the first pixel row and the second pixel row are compared to determine the similarity between the first pixel row and the second pixel row.
  • the mapping relationship between the similarity and the pixel row is stored in the first memory, that is, the similarity and the second pixel row with the similarity are stored position.
  • deleting the data of the pixel row to be deleted corresponding to the larger similarity specifically includes: according to the mapping relationship between the similarity and the pixel row, deleting the larger N similarities The data of the pixel row to be deleted corresponding to the degree.
  • the first N similarities with larger values in the first memory are selected by comparing the sizes, and according to the correspondence between the similarity and the pixel rows, the first N similarities with larger similarities are deleted.
  • the pixel row to be deleted is the second pixel row in the rear.
  • the display panel by comparing the similarity between adjacent pixel rows in a frame of the display screen, according to the correspondence between the similarity and the pixel row, the data of multiple rows of pixel rows with greater similarity are deleted to make the liquid crystal
  • the size of the display area can be flexibly adapted to different shell shells, the display screen is not blocked, the display quality is improved, and the flexibility and adaptability of the liquid crystal display panel is improved .
  • Step S121 Determine whether the similarity between the first pixel row and the second pixel row in the two adjacent pixel rows is 100%.
  • Step S123 When the similarity between the first pixel row and the second pixel row is equal to 100%, the second register counts.
  • Step S124 Delete the data of the second pixel row located next to the adjacent pixel row, and re-assign the second pixel row according to the data corresponding to the next row of the second pixel row.
  • the second register is set to record the number with 100% similarity.
  • the similarity between the first pixel row and the second pixel row is 100%, then the data of the second pixel row positioned behind is deleted. Then, according to the data of the next pixel row of the second pixel row, the second pixel row is reassigned. Each row of data after the second pixel row reassigns the pixel row of the previous row, that is, the data is shifted up by one row.
  • deleting the data of the pixel row to be deleted corresponding to the larger N similarities specifically includes:
  • Step S131 Make a difference between the number N of rows and the numerical value I counted in the second register, where the numerical value I is the number of rows of the second pixel row located next to the row of adjacent pixels for which data has been deleted.
  • Step S132 Sort the similarity in the first register from large to small according to the similarity in the first register.
  • Step S133 according to the mapping relationship between the similarity and the pixel row, delete the data of the pixel row to be deleted corresponding to the larger N-I similarity in the first register.
  • the data is input into the pixel row first, and then the similarity comparison between the data of the second pixel row and the data of the first pixel row is performed.
  • the second counter is used to count, and the second pixel row with 100% similarity is deleted, and the data of the pixel row next to the second pixel row is input into the second pixel row.
  • the data of the pixel row of the next row is compared with the data of the pixel row of the previous row.
  • the first register is used to record the similarity and the position of the second pixel row with the similarity.
  • the number of pixel rows to be deleted in the first register is N-I.
  • select a larger NI similarity select a larger NI similarity, and delete the data of the pixel row to be deleted corresponding to the previous NI similarity according to the mapping relationship between the similarity and the pixel row, so that the display area
  • the size is suitable for the size of the assembled shell.
  • the method for processing display data compares the similarity of data of adjacent pixel rows of a frame of the display screen.
  • the similarity is equal to 100%
  • the data of the second pixel row is deleted while comparing the similarity of the data;
  • the similarity is less than 100%, after comparing all the similarities, the data of the pixel row corresponding to the larger similarity is deleted.
  • the data of the next pixel row is transferred to the previous row to adapt to the display of the size of the assembled shell.
  • a specific embodiment of the present application provides a display data processing method, including the following steps:
  • Step S210 Obtain the number P of pixel rows blocked by the upper frame of the display device and the number Q of pixel rows blocked by the lower frame of the display device, where the sum of the number P of lines and the number Q of lines is the number N of rows of pixels to be deleted .
  • the total number M of pixel lines of the liquid crystal display panel can also be obtained at the same time.
  • the principle of row-by-row comparison is adopted until the pixel behavior of the M rows in the display frame is completed.
  • Step S220 Determine whether the similarity between the first pixel row and the second pixel row in the two adjacent pixel rows is 100% according to the gray-scale data between the adjacent data rows.
  • the first pixel is a row of pixels in the front
  • the second pixel is a row of pixels in the back.
  • Step S230 When the similarity between the first pixel row and the second pixel row is less than 100%, the first register stores the mapping relationship between the similarity and the second pixel row.
  • the mapping relationship includes the correspondence between the similarity and the second pixel row in the next two adjacent pixel rows that determine the similarity, where the second pixel row is the pixel row to be deleted.
  • the first register stores the mapping relationship between the similarity and the pixel row, and at the same time, the first register counts and is set to record the number of rows of pixel rows for which similarity comparison has currently been performed.
  • step S220 is repeated.
  • Step S240 When the similarity between the first pixel row and the second pixel row is equal to 100%, the second register counts and deletes the data of the second pixel row positioned behind, according to the next pixel row of the second pixel row Corresponding data, re-assign the second pixel row.
  • the similarity between the first pixel row and the second pixel row is judged, it is judged whether the sum of the count value of the first register and the count value of the second register reaches the total number of rows M-1, if it reaches the total number of rows M-1, Then, the similarity comparison is no longer performed. If the total number of lines M-1 is not reached, the similarity comparison is continued until all pixel rows of a frame of the display screen are compared.
  • Step S250 Make a difference between the number N of lines and the value I counted in the second register.
  • the value I counted in the second register is the number of pixel rows corresponding to the similarity of 100%, and also the number of the second pixel row in the adjacent pixel row whose data has been deleted. Since the data of the pixel row corresponding to 100% similarity has been deleted, and the total number of data rows to be deleted is N, the number of data rows to be deleted in the first register is N-I.
  • Step S260 Sort the similarity in the first register from large to small according to the size of the similarity.
  • the first register is set to store the similarity and the position of the second pixel row having the similarity, and sort the similarity in the first register from the size to determine the first N-I similarities with larger values.
  • Step S270 delete the data of the pixel row to be deleted corresponding to the larger N-I similarity in the first register according to the mapping relationship between the similarity and the pixel row.
  • the positions of the corresponding N-I pixel rows to be deleted are determined, and the data corresponding to the pixel rows to be deleted are deleted.
  • Step S280 Re-assign the pixel row to be deleted according to the data corresponding to the next row of the pixel row to be deleted.
  • Input the data corresponding to the next row of the data row to be deleted to the pixel row to be deleted, and re-assign the data of each row after the data row to be deleted to the pixel row of the previous row to complete the upward movement of the data, which can end the frame
  • the number of pixel rows of the display screen is the same as the number of pixel rows in the display area that can be framed by the casing.
  • Step S290 Re-assign the data of the current pixel row of each row to the corresponding pixel row, where the corresponding pixel row is located after the P row of the current pixel row. Since the upper border of the housing shell may block part of the pixel rows in the upper part of the display panel, the data of each pixel row of the current frame display screen needs to be moved down. The number of rows moved down by each pixel row is the same as the number of rows blocked by the housing shell , Which is line P. The data moving down also means that the data of the current pixel row of each row is re-assigned to the corresponding pixel row, where the corresponding pixel row is located after the P row of the current pixel row. After the data is moved down, the display image of this frame can be adapted to the size of the assembled shell.
  • the above display data processing method by comparing the similarity between adjacent pixel rows in a frame of the display screen, and deleting the data of multiple rows of pixel rows with greater similarity, when the LCD panel and the housing are assembled, After inputting data to the liquid crystal display panel, the size of the display area can be flexibly adapted to different shells and shells, the display screen is not blocked, improving display quality, and improving the flexibility and adaptability of the liquid crystal display panel.
  • the above method can solve the problem that when the liquid crystal display panel is assembled with different housing shells through an algorithm, the housing may block the display picture, and there is no cost increase.
  • steps in the flowcharts of FIGS. 1-4 are displayed in order according to the arrows, the steps are not necessarily executed in the order indicated by the arrows. Unless there is a clear description in this article, the execution of these steps is not strictly limited in order, and they can be executed in other orders. Moreover, at least some of the steps in FIGS. 1-4 may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily executed at the same time, but may be executed at different times, and the order of execution It must be carried out sequentially, but can be executed in turn or alternately with at least a part of other steps or sub-steps or stages of other steps.
  • an embodiment of the present application provides a display device.
  • the display device may be a liquid crystal display or an organic light emitting diode display. Include: display panel 310 and controller 30.
  • the display panel 310 is configured to display each frame of display screen.
  • the controller 320 is electrically connected to the display panel 310.
  • the controller 320 includes a memory 321, a processor 322, and a computer program stored on the memory 321 and executable on the processor 322.
  • the following steps are implemented: acquiring the rows of pixels blocked by the frame on the display device The number P and the number Q of pixel rows obscured by the lower border of the display device, where the sum of the number of rows P and the number Q is the number N of rows of pixels to be deleted; between the data of adjacent pixel rows under the current frame display screen Similarity, the pixel row includes the pixel row to be deleted; according to the mapping relationship between the similarity and the pixel row, delete the data of the pixel row to be deleted corresponding to a larger N similarity; according to the pixel row to be deleted The data corresponding to the pixel row of the next row is re-assigned to the pixel row to be deleted; and the data of the current pixel row of each row is re-assigned to the corresponding pixel row, and the corresponding pixel row is located after the P row of the current pixel row.
  • determining the similarity between adjacent data lines under the current frame display screen includes: determining the similarity between adjacent data lines under the current frame display screen according to the grayscale data between the adjacent data lines degree.
  • determining the similarity between the data of adjacent pixel rows under the current frame display screen specifically includes: determining whether the similarity between the first pixel row and the second pixel row in the adjacent two pixel rows Is 100%. When the similarity between the first pixel row and the second pixel row is less than 100%, the first register stores a mapping relationship between the similarity and the second pixel row, where the mapping relationship includes the similarity and determines the similarity It can be understood that the correspondence between the positions of the second pixel rows in the two adjacent pixel rows of the second row is the row of pixels to be deleted. When the similarity between the first pixel row and the second pixel row is equal to 100%, the second register counts.
  • deleting the data of the pixel row to be deleted corresponding to the larger N similarities specifically includes: according to the value I counted in the second register, the number of rows N and The value I counted in the second register makes a difference, where the value I is the number of rows of the second pixel row in the adjacent pixel row whose data has been deleted; according to the size of the similarity, the similarity in the first register The degrees are sorted from largest to smallest; and according to the mapping relationship between the similarity and the pixel row, the data of the pixel row to be deleted corresponding to the larger NI similarity in the first register is deleted.
  • the display device provided in the above embodiment stores therein a data processing method, which compares the similarity between adjacent pixel rows under a frame of the display screen, and deletes the data of multiple pixel rows with greater similarity,
  • a data processing method which compares the similarity between adjacent pixel rows under a frame of the display screen, and deletes the data of multiple pixel rows with greater similarity

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Abstract

一种显示数据处理方法,通过对比一帧显示画面下相邻像素行之间的相似度(S120),并删除相似度较大的多行像素行的数据(S130),然后将像素行的数据重新赋值(S140),即将显示画面上移,使得液晶显示面板与外壳壳体组装时,对液晶显示面板输入数据后,显示画面不被外壳壳体遮挡。

Description

彩膜基板加工方法和系统
相关申请的交叉引用
本申请要求于2018年12月19日提交中国专利局、申请号为2018115561469、发明名称为“显示数据处理方法及显示装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及显示技术领域,特别是涉及一种显示数据处理方法及显示装置。
背景技术
这里的陈述仅提供与本申请有关的背景信息,而不必然地构成现有技术。
随着显示技术的发展,液晶显示面板被广泛应用于人们的生产生活中。液晶显示面板在生产完成后,通常会进行模组组装形成整机。然而,由于不同的组装外壳壳体具有不同的宽度,当同一尺寸的液晶显示面板与不同的外壳壳体组装时,可能出现外壳遮挡显示画面的情况,从而影响画面显示。
发明内容
根据本申请的各个实施例,提供一种显示数据处理方法及显示装置。
根据本申请的一个方面,提供一种显示数据处理方法,所述方法包括:
获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的像 素行行数Q,所述行数P与所述行数Q之和为待删除像素行的行数N;确定当前帧显示画面下相邻所述像素行的数据之间的相似度,所述像素行包括所述待删除像素行;
根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据;
根据所述待删除像素行的下一行像素行对应的数据,对所述待删除像素行进行重新赋值;以及
将每行当前像素行的数据重新赋值于对应的像素行,所述对应的像素行位于所述当前像素行的P行之后。
根据本申请的另一个方面,提供一种显示数据处理方法,包括:
获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的像素行行数Q,所述行数P与所述行数Q之和为待删除像素行的行数N;
根据相邻数据行之间的灰阶数据,确定当前帧显示画面下相邻所述像素行的数据之间的相似度,所述像素行包括所述待删除像素行;
根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据;
根据所述待删除像素行的下一行像素行对应的数据,对所述待删除像素行进行重新赋值;以及
将每行当前像素行的数据重新赋值于对应的像素行,所述对应的像素行位于所述当前像素行的P行之后。
根据本申请的有一方面,提供一种显示装置,包括:
显示面板,设置为显示画面;
控制器,与所述显示面板电连接,包括存储器、处理器以及存储在存储器上并可在处理器上运行的计算机程序,该程序被处理器执行时实现以下步骤:
获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的像 素行行数Q,所述行数P与所述行数Q之和为待删除像素行的行数N;
确定当前帧显示画面下相邻所述像素行的数据之间的相似度,所述像素行包括所述待删除像素行;
根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据;
根据所述待删除像素行的下一行像素行对应的数据,对所述待删除像素行进行重新赋值;
将每行当前像素行的数据重新赋值于对应的像素行,所述对应的像素行位于所述当前像素行的P行之后。
本申请的一个或多个实施例的细节在下面的附图和描述中提出。本申请的其他特征、目的和优点将从说明书、附图以及权力要求书变得明显。
附图说明
为了更好地描述和说明这里公开的那些申请的实施例或示例,可以参考一幅或多幅附图。用于描述附图的附加细节或示例不应当被认为是对所公开的申请、目前描述的实施例或示例以及目前理解的这些申请的最佳模式中的任何一者的范围的限制。
图1为一个实施例提供的显示数据处理方法的流程图;
图2为一个具体实施例提供的显示数据处理方法的流程图;
图3为又一具体实施例提供的显示数据处理方法的流程图;
图4为又一具体实施例提供的显示数据处理方法的流程图;
图5为本申请的一个实施例提供的显示面板的结构示意图。
具体实施方式
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处描述的具体实 施例仅仅用以解释本申请,并不用于限定本申请。
需要说明的是,当元件被称为“设置于”另一个元件,它可以直接在另一个元件上或者也可以存在居中的元件。当一个元件被认为是“连接”另一个元件,它可以是直接连接到另一个元件或者可能同时存在居中元件。本文所使用的术语“垂直的”、“水平的”、“左”、“右”以及类似的表述只是为了说明的目的,并不表示是唯一的实施方式。
除非另有定义,本文所使用的所有的技术和科学术语与属于本申请的技术领域的技术人员通常理解的含义相同。本文中在本申请的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本申请。以上实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
在一个实施例中,如图1所示,提供了一种显示数据的处理方法,包括以下步骤:
步骤S110:获取显示装置上边框遮挡的像素行的行数P和显示装置下边框遮挡的像素行的行数Q,行数P与行数Q之和为待删除像素行的行数N。
本实施例中,显示装置包括显示面板和外壳壳体。由于显示面板与外壳壳体组装时,外壳壳体可能会遮挡部分显示面板,导致显示面板的显示画面不能完全被用户看到,故需要对显示面板的显示画面进行处理。首先获取外壳壳体的上边框遮挡的显示面板内像素行的行数P和外壳壳体的下边框遮挡的显示面板内像素行的行数Q。行数P与行数Q之和为边框遮挡的总的像素行的行数N,行数N为待删除的像素行的数量。
步骤S120:确定当前帧显示画面下相邻像素行的数据之间的相似度,像素行包括待删除像素行。
其中,像素行为液晶显示面板上全部的像素行,待删除像素行为相似度较大的多个像素行。
具体的,本实施例通过比较相邻像素行的灰阶数据确定相邻像素行的数据相似度。由于每一帧显示画面的内容可能不同,则每一帧显示画面下相邻像素行的数据之间的相似度都需要进行比较、删除,使得每一帧的显示画面都能适应组装外壳壳体的尺寸。
步骤S130:根据相似度与像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据。
具体的,在比较相邻两像素行的数据之间的相似度后,将相似度与相邻像素行中位置在后的像素行一一对应地进行存储,相似度与位置在后的像素行的一一对应关系即为映射关系。在比较完一帧显示画面下像素行之间的相似度后,将相似度进行从大到小排序,选取其中较大的前几个相似度,根据相似度与像素行的映射关系,进而可以选取具有较大相似度的待删除像素行,并删除对应的待删除像素行的数据。本实施例中,待删除像素行的总数为行数N。
步骤S140:根据所述待删除像素行的下一行像素行对应的数据,对所述待删除像素行进行重新赋值。
具体的,将待删除像素行的数据删除后,根据待删除像素行的下一行像素行的数据,对待删除像素行进行重新赋值,使得待删除像素行下一行的数据输入待删除像素行中。相应的,待删除像素行后面的每一行像素行均被下一行像素行的数据重新复制。例如待删除像素行为第三行像素行,则第三行像素行的数据被删除后,将需要输入第四行像素行的数据调用至第三行像素行,以对第三行像素行重新赋值。第四行像素行后的每一行像素行的数据均调用至前一行。
S150:将每行当前像素行的数据重新赋值于对应的像素行,其中,对应的像素行位于当前像素行的P行之后。
在执行步骤S140之后,当前帧显示画面可以显示的像素行的行数与外壳壳体框定的显示面板上的像素行行数相匹配,且当前帧显示画面从显示 面板的第一行像素行开始显示。由于外壳壳体的上边框可能遮挡显示面板上部的部分像素行,故需要将当前帧显示画面各像素行的数据均下移,即将每行当前像素行的数据均重新赋值于对应的像素行,该对应的像素行位于当前像素行的P行之后,也即当前帧显示画面各像素行的数据均下移的行数等于外壳壳体上边框遮挡的像素行的行数,将数据下移后,当前帧显示画面可完全显示于外壳壳体框定的显示面板的区域内。然后,即可结束当前帧显示画面的对比。
上述显示数据的处理方法中,通过对比一帧显示画面下相邻像素行之间的相似度,并删除相似度较大的多行像素行的数据,使得液晶显示面板与外壳壳体组装时,对液晶显示面板输入数据后,显示区的尺寸能够灵活适应不同的外壳壳体,显示画面不被遮挡,提升显示品质,提高液晶显示面板的灵活性和适应性。同时,上述方法通过算法可解决液晶显示面板与不同的外壳壳体组装时,可能出现外壳遮挡显示画面的情况,无成本增加。
在其中一个实施例中,请参见图2,确定当前帧显示画面下相邻像素行的数据之间的相似度包括:
步骤S121:判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%。
步骤S122:当第一像素行与所述第二像素行之间的相似度小于100%时,第一寄存器存储相似度与第二像素行之间的映射关系。
其中,映射关系包括相似度与确定该相似度的相邻两行像素行中位置在后的第二像素行之间的对应关系,该第二像素行即为待删除像素行。
具体的,本实施例中,第一像素行为位置在前的像素行,第二像素行的位置在后的像素行。在其他实施例中,第一像素行和第二像素行的位置关系也可以与本实施例相反。将第一像素行与第二像素行的数据进行对比,确定第一像素行与第二像素行之间的相似度。当第一像素行与第二像素行的相似度小于100%时,第一存储器中存储相似度和像素行之间的映射 关系,也即存储相似度和具有该相似度的第二像素行的位置。
根据相似度与所述像素行的映射关系,删除较大的相似度对应的待删除像素行的数据具体包括:根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的待删除像素行的数据。当液晶显示面板中第一像素行与第二像素行的相似度均小于100%时,将对比获得的相似度与像素行的位置均存储于第一存储器中。然后根据待删除像素行的行数N,通过比较大小选取第一存储器中数值较大的前N个相似度,并根据相似度与像素行的对应关系,删除前N个具有较大相似度的待删除像素行的数据。其中,待删除像素行即为位置在后的第二像素行。
上述显示数据的处理方法中,通过对比一帧显示画面下相邻像素行之间的相似度,根据相似度与像素行的对应关系,删除相似度较大的多行像素行的数据,使得液晶显示面板与外壳壳体组装时,对液晶显示面板输入数据后,显示区的尺寸能够灵活适应不同的外壳壳体,显示画面不被遮挡,提升显示品质,提高液晶显示面板的灵活性和适应性。
在其中一个实施例中,请继续参见图2,确定当前帧显示画面下相邻像素行的数据之间的相似度包括:
步骤S121:判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%。
步骤S123:当第一像素行与第二像素行之间的相似度等于100%时,第二寄存器计数。
步骤S124:删除相邻像素行中位置在后的所述第二像素行的数据,根据所述第二像素行的下一行对应的数据,对所述第二像素行进行重新赋值。
其中,第二寄存器设置为记录具有100%相似度的数量。当第一像素行和第二像素行的相似度为100%,则删除位置在后的第二像素行的数据。然后根据第二像素行的下一行像素行的数据,对第二像素行重新赋值。第二像素行后面的每一行数据均对上一行像素行重新赋值,也即实现了数据上 移一行。
本实施例中,所述根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的待删除像素行的数据具体包括:
步骤S131:将行数N与第二寄存器计数的数值I做差,其中,数值I为已进行数据删除的相邻像素行中位置在后的第二像素行的行数。
步骤S132:根据第一寄存器中相似度的大小,将第一寄存器中的相似度从大到小排序。
步骤S133:根据相似度与像素行的映射关系,删除第一寄存器中较大的N-I个相似度对应的待删除像素行的数据。
具体的,先将数据输入像素行,然后将第二像素行的数据与第一像素行的数据进行相似度对比。当相似度等于100%时,采用第二计数器计数,同时删除具有100%相似度的第二像素行,且将第二像素行下一行像素行的数据输入第二像素行中。将下一行像素行的数据与前一行像素行的数据再进行相似度对比,当相似度小于100%时,采用第一寄存器记录相似度的大小和具有该相似度的第二像素行的位置。本实施例中,若第二寄存器的计数数值为I,即已经删除I行像素行后,则第一寄存器中待删除像素行的数量即为N-I。根据第一寄存器中相似度的大小,选取较大的N-I个相似度,并根据相似度与像素行之间的映射关系,删除前N-I个相似度对应的待删除像素行的数据,使得显示区的尺寸与组装外壳壳体的尺寸相适应。
上述实施例提供的显示数据的处理方法,通过对比一帧显示画面相邻像素行数据的相似度,当相似度等于100%时,则一边对比数据相似度一边删除第二像素行的数据;当相似度小于100%时,则对比完全部的相似度后,删除较大的相似度对应的像素行的数据。全部对比结束后,将下一行像素行的数据调用至前一行,以适应组装外壳壳体的尺寸显示。上述方法通过算法可提高液晶显示面板的灵活性和适应性,无需额外的成本增加。
请参见图4,本申请的一个具体实施例提供一种显示数据处理方法, 包括以下步骤:
步骤S210:获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的所述像素行行数Q,其中,行数P与行数Q之和为待删除像素行的行数N。
具体的,显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的所述像素行行数Q时,也可同时获取液晶显示面板的像素行的总行数M。在对比相邻两行像素行的相似度时,采用逐行对比的原则,直到比完一帧显示画面下M行像素行为止。
步骤S220:根据相邻数据行之间的灰阶数据,判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%。
其中,第一像素行为位置在前的像素行,第二像素行为位置在后的像素行。本实施例中,根据相邻数据行之间的灰阶数据,判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%。
步骤S230:当第一像素行与第二像素行之间的相似度小于100%时,第一寄存器存储所述相似度与所述第二像素行之间的映射关系。
本实施例中,映射关系包括相似度与确定该相似度的相邻两行像素行中位置在后的第二像素行之间的对应关系,其中,第二像素行为待删除像素行。
第一寄存器存储所述相似度与所述像素行之间的映射关系,同时,第一寄存器进行计数,设置为记录当前已经进行相似度对比的像素行的行数。
当判断第一像素行与第二像素行之间的相似度小于100%后,输入下一行数据,并重复步骤S220。
步骤S240:当第一像素行与第二像素行之间的相似度等于100%时,第二寄存器计数,删除位置在后的第二像素行的数据,根据第二像素行的下一行像素行对应的数据,对第二像素行进行重新赋值。
当判断第一像素行与第二像素行的相似度结束后,判断第一寄存器的 计数的数值与第二寄存器计数的数值之和是否达到总行数M-1,若达到总行数M-1,则不再进行相似度对比,若没有达到总行数M-1,则继续进行相似度对比直至对比完一帧显示画面的全部像素行。
步骤S250:将行数N与所述第二寄存器计数的数值I做差。
第二寄存器计数的数值I即为相似度为100%对应的像素行的数量,也为已进行数据删除的相邻像素行中位置在后的第二像素行的行数。由于相似度为100%对应的像素行的数据已经被删除,且待删除数据行的总行数为N,故第一寄存器中需要删除的数据行的行数为N-I。
步骤S260:根据相似度的大小,将第一寄存器中的相似度从大到小排序。
第一寄存器设置为存储相似度以及具有该相似度的第二像素行的位置,将第一寄存器中的相似度进行从打大小排序,可确定数值较大的前N-I个相似度。
步骤S270:根据相似度与像素行的映射关系,删除第一寄存器中较大的N-I个相似度对应的待删除像素行的数据。
确定数值较大的前N-I个相似度后,根据相似度与像素行的映射关系,确定对应的N-I个待删除像素行的位置,并删除对应待删除像素行的数据。
步骤S280:根据待删除像素行的下一行对应的数据,对待删除像素行进行重新赋值。
将待删除数据行下一行对应的数据输入至待删除像素行上,并将待删除数据行后每一行的数据均重新赋值至前一行像素行,以完成数据的上移,进而可结束本帧显示画面的像素行数量与外壳可以框定的显示区域内像素行数量相同。
步骤S290:将每行当前像素行的数据重新赋值于对应的像素行,其中,对应的像素行位于当前像素行的P行之后。由于外壳壳体的上边框可能遮挡显示面板上部的部分像素行,故需要将当前帧显示画面各像素行的数据 均下移,各像素行下移的行数与外壳壳体遮挡的行数相同,即P行。数据下移也即将每行当前像素行的数据重新赋值于对应的像素行,其中,对应的像素行位于当前像素行的P行之后。数据下移后,可以使得本帧显示画面与组装外壳壳体的尺寸适配。
上述显示数据的处理方法中,通过对比一帧显示画面下相邻像素行之间的相似度,并删除相似度较大的多行像素行的数据,使得液晶显示面板与外壳壳体组装时,对液晶显示面板输入数据后,显示区的尺寸能够灵活适应不同的外壳壳体,显示画面不被遮挡,提升显示品质,提高液晶显示面板的灵活性和适应性。同时,上述方法通过算法可解决液晶显示面板与不同的外壳壳体组装时,可能出现外壳遮挡显示画面的情况,无成本增加。
应该理解的是,虽然图1-4的流程图中的各个步骤按照箭头的指示依次显示,但是这些步骤并不是必然按照箭头指示的顺序依次执行。除非本文中有明确的说明,这些步骤的执行并没有严格的顺序限制,其可以以其他的顺序执行。而且,图1-4中的至少一部分步骤可以包括多个子步骤或者多个阶段,这些子步骤或者阶段并不必然是在同一时刻执行完成,而是可以在不同的时刻执行,其执行顺序也不必然是依次进行,而是可以与其他步骤或者其他步骤的子步骤或者阶段的至少一部分轮流或者交替地执行。
请参见图5,本申请的一个实施例提供一种显示装置,所述显示装置可以是液晶显示器也可以是有机发光二极管显示器。包括:显示面板310和控制器30。其中,显示面板310设置为显示每一帧显示画面。控制器320与显示面板310电连接。控制器320包括存储器321、处理器322以及存储在存储器321上并可在处理器322上运行的计算机程序,该程序被处理器322执行时实现以下步骤:获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的像素行行数Q,其中,行数P与行数Q之和为待删除像素行的行数N;确定当前帧显示画面下相邻像素行的数据之间的相似 度,所述像素行包括所述待删除像素行;根据相似度与像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据;根据待删除像素行的下一行像素行对应的数据,对待删除像素行进行重新赋值;以及将每行当前像素行的数据重新赋值于对应的像素行,对应的像素行位于当前像素行的P行之后。
在其中一个实施例中,确定当前帧显示画面下相邻数据行之间的相似度包括:根据相邻数据行之间的灰阶数据,确定当前帧显示画面下相邻数据行之间的相似度。
在其中一个实施例中,确定当前帧显示画面下相邻像素行的数据之间的相似度具体包括:判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%。当第一像素行与第二像素行之间的相似度小于100%时,第一寄存器存储相似度与所述第二像素行之间的映射关系,其中,映射关系包括相似度与确定该相似度的相邻两行像素行中位置在后的第二像素行之间的对应关系,可以理解的是,第二像素行为待删除像素行。当第一像素行与第二像素行之间的相似度等于100%时,第二寄存器计数。
在其中一个实施例中,根据相似度与像素行的映射关系,删除较大的N个相似度对应的待删除像素行的数据具体包括:根据第二寄存器计数的数值I,将行数N与第二寄存器计数的数值I做差,其中,数值I为已进行数据删除的相邻像素行中位置在后的第二像素行的行数;根据相似度的大小,将第一寄存器中的相似度从大到小排序;以及根据相似度与像素行的映射关系,删除第一寄存器中较大的N-I个相似度对应的待删除像素行的数据。
上述实施例提供的显示装置,其存储其中存储有数据处理方法,该方法通过对比一帧显示画面下相邻像素行之间的相似度,并删除相似度较大的多行像素行的数据,使得液晶显示面板与外壳壳体组装时,对液晶显示面板输入数据后,显示区的尺寸能够灵活适应不同的外壳壳体,显示画面 不被遮挡,提升显示品质,提高液晶显示面板的灵活性和适应性。同时,上述方法通过算法可解决液晶显示面板与不同的外壳壳体组装时,可能出现外壳遮挡显示画面的情况,无成本增加。以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对申请专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请专利的保护范围应以所附权利要求为准。

Claims (20)

  1. 一种显示数据处理方法,包括:
    获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的像素行行数Q,所述行数P与所述行数Q之和为待删除像素行的行数N;
    确定当前帧显示画面下相邻所述像素行的数据之间的相似度,所述像素行包括所述待删除像素行;
    根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据;
    根据所述待删除像素行的下一行像素行对应的数据,对所述待删除像素行进行重新赋值;以及
    将每行当前像素行的数据重新赋值于对应的像素行,所述对应的像素行位于所述当前像素行的P行之后。
  2. 根据权利要求1所述的方法,其中,所述确定当前帧显示画面下相邻所述数据行之间的相似度包括:
    根据相邻数据行之间的灰阶数据,确定当前帧显示画面下相邻所述数据行之间的相似度。
  3. 根据权利要求1所述的方法,其中,所述确定当前帧显示画面下相邻所述像素行的数据之间的相似度包括:
    判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%;以及
    当所述第一像素行与所述第二像素行之间的相似度小于100%时,第一寄存器存储所述相似度与所述第二像素行之间的所述映射关系。
  4. 根据权利要求3所述的方法,其中,所述映射关系包括相似度与确定所述相似度的相邻两行像素行中位置在后的第二像素行之间的对应关系,所述第二像素行为所述待删除像素行。
  5. 根据权利要求3所述的方法,其中,所述确定当前帧显示画面下相 邻所述像素行的数据之间的相似度还包括:
    当所述第一像素行与所述第二像素行之间的相似度等于100%时,第二寄存器计数。
  6. 根据权利要求5所述的方法,其中,在所述第二寄存器计数后,还包括步骤:
    删除相邻像素行中位置在后的所述第二像素行的数据,根据所述第二像素行的下一行对应的数据,对所述第二像素行进行重新赋值。
  7. 根据权利要求6所述的方法,其中,所述根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的待删除像素行的数据包括:
    根据所述第二寄存器计数的数值I,将所述行数N与所述第二寄存器计数的数值I做差,所述数值I为已进行数据删除的相邻像素行中位置在后的所述第二像素行的行数;
    根据所述相似度的大小,将所述第一寄存器中的所述相似度从大到小排序;以及
    根据所述相似度与所述像素行的映射关系,删除所述第一寄存器中较大的N-I个相似度对应的所述待删除像素行的数据。
  8. 一种显示数据处理方法,包括:
    获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的所述像素行行数Q,所述行数P与所述行数Q之和为待删除像素行的行数N;
    根据相邻数据行之间的灰阶数据,确定当前帧显示画面下相邻所述像素行的数据之间的相似度,所述像素行包括所述待删除像素行;
    根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据;
    根据所述待删除像素行的下一行像素行对应的数据,对所述待删除像素行进行重新赋值;以及将每行当前像素行的数据重新赋值于对应的像素行,所述对应的像素行位于所述当前像素行的P行之后。
  9. 根据权利要求8所述的方法,其中,所述确定当前帧显示画面下相邻所述像素行的数据之间的相似度包括:
    判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%;以及
    当所述第一像素行与所述第二像素行之间的相似度小于100%时,第一寄存器存储所述相似度与所述第二像素行之间的所述映射关系。
  10. 根据权利要求9所述的方法,其中,所述确定当前帧显示画面下相邻所述像素行的数据之间的相似度还包括:
    当所述第一像素行与所述第二像素行之间的相似度等于100%时,第二寄存器计数。
  11. 根据权利要求10所述的方法,其中,所述映射关系包括相似度与确定所述相似度的相邻两行像素行中位置在后的第二像素行之间的对应关系,所述第二像素行为所述待删除像素行。
  12. 根据权利要求11所述的方法,其中,在所述第二寄存器计数后,还包括步骤:
    删除相邻像素行中位置在后的所述第二像素行的数据,根据所述第二像素行的下一行对应的数据,对所述第二像素行进行重新赋值。
  13. 根据权利要求12所述的方法,其中,所述根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的待删除像素行的数据包括:
    根据所述第二寄存器计数的数值I,将所述行数N与所述第二寄存器计数的数值I做差,所述数值I为已进行数据删除的相邻像素行中位置在后的所述第二像素行的行数;
    根据所述相似度的大小,将所述第一寄存器中的所述相似度从大到小排序;以及
    根据所述相似度与所述像素行的映射关系,删除所述第一寄存器中较 大的N-I个相似度对应的所述待删除像素行的数据。
  14. 一种显示装置,包括:
    显示面板,设置为显示画面;
    控制器,与所述显示面板电连接,包括存储器、处理器以及存储在存储器上并可在处理器上运行的计算机程序,该程序被处理器执行时实现以下步骤:
    获取显示装置上边框遮挡的像素行行数P和显示装置下边框遮挡的像素行行数Q,所述行数P与所述行数Q之和为待删除像素行的行数N;
    确定当前帧显示画面下相邻所述像素行的数据之间的相似度,所述像素行包括所述待删除像素行;
    根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的所述待删除像素行的数据;
    根据所述待删除像素行的下一行像素行对应的数据,对所述待删除像素行进行重新赋值;以及
    将每行当前像素行的数据重新赋值于对应的像素行,所述对应的像素行位于所述当前像素行的P行之后。
  15. 根据权利要求14所述的显示装置,其中,所述确定当前帧显示画面下相邻所述数据行之间的相似度包括:
    根据相邻数据行之间的灰阶数据,确定当前帧显示画面下相邻所述数据行之间的相似度。
  16. 根据权利要求14所述的显示装置,其中,所述确定当前帧显示画面下相邻所述像素行的数据之间的相似度包括:
    判断相邻两行像素行中第一像素行与第二像素行之间的相似度是否为100%;
    当所述第一像素行与所述第二像素行之间的相似度小于100%时,第一寄存器存储所述相似度与所述第二像素行之间的所述映射关系;以及
    当所述第一像素行与所述第二像素行之间的相似度等于100%时,第二寄存器计数。
  17. 根据权利要求16所述的显示装置,其中,所述映射关系包括相似度与确定所述相似度的相邻两行像素行中位置在后的第二像素行之间的对应关系,所述第二像素行为所述待删除像素行。
  18. 根据权利要求16所述的显示装置,其中,在所述第二寄存器计数后,还包括步骤:
    删除相邻像素行中位置在后的所述第二像素行的数据,根据所述第二像素行的下一行对应的数据,对所述第二像素行进行重新赋值。
  19. 根据权利要求18所述的显示装置,其中,所述根据所述相似度与所述像素行的映射关系,删除较大的N个相似度对应的待删除像素行的数据包括:
    根据所述第二寄存器计数的数值I,将所述行数N与所述第二寄存器计数的数值I做差,所述数值I为已进行数据删除的相邻像素行中位置在后的所述第二像素行的行数;
    根据所述相似度的大小,将所述第一寄存器中的所述相似度从大到小排序;以及
    根据所述相似度与所述像素行的映射关系,删除所述第一寄存器中较大的N-I个相似度对应的所述待删除像素行的数据。
  20. 根据权利要求14所述的显示装置,其中,所述显示装置包括液晶显示器或有机发光二极管显示器。
PCT/CN2018/123826 2018-12-19 2018-12-26 彩膜基板加工方法和系统 Ceased WO2020124633A1 (zh)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103618943A (zh) * 2013-11-27 2014-03-05 深圳创维-Rgb电子有限公司 一种显示终端的视频数据显示方法及显示终端
CN106157909A (zh) * 2016-08-08 2016-11-23 深圳市华星光电技术有限公司 显示面板的画面压缩方法及画面压缩装置
CN108010044A (zh) * 2016-10-28 2018-05-08 央视国际网络无锡有限公司 一种视频边界检测的方法

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI277058B (en) * 2002-08-30 2007-03-21 Seiko Epson Corp Font processing device, terminal, font processing method and font processing program
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Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103618943A (zh) * 2013-11-27 2014-03-05 深圳创维-Rgb电子有限公司 一种显示终端的视频数据显示方法及显示终端
CN106157909A (zh) * 2016-08-08 2016-11-23 深圳市华星光电技术有限公司 显示面板的画面压缩方法及画面压缩装置
CN108010044A (zh) * 2016-10-28 2018-05-08 央视国际网络无锡有限公司 一种视频边界检测的方法

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