WO2020232844A1 - 图像显示方法、装置以及控制器 - Google Patents

图像显示方法、装置以及控制器 Download PDF

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Publication number
WO2020232844A1
WO2020232844A1 PCT/CN2019/100746 CN2019100746W WO2020232844A1 WO 2020232844 A1 WO2020232844 A1 WO 2020232844A1 CN 2019100746 W CN2019100746 W CN 2019100746W WO 2020232844 A1 WO2020232844 A1 WO 2020232844A1
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WIPO (PCT)
Prior art keywords
display area
area
pixels
random
position information
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Ceased
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PCT/CN2019/100746
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English (en)
French (fr)
Inventor
张卓
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Wuhan China Star Optoelectronics Semiconductor Display Technology Co Ltd
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Wuhan China Star Optoelectronics Semiconductor Display Technology Co Ltd
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Publication of WO2020232844A1 publication Critical patent/WO2020232844A1/zh
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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
    • G09G3/22Control 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]

Definitions

  • the present invention relates to the field of display technology, and in particular to an image display method, device and controller.
  • OLED Organic Light-Emitting Diode, organic light-emitting diode
  • display technology has the characteristics of self-luminescence, wide viewing angle, and flexible display. Among them, flexible display is a very important application. As shown in Figure 1, flexible, The foldable OLED screen uses outward folding, inward folding or other methods for full-screen display or partial screen display.
  • OLED is a current-excited light, which will be accompanied by the phenomenon of "screen burn", that is, after the display displays a still image for a long time, some residual images of the original image can still be seen after switching to another screen.
  • screen burn the phenomenon of "screen burn"
  • the use time of the display area and the non-display area are different, so that when the OLED is displayed on the full screen, it will be obvious at the junction of the display area and the non-display area.
  • the dividing line affects the uniformity of the OLED screen display.
  • the purpose of the present invention is to provide an image display method, an image display device, and a controller, by obtaining a number of columns of pixels from the first display area and the second display area as random areas at predetermined time intervals, and according to the current pattern
  • the display area of the display, the random area and the corresponding part of the first display area or the random area and the corresponding part of the second display area are displayed in a pattern; to solve the problem of the existing display area of the OLED panel
  • a clear dividing line will be seen at the interface with the non-display area, which will affect the uniformity of the OLED screen display.
  • the embodiment of the present invention provides an image display method for pattern display on a display panel.
  • the display panel includes a first display area and a second display area that are adjacently arranged, wherein the first display area and the second display area The display area does not display images at the same time, and the method includes:
  • the dividing line is used to divide the first display area and the second display area, and select from the first display area and the second display area currently being used for The display area of the pattern display is used as the target display area;
  • the position information of the dividing line and the position information of the target display area acquiring a number of columns of pixels from the first display area and the second display area at a predetermined time interval as random areas;
  • the steps of using a column of pixels as a random area include:
  • the first display area is the target display area
  • select multiple columns of pixels from both sides of the boundary line as the random area at a preset time interval Wherein the number of second pixels in the first display area is greater than the number of third pixels in the second display area, and the second pixels are pixels belonging to the random area in the first display area,
  • the third pixel is a pixel belonging to the random area in the second display area;
  • the first display area is not the target display area, based on the position information of the boundary line, select multiple columns of pixels from both sides of the boundary line as the random area at predetermined time intervals, The number of the second pixels in the first display area is less than the number of the third pixels in the second display area.
  • the multiple columns of pixels are selected from both sides of the dividing line at a predetermined time interval as the
  • the random area steps include:
  • a number of data are obtained from the first display area and the second display area at predetermined time intervals.
  • the steps of using a column of pixels as a random area include:
  • the position information of the dividing line an equal number of pixels are selected from both sides of the dividing line at predetermined time intervals, and the first display area is determined according to the position information of the target display area Whether it is the target display area;
  • the number of pixels in each column of the random area is set to be in a linearly decreasing relationship with the distance between the pixels of the corresponding column and the first display area Non-linear reduction relationship to obtain the random area;
  • the number of pixels in each column of the random area is set to be in a linearly decreasing relationship with the distance between the pixels in the corresponding column and the second display area. Non-linearly reduce the relationship to obtain the random zone.
  • the first pixel in the target display area and all the pixels in the random area are displayed in an image, and the first pixel is the target display area except for the random area.
  • the steps to occupy all pixels in other areas of the area include:
  • the first pixel and all the pixels in the random area are displayed in a pattern.
  • the embodiment of the present invention provides an image display device for performing pattern display.
  • the image display device includes a display panel, and the display panel includes a first display area and a second display area that are adjacently arranged, wherein the first display And the second display area do not perform image display at the same time, and the image display device further includes:
  • the first acquiring module is configured to acquire the position information of the dividing line, the dividing line is used to divide the first display area and the second display area, and from the first display area and the second display area Select the display area currently being used for pattern display as the target display area;
  • the second acquiring module is configured to acquire a number of columns from the first display area and the second display area at predetermined time intervals according to the position information of the dividing line and the position information of the target display area Pixels are used as random areas;
  • the third acquisition module is configured to display the first pixel in the target display area and all the pixels in the random area as an image, where the first pixel is the area occupied by the random area in the target display area All pixels in the other areas of the area.
  • the second acquisition module includes:
  • a judging sub-module for judging whether the first display area is the target display area according to the location information of the target display area
  • the first random area selection sub-module is configured to, if the first display area is the target display area, according to the position information of the boundary line, from each side of the boundary line at a preset time interval Multiple columns of pixels are selected as the random area, wherein the number of second pixels in the first display area is greater than the number of third pixels in the second display area, and the second pixels are the first display area A pixel belonging to the random area in the area, and the third pixel is a pixel belonging to the random area in the second display area;
  • the second random area selection sub-module is configured to, if the first display area is not the target display area, according to the position information of the dividing line, from each side of the dividing line at a preset time interval A plurality of columns of pixels are selected as the random area, wherein the number of the second pixels in the first display area is less than the number of the third pixels in the second display area.
  • the second acquisition module further includes:
  • the third random area selection sub-module is used to select different positions or different numbers of pixels from the two sides of the dividing line from the pixels selected in the previous preset time interval as the random Area.
  • the second acquisition module further includes:
  • the fourth random area selection sub-module is used to set every preset time according to the position information of the dividing line
  • the fifth random area selection sub-module is configured to, if the first display area is the target display area, set the number of pixels in each column to be equal to the distance between the pixels of the corresponding column and the first display area A linear reduction relationship or a non-linear reduction relationship to obtain the random region;
  • the sixth random area selection sub-module is configured to, if the first display area is not the target display area, set the number of pixels in each column to be equal to the distance between the pixels of the corresponding column and the second display area Linear reduction relationship or non-linear reduction relationship to obtain the random region.
  • the third acquisition module includes:
  • the first sub-module is used to obtain the location information of the random area and the location information of the target display area;
  • the second sub-module is configured to obtain the position information of the first pixel according to the position information of the random area and the position information of the target display area;
  • the third sub-module is configured to display the first pixel and all pixels in the random area in a pattern according to the position information of the random area and the position information of the first pixel.
  • the embodiment of the present invention also provides a controller, which is used to execute a number of instructions stored in the memory to implement the following methods:
  • the dividing line is used to divide the first display area and the second display area, and select from the first display area and the second display area currently being used for The display area of the pattern display is used as the target display area;
  • the position information of the dividing line and the position information of the target display area acquiring a number of columns of pixels from the first display area and the second display area at a predetermined time interval as random areas;
  • the steps of using a column of pixels as a random area include:
  • the first display area is the target display area
  • select multiple columns of pixels from both sides of the boundary line as the random area at a preset time interval Wherein the number of second pixels in the first display area is greater than the number of third pixels in the second display area, and the second pixels are pixels belonging to the random area in the first display area,
  • the third pixel is a pixel belonging to the random area in the second display area;
  • the first display area is not the target display area, based on the position information of the boundary line, select multiple columns of pixels from both sides of the boundary line as the random area at predetermined time intervals, The number of the second pixels in the first display area is less than the number of the third pixels in the second display area.
  • a plurality of columns of pixels are selected from both sides of the dividing line at a predetermined time interval as the random District steps, including:
  • a number of data are obtained from the first display area and the second display area at predetermined time intervals.
  • the steps of using a column of pixels as a random area include:
  • the position information of the dividing line an equal number of pixels are selected from both sides of the dividing line at predetermined time intervals, and the first display area is determined according to the position information of the target display area Whether it is the target display area;
  • the number of pixels in each column of the random area is set to be in a linearly decreasing relationship with the distance between the pixels of the corresponding column and the first display area Non-linear reduction relationship to obtain the random area;
  • the number of pixels in each column of the random area is set to be in a linearly decreasing relationship with the distance between the pixels in the corresponding column and the second display area. Non-linearly reduce the relationship to obtain the random zone.
  • the first pixel in the target display area and all the pixels in the random area are displayed in an image, and the first pixel is the target display area except for the random area.
  • the steps to occupy all pixels in other areas of the area include:
  • the first pixel and all the pixels in the random area are displayed in a pattern.
  • the present invention provides an image display method, an image display device, and a controller, by obtaining several columns of pixels from a first display area and a second display area as random areas at a preset time interval, and according to the current pattern display In the case of the display area, the random area and the corresponding part of the first display area or the random area and the corresponding part of the second display area are pattern-displayed to improve the uniformity of the screen display of the display panel.
  • FIG. 1 is a flowchart of an image display method provided by an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a display panel provided by an embodiment of the present invention.
  • step S20 of an image display method provided by an embodiment of the present invention
  • 5-10 is a schematic diagram of a random area selection method provided by an embodiment of the present invention.
  • step S20 of the image display method provided by the embodiment of the present invention is another flowchart of step S20 of the image display method provided by the embodiment of the present invention.
  • Figures 12-17 are schematic diagrams of a random area selection method provided by an embodiment of the present invention.
  • 19 is a structural block diagram of an image display device provided by an embodiment of the present invention.
  • FIG. 20 is a structural block diagram of a controller and a memory provided by an embodiment of the present invention.
  • first”, “second”, “third” and “fourth” in the present invention are used to distinguish different objects, rather than to describe a specific order.
  • the terms “including” and “having” and any variations thereof are intended to cover non-exclusive inclusion.
  • a process, method, system, product, or device that includes a series of steps or modules is not limited to the listed steps or modules, but optionally includes unlisted steps or modules, or optionally also includes Other steps or modules inherent to these processes, methods, products or equipment.
  • the execution subject of the image display method provided by the embodiment of the present invention may be the image display device provided by the embodiment of the present invention, or an electronic device integrated with the image display device, and the image display device may be implemented in hardware or software. .
  • the embodiment of the present invention provides an image display method, an image display device, a controller, and a storage medium. The detailed description will be given below.
  • FIG. 1 is a flowchart of an image display method according to an embodiment of the present invention.
  • the embodiment of the present invention provides an image display method for pattern display on a display panel.
  • the display panel 00 includes a first display area 04 and a second display area 05 arranged adjacently, wherein the The first display area 04 and the second display area 05 do not display images at the same time, and each step of the image display method of the embodiment of the present invention will be described in detail below.
  • the position information of the dividing line 02 may specifically refer to the coordinate information of each smallest unit included in the dividing line on the display panel, where the smallest unit may be regarded as one pixel.
  • obtaining the location information of the dividing line includes the following two situations:
  • the first display area and the second display area in the display panel can be divided according to preset display requirements.
  • the display areas at both ends of the dividing line can be arbitrarily defined.
  • the position information of the "first display area” and the "first display area” in the subsequent steps should correspond to this.
  • the dividing line is used to divide the first display area and the second display area, and can pass through the position of the intersection of the first display area and the second display area. Information to obtain the location information of the dividing line.
  • the first display area and the second display area in the display panel can be distinguished and defined according to the actual display conditions, and the "first display area” and “second display area” in the subsequent steps can be distinguished and defined.
  • the location information of a display area should correspond to this.
  • the dividing line that is, the dividing line is used to divide the first display area and the second display area, and can pass through the position of the intersection of the first display area and the second display area. Information to obtain the location information of the dividing line.
  • the "select target display area" described here is based on the current first display area or the second display area being used for pattern display, if the first display area or the second display area Second, if the display area is being used for pattern display, the display area being used for pattern display is selected as the target display area, and the random area can be determined directly according to the selection of the target display area later.
  • the first display area or the second display area may be determined to be used for images according to preset display requirements.
  • the display area preset for image display is selected as the target display area, and the random area can be determined directly according to the selection of the target display area later.
  • select target display area should correspond to the actual situation when the display panel is not performing image display or the display panel is displaying images when "acquiring the position information of the dividing line", and "select target display area” corresponds to The two operations of "acquiring the position information of the dividing line" can be performed in no particular order.
  • the manner of obtaining the pixels in the random area is related to the current display conditions of the first display area and the second display area, so the display conditions of the first display area and the second display area can be determined first .
  • FIG. 3 is a flowchart of step S20 of the image display method according to an embodiment of the present invention.
  • S201 Determine whether the first display area is the target display area according to the location information of the target display area.
  • the target display area is selected from the first display area and the second display area. Therefore, after the target display area is determined, "according to the location information of the target display area, If the result of judging whether the first display area is the target display area" is no, it is equivalent to defaulting that the second display area is the target display area.
  • S202 If the first display area is the target display area, according to the position information of the dividing line, select multiple columns of pixels from both sides of the dividing line at a preset time interval as the random Area, wherein the number of second pixels in the first display area is greater than the number of third pixels in the second display area, and the second pixels belong to the random area in the first display area A pixel, the third pixel is a pixel belonging to the random area in the second display area.
  • step S202 it means that the first display area is the target display area. Since the first display area is an area for image display during single-screen display, the first display area is used for image display.
  • the number of the second pixels in a display area is set to be greater than the number of the third pixels in the second display area, so that the number of pixels for image display is less than the number of pixels in the first display area during full-screen display at a later stage.
  • the above-mentioned difference occurs between the display area and the second display area, and the difference can improve the uniformity of full-screen image display.
  • S203 If the first display area is not the target display area, according to the position information of the boundary line, select multiple columns of pixels from both sides of the boundary line at a preset time interval as the random Area, wherein the number of the second pixels in the first display area is less than the number of the third pixels in the second display area.
  • step S203 it means that the second display area is the target display area. Since the second display area is an area for image display during single-screen display, the second display area is used for image display.
  • the number of the third pixels in the second display area is set to be greater than the number of the second pixels in the first display area, so that the number of pixels for image display is less than the number of pixels in the first display area during full-screen display later.
  • the above-mentioned difference occurs between the display area and the second display area, and the difference can improve the uniformity of full-screen image display.
  • the random area may be updated every time To obtain the random area that is at least different from the last time, so that when the random area and the part of the first display area corresponding to the part of the first display area or the pixels of the random area and the corresponding part of the second display area are displayed in a pattern later , It is more conducive to improving the dividing line between the target display area and the non-target display area of the display panel, and it is more conducive to improving the uniformity of the screen display of the display panel.
  • the predetermined time interval is greater than 0.05 seconds and less than or equal to 0.2 seconds. It is understandable, but if the number of columns of pixels in the random area is large, the preset time interval should not be too short, and can be controlled within 0.5 seconds to 2 seconds.
  • the preset time interval of each time can be a certain value or a variable. If it is a variable, it can be generated by a random mechanism, or a plurality of presets can be stored in advance. Time interval value.
  • the display panel 00 further includes a bending area 01.
  • the bending area 01 is formed by bending the display panel along the dividing line 02.
  • the number of columns of pixels contained in the bending area 01 can be accurately measured by an instrument, and the number of columns of pixels in the random area 03 is greater than 4 but less than 300, The number of columns of pixels included in the bending area 01 does not exceed 50 or more. It is understandable that for display panels of different sizes or resolutions, the range of the number of pixels in the random area 03 can be adjusted accordingly to ensure that the first display area 04 or the second display is not affected. Normal display effect when area 05 is displayed alone.
  • FIG. 4 is another flowchart of step S20 of the image display method according to the embodiment of the present invention.
  • S204 According to the position information of the dividing line, select an equal number of pixels from both sides of the dividing line as the random area at a preset time interval, and according to the position information of the target display area, It is determined whether the first display area is the target display area.
  • this flowchart is for the case where the number of columns of the third pixels in the first display area is equal to the number of columns of the fourth pixels in the second display area, as shown in FIG.
  • x is the horizontal distance between the pixel and the dividing line 02
  • 50 means that the horizontal distance between the pixel and the dividing line 02 is positive 50
  • y is the total distance between each row of the pixel and the row. It is the ratio of full pixels. For example, 100% means that the column of pixels occupies the entire column of pixel vacancies.
  • the bending area 01 has 200 columns of pixels, and 50 columns of pixels may be selected on both sides of the dividing line 02 as the random area 01, and the predetermined time interval may be set as 0.1 second.
  • the two operations of "selecting pixels of equal number of columns" and “determining whether the first display area is the target display area according to the position information of the target display area” can be in no particular order.
  • the average number of the second pixels in each column of the first display area should be greater than the average number of the third pixels in each column of the second display area to realize the random area
  • the number of pixels closer to the first display area may be greater than the number of pixels closer to the second display area in the random area.
  • the random area 03 includes 50 columns of third pixels and 50 columns of fourth pixels, and the number of third pixels is greater than the number of fourth pixels, and further ,
  • the random area 03 includes 50 columns of third pixels and 50 columns of fourth pixels, and the number of third pixels is greater than the number of fourth pixels, and further , Because the image is not a straight line on the plane, the product of the corresponding two numbers in the two quantities x and y is not a fixed value, so the relationship between x and y is not inversely proportional, so the random area 03
  • the number of pixels in each column of and the distance between the pixels of the corresponding column and the first display area 04 are in a non-linear decreasing relationship.
  • the number of pixels in each column of the random area 03 and the distance between the pixels of the corresponding column and the first display area 04 are linearly or non-linearly decreasing, that is, each column in the random area is relative to each other.
  • the number of pixels close to the first display area is set to be greater than the number of pixels close to the second display area in each column in the random area, so that in the later full-screen display, the pixels for image display There is a monotonous decrease in the number from the first display area to the second display area, forming a "transition area" related to the target display area, which can further improve the uniformity of full-screen image display.
  • the number of pixels in the random area 03 may increase first from the first display area 04 to the second display area 05
  • the trend of decreasing afterwards can also show a trend of first decreasing and then increasing, or a trend of increasing and decreasing alternately, or a trend of decreasing all the time.
  • the random area 03 includes 50 columns of third pixels and 50 columns of fourth pixels. The wavy lines in the image tend to increase and decrease alternately, but macroscopically, the wavy lines decrease. Therefore, it can be determined that the number of the third pixels is greater than the number of the fourth pixels.
  • the average number of the second pixels in each column of the first display area should be less than the average number of the third pixels in each column of the second display area to realize the random area
  • the number of pixels closer to the first display area may be smaller than the number of pixels closer to the second display area in the random area.
  • the difference between the two is only that the positions of the first display area 04 and the second display area 05 are replaced, so you can refer to the related description of FIG. 8 It can be seen that the number of pixels in each column of the random area 03 and the distance between the pixels of the corresponding column and the second display area 05 are linearly decreasing.
  • the number of pixels in each column of the random area 03 and the distance between the pixels of the corresponding column and the second display area 05 are in a linear or non-linear decreasing relationship, which can further improve the uniformity of full-screen image display.
  • the number of pixels in the random area may first increase and then decrease from the first display area to the second display area. It can also show a trend of first decreasing and then increasing, it can also show an alternating trend of increasing and decreasing, or it can show a trend of increasing all the time. It should be noted that it is only necessary to ensure that the number of third pixels in the first display area is less than the number of fourth pixels in the second display area. For example, as shown in FIG. 10, compared with FIG. 5, the difference between the two is only that the positions of the first display area 04 and the second display area 05 are replaced. Therefore, you can refer to the related description of FIG. 5 to know that the random area The number of the pixels in each column of 03 and the distance between the pixels of the corresponding column and the second display area 05 are in a wave-like relationship of increasing and decreasing alternately.
  • the decreasing or increasing trend of the number of pixels in the random area is not limited to the specific decreasing or increasing number.
  • FIG. 11 is another flowchart of step S20 of the image display method provided by the embodiment of the present invention.
  • the bending area 01 has 200 columns of pixels, and multiple columns of pixels can be selected from the side of the dividing line 02 close to the first display area 04.
  • the dividing line 02 is close to the second display area 05 and multiple columns are selected as the random area 03, and the average number of columns of the second pixels in the first display area 04 is equal to the second
  • the preset time interval may be set as 0.1 second.
  • the number of columns of the second pixels in the first display area 04 should be greater than the number of columns of the third pixels in the second display area 05
  • the number of pixels close to the first display area 04 in the random area may be greater than the number of pixels close to the second display area 05 in the random area.
  • 100 columns of pixels are selected from the side of the dividing line 05 close to the first display area 04, and selected from the side of the dividing line 02 close to the second display area 05 50 columns of pixels are used as the random area 03, and the number of the second pixels is greater than the number of the third pixels.
  • the image is a straight line parallel to the x-axis on the plane, the random area 03 The number of pixels in each column of second pixels and each column of third pixels is equal.
  • 100 columns of pixels are selected from the side of the dividing line 02 close to the first display area 04, and selected from the side of the dividing line 02 close to the second display area 05 50 columns of pixels are used as the random area 03, and the number of the second pixels is greater than the number of the third pixels.
  • the image is a wavy line on the plane that alternately increases and decreases, which can make
  • the average number of column pixels of the second pixel in the random area 03 is equal to the average number of column pixels of the third pixel in each column.
  • the number of columns of the second pixels in the first display area should be less than the number of columns of the third pixels in the second display area to achieve the
  • the number of pixels closer to the first display area in the random area may be greater than the number of pixels closer to the second display area in the random area.
  • the difference between the two is only that the positions of the first display area 04 and the second display area 05 are replaced. Therefore, you can refer to the related description of FIG. 13 to know that the random area
  • the average number of column pixels of the second pixel in 03 is equal to the average number of column pixels of the third pixel in each column.
  • step S20 of the image display method provided by the embodiment of the present invention may further include but is not limited to the following embodiments.
  • pixels with unequal numbers of columns may be selected from both sides of the dividing line as the random area at a predetermined time interval. That is, the number of columns of the second pixels in the first display area is not equal to the number of columns of the third pixels in the second display area.
  • the average of the second pixels in each column of the first display area can be greater than, less than or equal to the average number of the third pixels in each column of the second display area.
  • the average number of the second pixels in each column in the first display area When it is less than or equal to the average number of the third pixels in each column of the second display area, the number of columns of the second pixels should be greater than the number of columns of the third pixels; if the columns of the second pixels Number is less than or equal to the number of columns of the third pixels in the second display area, then the average number of the second pixels in each column of the first display area should be greater than that in the second display area
  • the average number of the third pixels in each column is to ensure that the number of second pixels in the first display area is greater than the number of third pixels in the second display area.
  • the preset time interval can be set as 0.1 second.
  • the average number of the second pixels in each column in the first display area is greater than the average number of the third pixels in each column in the second display area, and further, because the image is not a flat line Straight line, the product of the two corresponding numbers in the two quantities x and y is not a fixed value, so the relationship between x and y is not inversely proportional, so the number of pixels in each column of the random area 03 is sum.
  • the distance between the pixels of the corresponding column and the first display area 04 is in a non-linear decreasing relationship.
  • the number of columns of the second pixels in this embodiment is greater than the number of columns of the third pixels, and the average number of second pixels is greater than the average number of third pixels, so the The number of second pixels in the first display area is greater than the number of third pixels in the second display area.
  • the above analysis can be referred to.
  • multiple columns of pixels with unequal average numbers of columns of pixels may be selected from both sides of the dividing line at a predetermined time interval as the random area. That is, the average number of column pixels of the second pixel in the first display area is not equal to the average number of column pixels of each column of the fourth pixel in the third display area.
  • the second pixel in the first display area can be greater than, less than, or equal to the number of columns of the third pixels in the second display area.
  • the average number of column pixels of the second pixel should be greater than the average number of column pixels of the third pixel;
  • the average number is less than or equal to the average number of columns of the third pixel, then the number of columns of the second pixel in the first display area should be greater than the number of columns of the third pixel in the second display area So as to ensure that the number of second pixels in the first display area is greater than the number of third pixels in the second display area.
  • the preset time interval can be set as 0.1 second.
  • the average number of the second pixels in each column in the first display area is less than the average number of the third pixels in each column in the second display area.
  • the image of the second pixel is not on a plane
  • the product of the two corresponding numbers in the two quantities x and y is not a fixed value, so the relationship between x and y is not inversely proportional, so the second pixel in each column of the pixel
  • the number and the distance between the pixels of the corresponding column and the first display area 04 show a non-linear decrease
  • the image of the third pixel is a straight line parallel to the x-axis on the plane, so each column of the third pixel
  • the number of pixels is a fixed value. It can be understood that although the number of columns of the second pixels is greater than the number of columns of the third pixels in the second display area in this embodiment, the average number of the second pixels is greater than that of the third pixels. Therefore, as long as the average number of the second pixels is controlled to be greater than the average number of the third pixels by a certain value, the number of second pixels in the first display area can be greater than that in the second display area.
  • the number of third pixels is large
  • the above analysis can be referred to.
  • the second pixel in the first display area and the third pixel in the second display area may both be close to the dividing line.
  • the second pixel can also be selected from the first display area to the random area with a preset number of pixels at equal intervals, or the third pixel is also selected from the area, or from the dividing line as the starting point.
  • a preset number of columns of pixels can be selected at equal intervals from the second display area to the random area.
  • the column selection method of the pixels in the random area in the first direction and the single pixel selection method of a certain column of the pixels in the second direction may be uniform selection, for example, the interval is one column/one.
  • the non-uniform selection may include part of the uniform selection and part of the non-uniform selection, and the pixels in each column are in the second direction
  • the single pixel selection method on the above can be different, wherein the first direction is defined as the direction in which the first display area and the second display area are arranged, and the second direction is defined as a direction perpendicular to the first direction.
  • the position selection of each pixel in each group of the random area can be generated by a random mechanism, or manually pre-stored in the position coordinates of each pixel in multiple groups of the random area, and then later According to different preset time intervals, the random area is acquired according to the generation order or the storage order of the random area.
  • FIG. 18 is a flowchart of step S30 of an image display method provided by an embodiment of the present invention.
  • S301 Acquire location information of a random area and location information of the target display area.
  • step S20 the random area has been determined in step S20, and the target display area has been determined in step S10. Therefore, here it is only necessary to obtain the corresponding information according to the target display area and the random area. Location information.
  • the location information of the target display area can be directly read and stored, and after the random area is determined, the location information of the target display area can be directly read and stored.
  • the location information in step S301, the location information of the random area and the location information of the target display area can be directly retrieved.
  • the position information of the random area and the position information of the first display area may be read in step S301.
  • S302 Obtain the position information of the first pixel according to the position information of the random area and the position information of the target display area.
  • the first pixels are all pixels in the target display area except for the area occupied by the random area, when the position information of the random area and the target display area are acquired After the position information, the position information of the first pixel can be obtained by calculation.
  • S303 According to the position information of the random area and the position information of the first pixel, display the first pixel and all pixels in the random area in a pattern.
  • the first display area is the target display area at this time, and the number of second pixels in the first display area is greater than that of the third pixels in the second display area. Therefore, when performing image display in the first display area, all the pixels in the random area can play a transitional role between the first display area and the second display area; if this When the second display area is the target display area, the above description can be referred to for the same reason. In this way, during full-screen display, that is, the first display area, the second display area, and the display, there will be no obvious dividing section between the first display area and the second display area.
  • the invention can enable the display panel to improve the uniformity of the screen display of the display panel.
  • an image display device is provided in an embodiment.
  • FIG. 19 is a schematic structural diagram of an image display device 100 according to an embodiment of the present invention.
  • the image display device 100 of this embodiment is used for pattern display.
  • the image display device 100 of this embodiment includes a first acquisition module 101, a second acquisition module 102, and a third acquisition module 103, which are specifically described as follows:
  • the first acquisition module 101 is configured to acquire position information of a dividing line, the dividing line is used to divide the first display area and the second display area, and from the first display area and the second display area Select the display area currently being used for pattern display as the target display area.
  • the position information of the dividing line 02 may specifically refer to the coordinate information of each smallest unit included in the dividing line on the display panel, where the smallest unit may be regarded as one pixel.
  • obtaining the location information of the dividing line includes the following two situations:
  • the first display area and the second display area in the display panel can be divided according to preset display requirements.
  • the display areas at both ends of the dividing line can be arbitrarily defined.
  • the first display area and the second display area it can be understood that the position information of the "first display area” and the "first display area” in the subsequent steps should correspond to this.
  • the first obtaining module 101 may obtain the first display area, the second display area
  • the position information of the intersection of the two display areas is used to obtain the position information of the dividing line.
  • the first display area and the second display area in the display panel can be distinguished and defined according to the actual display conditions, and the "first display area” and “second display area” in the subsequent steps can be distinguished and defined.
  • the location information of a display area should correspond to this.
  • the first obtaining module 101 may obtain the first display area, the second display area Second, display the position information of the intersection of the area to determine the position information of the dividing line.
  • the "select target display area" described here is based on the current first display area or the second display area being used for pattern display, if the first display area or the second display area The second display area is being used for pattern display.
  • the first acquisition module 101 can acquire the display area currently being used for pattern display through the image sensor, or acquire the currently used pattern through the display data information of the background display area.
  • the displayed display area is used as the target display area, and position information of the target display area can be stored, and the random area can be determined directly according to the selection of the target display area later.
  • the first acquisition module 101 may determine the first display area or the second display area according to a preset display requirement.
  • the second display area is used as the display area for image display.
  • the display area preset for image display is selected as the target display area and the position information of the target display area can be stored. Later, the selection of the target display area can be directly based on Situation to determine the random zone.
  • select target display area should correspond to the actual situation when the display panel is not performing image display or the display panel is displaying images when "acquiring the position information of the dividing line", and "select target display area” corresponds to The two operations of "acquiring the position information of the dividing line" can be performed in no particular order.
  • the second obtaining module 102 is configured to obtain several pieces of information from the first display area and the second display area at predetermined time intervals according to the position information of the dividing line and the position information of the target display area.
  • the column of pixels serves as a random area.
  • the manner of obtaining the pixels in the random area is related to the current display conditions of the first display area and the second display area, so the display conditions of the first display area and the second display area can be determined first .
  • the second acquisition module 102 may include a judging sub-module 1021, a first random area selection sub-module 1022, a second random area selection sub-module 1023, and the specific description is as follows:
  • the judging submodule 1021 is configured to judge whether the first display area is the target display area according to the location information of the target display area.
  • the target display area is selected from the first display area and the second display area, and the judgment sub-module 1021 may compare the position information of the target display area and the first display area.
  • the location information of the second display area and the location information of the second display area are compared to determine whether the location information of the target display area is consistent with the location information of the first display area or the second display area. Whether the first display area is the target display area.
  • the first random area selection submodule 1022 is configured to, if the first display area is the target display area, according to the position information of the boundary line, start from both sides of the boundary line at predetermined time intervals Several columns of pixels are selected as the random area, wherein the number of second pixels in the first display area is greater than the number of third pixels in the second display area, and the second pixels are the first display area
  • the third pixel is a pixel belonging to the random area in the second display area.
  • the first random area selection submodule 1022 may obtain the position information of the boundary line and the information of the target display area from the first obtaining module 101, and according to the judgment result of the judgment submodule 1021, When the first display area is the target display area, the first random area selection sub-module 1022 will follow the above-mentioned "The number of second pixels in the first display area is greater than that in the second display area The random area is selected according to the rule of "the number of third pixels is large".
  • the second random area selection sub-module 1023 is configured to, if the first display area is not the target display area, according to the position information of the boundary line, from each side of the boundary line at a preset time interval Several columns of pixels are selected as the random area, wherein the number of the second pixels in the first display area is smaller than the number of the third pixels in the second display area.
  • the difference between the second random area selection sub-module 1023 and the first random area selection sub-module 1022 is only that when the determination sub-module 1021 determines that when the first display area is the target In the display area, the second random area selection sub-module 1023 will follow the rule of “the number of second pixels in the first display area is less than the number of third pixels in the second display area” to select The random area.
  • the first random area selection submodule 1022 please refer to the description of the first random area selection submodule 1022.
  • the second acquisition module 102 may further include a third random area selection sub-module 1024, which is configured to select from both sides of the dividing line at a preset time interval from the previous preset time interval. Different positions or different numbers of pixels selected within the time interval are used as the random area.
  • the third random area selection sub-module 1024 may also assist the first random area selection sub-module 1022 or the second random area selection sub-module 1023 to select each time within the preset time interval as the The positions or numbers of pixels in several columns of the random area are different. It is understandable that if the first random area selection sub-module 1022 or the second random area selection sub-module 1023 selects the random area selected twice or within the preset time interval each time. If the positions or numbers of pixels in several columns are not the same, after each update of the random area, the random area that is at least different from the previous time can be obtained, so that the random area and the part corresponding to the part will be displayed first.
  • Area or pattern display of pixels in the random area and the corresponding part of the second display area which is more conducive to improving the boundary between the target display area and non-target display area of the display panel, and is more conducive to Improve the uniformity of the screen display of the display panel.
  • the predetermined time interval is greater than 0.05 seconds and less than or equal to 0.2 seconds. It is understandable, but if the number of columns of pixels in the random area is large, the preset time interval should not be too short, and can be controlled within 0.5 seconds to 2 seconds.
  • the preset time interval of each time can be a certain value or a variable. If it is a variable, it can be generated by a random mechanism, or a plurality of presets can be stored in advance. Time interval value.
  • the display panel 00 further includes a bending area 01.
  • the bending area 01 is formed by bending the display panel along the dividing line 02.
  • the number of columns of pixels contained in the bending area 01 can be accurately measured by an instrument, and the number of columns of pixels in the random area 03 is greater than 4 but less than 300, The number of columns of pixels included in the bending area 01 does not exceed 50 or more. It is understandable that for display panels of different sizes or resolutions, the range of the number of pixels in the random area 03 can be adjusted accordingly to ensure that the first display area 04 or the second display is not affected. Normal display effect when area 05 is displayed alone.
  • the second acquisition module 102 may further include a fourth random area selection sub-module 1025, a fifth random area selection sub-module 1026, and a sixth random area selection sub-module 1027, which are specifically described as follows:
  • the fourth random area selection sub-module 1025 is used to select equal columns of pixels from both sides of the boundary line at predetermined time intervals according to the position information of the boundary line, and according to the target display area To determine whether the first display area is the target display area.
  • the fourth random area selection submodule 1025 may obtain the position information of the boundary line from the first acquisition module 101, and with the assistance of the third random area selection submodule 1024, every other 1.
  • the fourth random area selection sub-module 1025 may randomly select an equal number of columns from both sides of the dividing line on the premise that the total number of pixel columns in the random area meets the requirements Pixels; and the fourth random area selection sub-module 1025 may obtain the judgment result from the judgment sub-module 1021, or the fourth random area selection sub-module 1025 has the same judgment function as the judgment sub-module 1021.
  • the fifth random area selection sub-module 1026 is configured to set the number of pixels in each column of the random area to be equal to the number of pixels in the corresponding column and the first display area when the first display area is used for pattern display.
  • the distance of the zone is in a linear decreasing relationship or in a non-linear decreasing relationship to obtain the random zone.
  • the fifth random area selection sub-module 1026 can obtain the pixels of the same number of columns that have been selected by the fourth random area selection sub-module 1025 and the above-mentioned judgment result. For example, when the above-mentioned judgment result is "Yes", the The fifth random area selection sub-module 1026 further follows the above-mentioned “setting the number of pixels in each column of the random area to be equal to the number of pixels in the corresponding column and the pixels of the The random area is determined by the rule of "the distance of the first display area decreases linearly or decreases nonlinearly".
  • the sixth random area selection sub-module 1027 is used to set the number of pixels in each column of the random area to equal the number of pixels in the corresponding column and the second display area when the first display area is not the target display area.
  • the distance of the display area is linearly reduced or non-linearly reduced to obtain the random area.
  • the difference between the sixth random area selection sub-module 1027 and the fifth random area selection sub-module 1026 is only that, when the above judgment result is "No", the sixth random area selection sub-module 1027
  • the above rule of “setting the number of pixels in each column of the random area to be linearly decreasing or in a non-linear decreasing relationship with the distance between the pixels in the corresponding column and the second display area” will be followed to select the Random area.
  • the second acquisition module 102 may further include a seventh random area selection sub-module 1028, an eighth random area selection sub-module 1029, and a ninth random area selection sub-module 10210, which are specifically described as follows:
  • the seventh random area selection submodule 1028 is configured to select pixels with the same average number of pixels in a column from both sides of the boundary line at a predetermined time interval as the random area according to the position information of the boundary line, And according to the location information of the target display area, it is determined whether the first display area is the target display area.
  • the seventh random area selection submodule 1028 may obtain the position information of the boundary line from the first acquisition module 101, and with the assistance of the third random area selection submodule 1024, every other For the preset time interval, the seventh random area selection sub-module 1028 may randomly select the average number of columns of pixels from both sides of the dividing line on the premise that the total number of pixel columns in the random area meets the requirements Equal pixels; and the seventh random area selection sub-module 1028 may obtain the judgment result from the judgment sub-module 1021, or the seventh random area selection sub-module 1028 has the same judgment function as the judgment sub-module 1021 .
  • the eighth random area selection sub-module 1029 is configured to set the number of columns of the second pixels in the first display area to be greater than that of the second display area when the first display area is used for pattern display To obtain the random area.
  • the eighth random area selection sub-module 1029 can obtain the pixels with the same average number of pixels in the column that the seventh random area selection sub-module 1028 has selected and the above-mentioned judgment result, for example, when the above-mentioned judgment result is "Yes",
  • the eighth random area selection submodule 1029 further follows the above-mentioned "setting the number of columns of the second pixels in the first display area to be greater than the number of columns of the second pixel in the first display area on the premise of the pixels of the same number of columns that have been selected
  • the random area is determined by the rule of the number of columns of the third pixels in the second display area.
  • the ninth random area selection sub-module 10210 is used to set the number of columns of the second pixels in the first display area to be smaller than that of the second display area when the first display area is not the target display area The number of columns of the third pixel in the area to obtain the random area.
  • the difference between the ninth random area selection sub-module 10210 and the eighth random area selection sub-module 1029 is only that, when the above judgment result is "No", the ninth random area selection sub-module 10210
  • the random area will be selected according to the above-mentioned rule of "setting the number of columns of the second pixels in the first display area to be smaller than the number of columns of the third pixels in the second display area”.
  • the eighth random area selection submodule 1029 please refer to the description of the eighth random area selection submodule 1029.
  • any module in the second acquiring module 102 acquires the random area, it can use the third random area selection sub-module 1024 to assist in achieving that within two adjacent preset time intervals
  • the selected random area has different functions.
  • the third acquisition module 103 is configured to display the first pixel in the target display area and all the pixels in the random area as an image, and the first pixel is all pixels in the target display area except for the random area. Occupy all pixels in other areas of the area.
  • the third acquiring module 103 may include a first sub-module 1031, a second sub-module 1032, and a third sub-module 1033.
  • the specific description is as follows:
  • the first sub-module 1031 is used to obtain the location information of the random area and the location information of the target display area.
  • the first sub-module 1031 may obtain the location information of the target display area from the first obtaining module 101 and may obtain the location information of the random area from the corresponding module in the second obtaining module 102 .
  • the second sub-module 1032 is configured to obtain the position information of the first pixel according to the position information of the random area and the position information of the target display area.
  • the second sub-module 1032 may be based on the location information of the random area and all the pixels.
  • the random area is subtracted from the target display area, that is, the position information of the first pixel is obtained by calculation.
  • the third sub-module 1033 displays the first pixel and all pixels in the random area in a pattern according to the position information of the random area and the position information of the first pixel.
  • the third submodule 1033 may obtain the location information of the random area from the corresponding module in the second obtaining module 102, and obtain the information of the first pixel from the second submodule 1032. Position information, and based on the above-mentioned position information, pattern display of the first pixel and all pixels in the random area.
  • a controller and memory are also provided.
  • FIG. 20 is a schematic structural diagram of a controller and a memory provided by an embodiment of the present invention.
  • the memory 201 can be used to store software programs and modules, and it mainly includes a program storage area and a data storage area.
  • the controller 202 executes various functional applications and data processing by running software programs and modules stored in the memory 201.
  • the controller 202 executes various functions and processes data by running or executing software programs or modules stored in the memory 201, and calling data stored in the memory 201, so as to perform overall monitoring.
  • the controller 202 obtains position information of a dividing line, which is used to divide the first display area and the second display area, wherein the first display area and the second display area are The display area is two display areas arranged adjacently on the display panel.
  • the controller 202 obtains several columns of pixels from the first display area and the second display area as random areas at predetermined time intervals according to the position information of the dividing line, which is implemented as follows step:
  • the controller 202 first selects the display area currently being used for pattern display from the first display area and the second display area as the target display area; then determines that the target display area is the first display area Or the second display area; when the first display area is the target display area, according to the position information of the dividing line, multiple selections are selected from both sides of the dividing line at predetermined time intervals.
  • a column of pixels as the random area wherein the number of second pixels in the first display area is greater than the number of third pixels in the second display area, and the second pixels are in the first display area Pixels belonging to the random area, the third pixel is a pixel belonging to the random area in the second display area; when the second display area is the target display area, according to the boundary line Position information, selecting multiple columns of pixels from both sides of the dividing line as the random area at a predetermined time interval, wherein the number of the second pixels in the first display area is smaller than that of the second The number of the third pixels in the display area.
  • the controller 202 displays the first pixels in the first display area and all pixels in the random area for pattern display, and the One pixel is all pixels in the first display area except for the area occupied by the random area.
  • the controller 202 displays the second pixels in the second display area and all pixels in the random area for pattern display, and the first Two pixels are all pixels in the second display area except for the area occupied by the random area.
  • the program can be stored in a computer-readable storage medium, such as It is stored in the memory of the electronic device and executed by at least one processor in the electronic device, and the process of the charging reminder method may be included in the execution process.
  • the storage medium may include: Read Only Memory (ROM, Read Only Memory), Random Access Memory (RAM, Random Access Memory), magnetic disks or optical disks, etc.
  • the present invention provides an image display method, an image display device, and a controller, by obtaining a number of columns of pixels from the first display area and the second display area at a predetermined time interval as random areas, and According to the display area currently used for pattern display, the random area and the corresponding part of the first display area or the random area and the corresponding part of the second display area are displayed in a pattern, which improves the screen of the display panel The uniformity of the display.
  • the image display method, device, controller, and storage medium provided by the embodiments of the present invention are described in detail above.
  • the functional modules can be integrated into one processing chip, or each module can exist alone physically, or two or two More than one module is integrated in one module.
  • the above-mentioned integrated modules can be implemented in the form of hardware or software functional modules. Specific examples are used in this article to describe the principles and implementation of the present invention. The description of the above examples is only used to help understand the method and core idea of the present invention; and, for those skilled in the art, according to the present invention The idea, the specific implementation and the scope of application will be changed. In summary, the content of this specification should not be construed as a limitation to the present invention.

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Abstract

本发明提供了图像显示方法、装置、控制器,通过获取分界线的位置信息,再每隔一预设时间间隔从第一显示区和第二显示区中获取若干列像素作为随机区,最后根据当前用于图案显示的显示区情况,将随机区与相应的部分第一显示区或者将随机区与相应的部分第二显示区的像素进行图案显示。

Description

图像显示方法、装置以及控制器 技术领域
本发明涉及显示技术领域,尤其涉及图像显示方法、装置以及控制器。
背景技术
OLED(Organic Light-Emitting Diode,有机发光二极管)显示技术具有自发光、广视角、柔性化显示等特点,其中,柔性化显示是一个很重要的应用,如图1所示,可以将柔性的、可折叠的OLED屏幕利用外折、内折或者其他的方式来进行全屏幕的显示或者部分屏幕的显示。
但是OLED属于电流激发发光,会伴随“烧屏”的现象,即显示器长时间显示静止图像后,切换到别的画面仍能看见部分原图像的残影。对OLED进行部分屏幕的显示的时候,显示区域和非显示区域的使用时间不同,从而造成在对OLED进行全屏幕的显示的时候,在所述显示区域和非显示区域的交界部会看到明显的分界线,影响OLED的屏幕显示的均匀性。
因此,有必要提供可以提高OLED的屏幕显示的均匀性的图像显示方法、图像显示装置以及控制器。
技术问题
本发明的目的在于提供图像显示方法、图像显示装置以及控制器,通过每隔一预设时间间隔从第一显示区和第二显示区中获取若干列像素作为随机区,并且根据当前用于图案显示的显示区情况,将所述随机区与相应的部分第一显示区或者将所述随机区与相应的部分第二显示区的像素进行图案显示;以解决现有的在OLED面板的显示区域和非显示区域的交界部会看到明显的分界线,从而影响OLED的屏幕显示的均匀性的问题。
技术解决方案
为解决上述问题,本发明提供的技术方案如下:
本发明实施例提供图像显示方法,用于对显示面板进行图案显示,所述显示面板包括相邻设置的第一显示区、第二显示区,其中,所述第一显示区和所述第二显示区不同时进行图像显示,所述方法包括:
获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区;
根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区;
将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
在一实施例中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取多列像素作为随机区的步骤,包括:
根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
若所述第一显示区是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素;
若所述第一显示区不是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
在一实施例中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,所述每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区步骤,包括:
每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。
在一实施例中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区的步骤,包括:
根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取相等列数的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
若所述第一显示区是所述目标显示区,则将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区;
若所述第一显示区不是所述目标显示区,则将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
在一实施例中,所述将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素的步骤,包括:
获取所述随机区的位置信息以及所述目标显示区的位置信息;
根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息;
根据所述随机区的位置信息以及所述第一像素的位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
本发明实施例提供图像显示装置,用于进行图案显示,所述图像显示装置包括显示面板,所述显示面板包括相邻设置的第一显示区、第二显示区,其中,所述第一显示区和所述第二显示区不同时进行图像显示,所述图像显示装置还包括:
第一获取模块,用于获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区;
第二获取模块,用于根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区;
第三获取模块,用于将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
在一实施例中,所述第二获取模块包括:
判断子模块,用于根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
第一随机区选取子模块,用于若所述第一显示区是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素;
第二随机区选取子模块,用于若所述第一显示区不是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
在一实施例中,所述第二获取模块还包括:
第三随机区选取子模块,用于每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。
在一实施例中,所述第二获取模块还包括:
第四随机区选取子模块,用于根据所述分界线的位置信息,每隔一预设时
间间隔从所述分界线的两侧各选取相等列数的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
第五随机区选取子模块,用于若所述第一显示区是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区;
第六随机区选取子模块,用于若所述第一显示区不是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
在一实施例中,所述第三获取模块包括:
第一子模块,用于获取所述随机区的位置信息以及所述目标显示区的位置信息;
第二子模块,用于根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息;
第三子模块,用于根据所述随机区的位置信息以及所述第一像素的位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
本发明实施例还提供控制器,所述控制器用于执行存储于存储器的若干指令,以实现以下方法:
获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区;
根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区;
将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
在一实施例中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取多列像素作为随机区的步骤,包括:
根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
若所述第一显示区是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素;
若所述第一显示区不是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
在一实施例中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区步骤,包括:
每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。
在一实施例中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区的步骤,包括:
根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取相等列数的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
若所述第一显示区是所述目标显示区,则将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区;
若所述第一显示区不是所述目标显示区,则将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
在一实施例中,所述将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素的步骤,包括:
获取所述随机区的位置信息以及所述目标显示区的位置信息;
根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息;
根据所述随机区的位置信息以及所述第一像素的位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
有益效果
本发明提供了图像显示方法、图像显示装置以及控制器,通过每隔一预设时间间隔从第一显示区和第二显示区中获取若干列像素作为随机区,并且根据当前用于图案显示的显示区情况,将所述随机区与相应的部分第一显示区或者将所述随机区与相应的部分第二显示区的像素进行图案显示,提高了显示面板的屏幕显示的均匀性。
附图说明
下面通过附图来对本发明进行进一步说明。需要说明的是,下面描述中的附图仅仅是用于解释说明本发明的一些实施例,对于本领域技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明实施例提供的图像显示方法的流程图;
图2为本发明实施例提供的显示面板的结构示意图;
图3为本发明实施例提供的图像显示方法的步骤S20的流程图;
图4为本发明实施例提供的图像显示方法的步骤S20的另一流程图;
图5-10为本发明实施例提供的随机区域的选取方式示意图;
图11为本发明实施例提供的图像显示方法的步骤S20的又一流程图;
图12-17为本发明实施例提供的随机区域的选取方式示意图;
图18为本发明实施例提供的图像显示方法的步骤S30的流程图;
图19为本发明实施例提供的图像显示装置的结构框图;
图20为本发明实施例提供的控制器和存储器的结构框图。
本发明的实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整的描述。显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明中的术语“第一”、“第二”、“第三”和“第四”等是用于区别不同对象,而不是用于描述特定顺序。此外,术语“包括”和“具有”以及它们任何变形,意图在于覆盖不排他的包含。例如包含了一系列步骤或模块的过程、方法、系统、产品或设备没有限定于已列出的步骤或模块,而是可选地还包括没有列出的步骤或模块,或可选地还包括对于这些过程、方法、产品或设备固有的其它步骤或模块。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本发明的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
本发明实施例提供的图像显示方法的执行主体,可以为本发明实施例提供的图像显示装置,或者集成了所述图像显示装置的电子设备,所述图像显示装置可以采用硬件或者软件的方式实现。
本发明实施例提供了一种图像显示方法、图像显示装置、控制器及存储介质。以下将分别进行详细说明。
请参考图1,图1为本发明实施例提供的图像显示方法的流程图。本发明实施例提供图像显示方法,用于对显示面板进行图案显示,如图2所示,所述显示面板00包括相邻设置的第一显示区04、第二显示区05,其中,所述第一显示区04和所述第二显示05区不同时进行图像显示,下面对本发明实施例的图像显示方法的各个步骤进行详细说明。
S10,获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区。
其中,如图2所示,所述分界线02的位置信息具体可以指代为所述分界线包含的每一最小单元在所述显示面板上的坐标信息,此处最小单元可以认为一个像素。
此处,获取分界线的位置信息包括以下两种情况:
当显示面板未进行图像显示时,可以根据预设的显示要求来划分所述显示面板中的所述第一显示区、第二显示区,此处可以任意定义所述分界线两端的显示区分别为所述第一显示区、第二显示区,可以理解的,后续步骤中的“第一显示区”、“第一显示区”的位置信息应该与此处相对应。根据所述分界线的功能性定义,即所述分界线用于分割所述第一显示区和所述第二显示区,可以通过所述第一显示区、第二显示区的交线的位置信息来获取分界线的位置信息。
当显示面板正在进行图像显示时,可以根据实际的显示情况来区分和定义所述显示面板中的所述第一显示区、第二显示区,后续步骤中的“第一显示区”、“第一显示区”的位置信息应该与此处相对应。根据所述分界线的功能性定义,即所述分界线用于分割所述第一显示区和所述第二显示区,可以通过所述第一显示区、第二显示区的交线的位置信息来获取分界线的位置信息。
可以理解的,此处描述的“选取目标显示区”是建立在目前所述第一显示区或者所述第二显示区正在用于图案显示上的,若所述第一显示区或者所述第二显示区正在用于图案显示,则选取正在用于图案显示的显示区为目标显示区,后期可以直接根据所述目标显示区的选取情况来确定所述随机区。
可代替的,当所述第一显示区和所述第二显示区均未正在进行图像显示时,可以根据预设的显示要求来确定所述第一显示区或者第二显示区当作用于图像显示的显示区,将预设用于图像显示的显示区选取为目标显示区,后期可以直接根据所述目标显示区的选取情况来确定所述随机区。
可以理解的是,“选取目标显示区”应该与“获取分界线的位置信息”时的显示面板未进行图像显示或者显示面板正在进行图像显示的实际状况相对应,并且“选取目标显示区”与“获取分界线的位置信息”两个操作可以不分先后进行。
S20,根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区。
其中,获取所述随机区中的所述像素的方式与所述第一显示区、第二显示区的目前显示情况相关,因此可以先确定所述第一显示区、第二显示区的显示情况。
在一实施例中,请参考图3,图3为本发明实施例提供的图像显示方法的步骤S20的流程图。
S201,根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区。
可以理解的,所述目标显示区是从所述第一显示区、第二显示区两者中选取其一的,所以所述目标显示区确定以后,“根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区”结果为否的话,相当于默认所述第二显示区是所述目标显示区。
S202,若所述第一显示区是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素。
可以理解的是,步骤S202中即表示所述第一显示区为所述目标显示区,由于在单屏显示时,所述第一显示区是用于进行图像显示的区域,因此将所述第一显示区内的所述第二像素的数量设置为大于所述第二显示区内的所述第三像素的数量,可以在后期全屏显示时,使得进行图像显示的像素数量在所述第一显示区与所述第二显示区之间出现上述差异,并且所述差异可以提高全屏图像显示的均匀性。
S203,若所述第一显示区不是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
可以理解的是,步骤S203中即表示所述第二显示区为所述目标显示区,由于在单屏显示时,所述第二显示区是用于进行图像显示的区域,因此将所述第二显示区内的所述第三像素的数量设置为大于所述第一显示区内的所述第二像素的数量,可以在后期全屏显示时,使得进行图像显示的像素数量在所述第一显示区与所述第二显示区之间出现上述差异,并且所述差异可以提高全屏图像显示的均匀性。
在一实施例中,每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。进一步的,也可以使得每一次在所述预设时间间隔内选取的作为所述随机区的若干列像素的位置或数量不相同。可以理解的,若将相邻两次或者每一次的所述预设时间间隔内选取的作为所述随机区的若干列像素的位置或数量不相同,则可以在每一次更新所述随机区后,得到至少不同于上一次的所述随机区,这样在后期将所述随机区与部分相应的部分第一显示区或者将所述随机区与相应的部分第二显示区的像素进行图案显示时,更加有利于提高所述显示面板的所述目标显示区与非目标显示区之间的分界线,更加有利于提高所述显示面板的屏幕显示的均匀性。
在一实施例中,所述预设时间间隔大于0.05秒且小于等于0.2秒。可以理解的,但如果所述随机区中的像素的列数较多,则所述预设时间间隔不宜过短,可以控制在0.5秒-2秒。
在一实施例中,每一次的所述预设时间间隔可以为某一定值,也可以为一变量,若为变量,则可以通过随机机制产生,或者人为提前预先存入多个所述预设时间间隔值。
在一实施例中,如图2所示,所述显示面板00还包括一弯折区01,可以理解的,所述弯折区01为所述显示面板沿着所述分界线02弯曲所形成的某一被弯折的区域,所述弯折区01中所包含的像素的列数可以通过仪器精确测量得出结果,所述随机区03内的像素的列数大于4、少于300,并不超过所述弯折区01所包含的像素的列数50以上。可以理解的,针对不同的尺寸或分辨率的显示面板,所述随机区03内的像素的列数范围要求可以进行相应调整,以保证不影响所述第一显示区04或者所述第二显示区05单独显示时的正常显示效果。
其中,关于从所述分界线02的两侧各选取若干列像素作为所述随机区03的具体实施方式包括但不限于以下实施例。
在一实施例中,请参考图4,图4为本发明实施例提供的图像显示方法的步骤S20的另一流程图。
S204,根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取相等列数的像素作为所述随机区,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区。
可以理解的,本流程图是针对所述第一显示区中的所述第三像素的列数等于所述第二显示区中的所述第四像素的列数的情况而言的,如图5-10所示,其中x为像素距离所述分界线02的水平距离,例如50表示像素距离所述分界线02的水平距离为正的50,其中y为每一列所述像素与该列全为满像素的比值大小,例如100%表示该列像素占满了整列像素空位。在一实施例中,所述弯折区01有200列像素,可以在所述分界线02两侧各选取50列像素作为所述随机区01,所述预设时间间隔可以定为0.1秒。
其中,“选取相等列数的像素”与“根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区”两个操作可以不分先后顺序。
S205,若所述第一显示区是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
可以理解的,在所述第一显示区中的所述第三像素的列数等于所述第二显示区中的所述第四像素的列数的情况下,当第一显示区为所述目标显示区时,所述第一显示区中的每一列所述第二像素的平均数量应该大于所述第二显示区中的每一列所述第三像素的平均数量,以实现所述随机区中相对于靠近所述第一显示区的像素的数量可以比所述随机区中相对于靠近所述第二显示区的像素的数量多。
在一实施例中,例如图5所示,所述随机区03中包括50列第三像素以及50列第四像素,并且所述第三像素的数量大于所述第四像素的数量,进一步的,该图象是平面上的一条直线,所述随机区03中的每一列所述像素的数量和对应列的像素与所述第一显示区04的距离呈线性减少关系,也可以将两者称为正比例关系 ,即y=k*x+b,其中k,b为常数。
在一实施例中,例如图6所示,所述随机区03中包括50列第三像素以及50列第四像素,并且所述第三像素的数量大于所述第四像素的数量,进一步的,由于该图象不是平面上的一条直线,两种量x、y中相对应的两个数的乘积也不是一个定值,因此x、y之间也不是反比例关系,故所述随机区03中的每一列所述像素的数量和对应列的像素与所述第一显示区04的距离呈非线性减少关系。
可以理解的,所述随机区03中的每一列所述像素的数量和对应列的像素与所述第一显示区04的距离呈线性或者非线性减少关系,即将所述随机区中每一列相对于靠近所述第一显示区的像素的数量设置为比所述随机区中每一列相对于靠近所述第二显示区的像素的数量多,这样在后期全屏显示时,使得进行图像显示的像素数量从所述第一显示区到所述第二显示区之间出现单调减少的趋势,形成与所述目标显示区相关的“过渡区”,可以进一步提高全屏图像显示的均匀性。
在一实施例中,当第一显示区04为所述目标显示区时,所述随机区03中的像素的数量从所述第一显示区04往所述第二显示区05可以呈先增加、后减少的趋势,也可以呈先减少、后增加的趋势,也可以呈增加、减少交替进行的趋势,也可以呈一直减少的趋势。需要注意的是,只需要保证所述第一显示区中的第三像素的数量比第二显示区中的第四像素的数量多即可。例如图7所示,所述随机区03中包括50列第三像素以及50列第四像素,该图象中的波浪线条呈增加、减少交替进行的趋势,但是宏观上所述波浪线条呈减少趋势,因此可以判断所述第三像素的数量大于所述第四像素的数量。
S206,若所述第一显示区不是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
可以理解的,在所述第一显示区中的所述第三像素的列数等于所述第二显示区中的所述第四像素的列数的情况下,当第二显示区为所述目标显示区时,所述第一显示区中的每一列所述第二像素的平均数量应该小于所述第二显示区中的每一列所述第三像素的平均数量,以实现所述随机区中相对于靠近所述第一显示区的像素的数量可以比所述随机区中相对于靠近所述第二显示区的像素的数量少。
在一实施例中,例如图8所示,对比图5,两者区别仅在于将所述第一显示区04和第二显示区05的位置进行了替换设置,因此可以参考图8的相关描述,可知所述随机区03中的每一列所述像素的数量和对应列的像素与所述第二显示区05的距离呈线性减少关系。
例如图9所示,对比图6,两者区别仅在于将所述第一显示区04和第二显示区05的位置进行了替换设置,因此可以参考图8的相关描述,可知所述随机区03中的每一列所述像素的数量和对应列的像素与所述第二显示区05的距离呈非线性减少关系。
同理,所述随机区03中的每一列所述像素的数量和对应列的像素与所述第二显示区05的距离呈线性或者非线性减少关系,可以进一步提高全屏图像显示的均匀性。
在一实施例中,当第二显示区05为所述目标显示区时,所述随机区中的像素的数量从所述第一显示区往所述第二显示区可以呈先增加、后减少的趋势,也可以呈先减少、后增加的趋势,也可以呈增加、减少交替进行的趋势,也可以呈一直增加的趋势。需要注意的是,只需要保证所述第一显示区中的第三像素的数量比第二显示区中的第四像素的数量少即可。例如图10所示,对比图5,两者区别仅在于将所述第一显示区04和第二显示区05的位置进行了替换设置,因此可以参考图5的相关描述,可知所述随机区03中的每一列所述像素的数量和对应列的像素与所述第二显示区05的距离呈波浪式呈增加、减少交替关系。
可以理解的是,所述随机区中的像素的数量的减少或者增加的趋势并不限于减少或者增加的具体数量。
请参考图11,图11为本发明实施例提供的图像显示方法的步骤S20的又一流程图。
S207,根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取列像素平均数相等的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区。
可以理解的,本流程图是针对所述第一显示区中的所述第三像素的列像素平均数等于所述第二显示区中的所述第四像素的列像素平均数的情况而言的,如图12-15所示,在一实施例中,所述弯折区01有200列像素,可以从所述分界线02靠近所述第一显示区04一侧选取多列像素、从所述分界线02靠近所述第二显示区05一侧选取多列作为所述随机区03,并且所述第一显示区04中的所述第二像素的列像素平均数等于所述第二显示区05中的所述第三像素的列像素平均数,所述预设时间间隔可以定为0.1秒。
S208,若所述第一显示区是所述目标显示区,则将所述第一显示区中的所述第二像素的列数设置为大于所述第二显示区中的所述第三像素的列数,以得到所述随机区。
可以理解的,在所述第一显示区04中的所述第二像素的每一列的像素数等于所述第二显示区05中的所述第三像素的每一列的像素数的情况下,当第一显示区04为所述目标显示区时,所述第一显示区04中的所述第二像素的列数应该大于所述第二显示区05中的所述第三像素的列数,以实现所述随机区中相对于靠近所述第一显示区04的像素的数量可以比所述随机区中相对于靠近所述第二显示区05的像素的数量多。
在一实施例中,例如图12所示,从所述分界线05靠近所述第一显示区04一侧选取100列像素、从所述分界线02靠近所述第二显示区05一侧选取50列像素作为所述随机区03,并且所述第二像素的数量大于所述第三像素的数量,进一步的,该图象是平面上的一条与x轴平行的直线,所述随机区03中的每一列第二像素和每一列第三像素的像素数相等。
在一实施例中,例如图13所示,从所述分界线02靠近所述第一显示区04一侧选取100列像素、从所述分界线02靠近所述第二显示区05一侧选取50列像素作为所述随机区03,并且所述第二像素的数量大于所述第三像素的数量,进一步的,该图象是平面上的一条呈增加、减少交替进行的波浪线,可以使得所述随机区03中的第二像素的列像素平均数和每一列第三像素的列像素平均数相等。
S209,若所述第一显示区不是所述目标显示区,则将所述第一显示区中的所述第二像素的列数设置为小于所述第二显示区中的所述第三像素的列数,以得到所述随机区。
可以理解的,在所述第一显示区中的所述第二像素的每一列的像素数等于所述第二显示区中的所述第三像素的每一列的像素数的情况下,当第二显示区为所述目标显示区时,所述第一显示区中的所述第二像素的列数应该小于所述第二显示区中的所述第三像素的列数,以实现所述随机区中相对于靠近所述第一显示区的像素的数量可以比所述随机区中相对于靠近所述第二显示区的像素的数量多。
例如图14所示,对比图12,两者区别仅在于将所述第一显示区04和第二显示区05的位置进行了替换设置,因此可以参考图14的相关描述,可知所述随机区03中的每一列第三像素和每一列第四像素的像素数相等。
例如图15所示,对比图13,两者区别仅在于将所述第一显示区04和第二显示区05的位置进行了替换设置,因此可以参考图13的相关描述,可知所述随机区03中的第二像素的列像素平均数和每一列第三像素的列像素平均数相等。
可以理解的,本发明实施例提供的图像显示方法的步骤S20还可以包括但不限于以下实施例。
在一实施例中,可以每隔一预设时间间隔从所述分界线的两侧各选取不相等列数的像素作为所述随机区。即所述第一显示区中的所述第二像素的列数不等于所述第二显示区中的所述第三像素的列数。
当第一显示区为所述目标显示区时,若所述第二像素的列数大于所述第三像素的列数,则所述第一显示区中的每一列所述第二像素的平均数量可以大于、小于或者等于所述第二显示区中的每一列所述第三像素的平均数量,需要注意的是,当所述第一显示区中的每一列所述第二像素的平均数量小于或者等于所述第二显示区中的每一列所述第三像素的平均数量时,所述第二像素的列数应该大于所述第三像素的列数;若所述第二像素的列数小于或者等于所述第二显示区中的所述第三像素的列数,则所述第一显示区中的每一列所述第二像素的平均数量应该大于所述第二显示区中的每一列所述第三像素的平均数量,以保证所述第一显示区中的第二像素的数量比第二显示区中的第三像素的数量多。
例如图16所示,从所述分界线02靠近所述第一显示区04一侧选取150列像素、从所述分界线02靠近所述第二显示区05一侧选取50列像素作为所述随机区03,所述预设时间间隔可以定为0.1秒。所述第一显示区中的每一列所述第二像素的平均数量大于所述第二显示区中的每一列所述第三像素的平均数量,进一步的,由于该图象不是平面上的一条直线,两种量x、y中相对应的两个数的乘积也不是一个定值,因此x、y之间也不是反比例关系,故所述随机区03中的每一列所述像素的数量和对应列的像素与所述第一显示区04的距离呈非线性减少关系。可以理解的,此实施例中所述第二像素的列数大于所述第三像素的列数,并且所述第二像素的平均数量大于所述第三像素的平均数量,因此可以实现所述第一显示区中的第二像素的数量比第二显示区中的第三像素的数量多。
当第二显示区为所述目标显示区时,可以参考上述分析。
在一实施例中,可以每隔一预设时间间隔从所述分界线的两侧各选取列像素平均数不相等的多列像素作为所述随机区。即所述第一显示区中的所述第二像素的列像素平均数不等于所述第三显示区中的每一列所述第四像素的列像素平均数。
当第一显示区为所述目标显示区时,若所述第二像素的列像素平均数大于所述第三像素的列像素平均数,则所述第一显示区中的所述第二像素的列数可以大于、小于或者等于所述第二显示区中的所述第三像素的列数,需要注意的是,当所述第一显示区中的所述第二像素的列数小于或者所述第二显示区中的所述第三像素的列数时,所述第二像素的列像素平均数应该大于所述第三像素的列像素平均数;若所述第二像素的列像素平均数小于或者等于所述第三像素的列像素平均数,则所述第一显示区中的所述第二像素的列数应该大于所述第二显示区中的所述第三像素的列数,以保证所述第一显示区中的第二像素的数量比第二显示区中的第三像素的数量多即可。
例如图17所示,从所述分界线02靠近所述第一显示区04一侧选取50列像素、从所述分界线靠近所述第二显示区05一侧选取150列像素作为所述随机区03,所述预设时间间隔可以定为0.1秒。所述第一显示区中的每一列所述第二像素的平均数量小于所述第二显示区中的每一列所述第三像素的平均数量,进一步的,第二像素的图象不是平面上的一条直线,两种量x、y中相对应的两个数的乘积也不是一个定值,因此x、y之间也不是反比例关系,故所述第二像素中的每一列所述像素的数量和对应列的像素与所述第一显示区04的距离呈非线性减少关系;第三像素的图象是平面上的一条与x轴平行的直线,故所述第三像素中的每一列所述像素的数量为一个定值。可以理解的,此实施例中虽然所述第二像素的列数大于所述第二显示区中的所述第三像素的列数,但是所述第二像素的平均数量大于所述第三像素的平均数量,因此只要控制所述第二像素的平均数量比所述第三像素的平均数量大于某一值,可以实现所述第一显示区中的第二像素的数量比第二显示区中的第三像素的数量多。
当第二显示区为所述目标显示区时,可以参考上述分析。
在以上实施例中,在确定所述随机区时,所述第一显示区中的所述第二像素以及所述第二显示区中的所述第三像素均可以以靠近所述分界线的区域来选取,或者以所述分界线为起点来选取,所述第二像素也可以在所述第一显示区至所述随机区等间隔选取预设列数的像素,所述第三像素也可以在所述第二显示区至所述随机区等间隔选取预设列数的像素。
在以上实施例中,所述随机区中的像素在第一方向上的列选取方式以及某一列所述像素在第二方向上的单个像素选取方式可以是均匀选取,例如间隔均为一列/个,也可以是非均匀选取,例如部分间隔为一列/个、部分间隔为两列/个,所述非均匀选取可以包括部分为均匀选取、部分为非均匀选取,每一列所述像素在第二方向上的单个像素选取方式可以不一样,其中所述第一方向定义为所述第一显示区、第二显示区排列的方向,所述第二方向定义为与所述第一方向垂直的方向。
在以上实施例中,每一组所述随机区中的每一像素的位置选取可以通过随机机制产生,或者通过人为提前预先存入多组所述随机区中的每一像素位置坐标,后期再根据不同的所述预设时间间隔按照所述随机区的产生顺序或者存入顺序来获取所述随机区。
S30,将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
在一实施例中,请参考图18,图18为本发明实施例提供的图像显示方法的步骤S30的流程图。
S301,获取随机区的位置信息以及所述目标显示区的位置信息。
可以理解的,在步骤S20中已经确定了所述随机区,在步骤S10中已经确定了所述目标显示区,因此此处只需要根据所述目标显示区以及所述随机区的情况,获取对应的位置信息即可。
在一实施例中,在确定了所述目标显示区以后可以直接读取并存储所述目标显示区的位置信息,在确定了所述随机区以后可以直接读取并存储所述目标显示区的位置信息,在步骤S301中可以直接调取获取随机区的位置信息以及目标显示区的位置信息。
在一实施例中,在确定了所述目标显示区以及所述随机区以后,在步骤S301中可以分别读取所述随机区的位置信息以及所述第一显示区的位置信息。
S302,根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息。
可以理解的,由于所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素,因此当获取了所述随机区的位置信息以及所述目标显示区的位置信息后,可以通过计算得到所述的第一像素的位置信息。
S303,根据所述随机区的位置信息以及所述第一像素的位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
可以理解的,结合之前的步骤,若此时所述第一显示区为所述目标显示区,并且其中所述第一显示区中的第二像素的数量比第二显示区中的第三像素的数量多,因此在所述第一显示区进行图像显示时,可以使得所述随机区中的全部像素在所述第一显示区和所述第二显示区之间起到过渡作用;若此时所述第二显示区为所述目标显示区,同理可以参考上述描述。这样,在进行全屏显示时,即所述第一显示区、第二显示区以及进行显示时,所述第一显示区、第二显示区之间将不会出现明显的分界区段,因此本发明可以使得显示面板可以提高显示面板的屏幕显示的均匀性。
为了更好地实施以上方法,在一实施例中提供了图像显示装置。
请参考图19,图19为本发明实施例提供的图像显示装置100的结构示意图。本实施例的图像显示装置100,用于进行图案显示,本实施例的图像显示装置100包括第一获取模块101、第二获取模块102、第三获取模块103,具体描述如下:
第一获取模块101,用于获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区。
其中,如图2所示,所述分界线02的位置信息具体可以指代为所述分界线包含的每一最小单元在所述显示面板上的坐标信息,此处最小单元可以认为一个像素。
此处,获取分界线的位置信息包括以下两种情况:
当显示面板未进行图像显示时,可以根据预设的显示要求来划分所述显示面板中的所述第一显示区、第二显示区,此处可以任意定义所述分界线两端的显示区分别为所述第一显示区、第二显示区,可以理解的,后续步骤中的“第一显示区”、“第一显示区”的位置信息应该与此处相对应。根据所述分界线的功能性定义,即所述分界线用于分割所述第一显示区和所述第二显示区,所述第一获取模块101可以通过获取所述第一显示区、第二显示区的交线的位置信息来获取所述分界线的位置信息。
当显示面板正在进行图像显示时,可以根据实际的显示情况来区分和定义所述显示面板中的所述第一显示区、第二显示区,后续步骤中的“第一显示区”、“第一显示区”的位置信息应该与此处相对应。根据所述分界线的功能性定义,即所述分界线用于分割所述第一显示区和所述第二显示区,所述第一获取模块101可以通过获取所述第一显示区、第二显示区的交线的位置信息来确定分界线的位置信息。
可以理解的,此处描述的“选取目标显示区”是建立在目前所述第一显示区或者所述第二显示区正在用于图案显示上的,若所述第一显示区或者所述第二显示区正在用于图案显示,所述第一获取模块101可以通过图像感应器来获取当前正在用于图案显示的显示区、也可以通过后台显示区的显示数据信息来获取当前正在用于图案显示的显示区作为目标显示区,并且可以储存所述目标显示区的位置信息,后期可以直接根据所述目标显示区的选取情况来确定所述随机区。
可代替的,当所述第一显示区和所述第二显示区均未正在进行图像显示时,所述第一获取模块101可以根据预设的显示要求来确定所述第一显示区或者第二显示区当作用于图像显示的显示区,将预设用于图像显示的显示区选取为目标显示区并且可以储存所述目标显示区的位置信息,后期可以直接根据所述目标显示区的选取情况来确定所述随机区。
可以理解的是,“选取目标显示区”应该与“获取分界线的位置信息”时的显示面板未进行图像显示或者显示面板正在进行图像显示的实际状况相对应,并且“选取目标显示区”与“获取分界线的位置信息”两个操作可以不分先后进行。
第二获取模块102,用于根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区。
其中,获取所述随机区中的所述像素的方式与所述第一显示区、第二显示区的目前显示情况相关,因此可以先确定所述第一显示区、第二显示区的显示情况。
在一实施例中,所述第二获取模块102可以包括判断子模块1021、第一随机区选取子模块1022、第二随机区选取子模块1023,具体描述如下:
判断子模块1021,用于根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区。
可以理解的,所述目标显示区是从所述第一显示区、第二显示区两者中选取其一的,所述判断子模块1021可以对比所述目标显示区的位置信息、第一显示区的位置信息、第二显示区的位置信息,比较出所述目标显示区的位置信息与第一显示区或者第二的位置信息是否一致,从而根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区。
第一随机区选取子模块1022,用于若所述第一显示区为所述目标显示区时,根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取若干列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素。
具体的,所述第一随机区选取子模块1022可以从所述第一获取模块101中获取所述分界线的位置信息以及目标显示区的信息,并且根据所述判断子模块1021的判断结果,当所述第一显示区是所述目标显示区时,所述第一随机区选取子模块1022就会遵循上述“所述第一显示区中的第二像素的数量比第二显示区中的第三像素的数量多”的规则来选取所述随机区。
第二随机区选取子模块1023,用于若所述第一显示区不是所述目标显示区,根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取若干列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
可以理解的,所述第二随机区选取子模块1023与所述第一随机区选取子模块1022的区别仅在于,当所述判断子模块1021判断出当所述第一显示区是所述目标显示区时,所述第二随机区选取子模块1023就会遵循上述“所述第一显示区中的第二像素的数量比第二显示区中的第三像素的数量少”的规则来选取所述随机区。其他描述请参考关于所述第一随机区选取子模块1022的描述。
在一实施例中,所述第二获取模块102还可以包括第三随机区选取子模块1024,用于每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。
进一步的,第三随机区选取子模块1024也可以辅助所述第一随机区选取子模块1022或者所述第二随机区选取子模块1023每一次在所述预设时间间隔内选取的作为所述随机区的若干列像素的位置或数量不相同。可以理解的,若所述第一随机区选取子模块1022或者所述第二随机区选取子模块1023将相邻两次或者每一次的所述预设时间间隔内选取的作为所述随机区的若干列像素的位置或数量不相同,则可以在每一次更新所述随机区后,得到至少不同于上一次的所述随机区,这样在后期将所述随机区与部分相应的部分第一显示区或者将所述随机区与相应的部分第二显示区的像素进行图案显示时,更加有利于提高所述显示面板的所述目标显示区与非目标显示区之间的分界线,更加有利于提高所述显示面板的屏幕显示的均匀性。
在一实施例中,所述预设时间间隔大于0.05秒且小于等于0.2秒。可以理解的,但如果所述随机区中的像素的列数较多,则所述预设时间间隔不宜过短,可以控制在0.5秒-2秒。
在一实施例中,每一次的所述预设时间间隔可以为某一定值,也可以为一变量,若为变量,则可以通过随机机制产生,或者人为提前预先存入多个所述预设时间间隔值。
在一实施例中,如图2所示,所述显示面板00还包括一弯折区01,可以理解的,所述弯折区01为所述显示面板沿着所述分界线02弯曲所形成的某一被弯折的区域,所述弯折区01中所包含的像素的列数可以通过仪器精确测量得出结果,所述随机区03内的像素的列数大于4、少于300,并不超过所述弯折区01所包含的像素的列数50以上。可以理解的,针对不同的尺寸或分辨率的显示面板,所述随机区03内的像素的列数范围要求可以进行相应调整,以保证不影响所述第一显示区04或者所述第二显示区05单独显示时的正常显示效果。
在一实施例中,所述第二获取模块102还可以包括第四随机区选取子模块1025、第五随机区选取子模块1026、第六随机区选取子模块1027,具体描述如下:
第四随机区选取子模块1025,用于根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取相等列数的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区。
具体的,所述第四随机区选取子模块1025可以从所述第一获取模块101中获取所述分界线的位置信息,并且在所述第三随机区选取子模块1024的辅助下,每隔一所述预设时间间隔,所述第四随机区选取子模块1025可以在所述随机区的总像素列数符合要求的前提下,从所述分界线的两侧各随机选取相等列数的像素;以及所述第四随机区选取子模块1025可以从所述判断子模块1021的获取判断结果,或者所述第四随机区选取子模块1025具备和所述判断子模块1021相同的判断功能。
第五随机区选取子模块1026,用于若所述第一显示区用于图案显示时,将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
具体的,所述第五随机区选取子模块1026可以获取所述第四随机区选取子模块1025已经选取的相等列数的像素以及上述判断结果,例如当上述判断结果为“是”,所述第五随机区选取子模块1026在所述已经选取的相等列数的像素的前提下,进一步遵循上述“将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系”的规则来确定所述随机区。
第六随机区选取子模块1027,用于所述第一显示区不是所述目标显示区时,将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
可以理解的,所述第六随机区选取子模块1027与所述第五随机区选取子模块1026的区别仅在于,当上述判断结果为“否”时,所述第六随机区选取子模块1027会遵循上述“将所述随机区的每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系”的规则来选取所述随机区。其他描述请参考关于所述第五随机区选取子模块1026的描述。
在一实施例中,所述第二获取模块102还可以包括第七随机区选取子模块1028、第八随机区选取子模块1029、第九随机区选取子模块10210,具体描述如下:
第七随机区选取子模块1028,用于根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取列像素平均数相等的像素作为所述随机区,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区。
具体的,所述第七随机区选取子模块1028可以从所述第一获取模块101中获取所述分界线的位置信息,并且在所述第三随机区选取子模块1024的辅助下,每隔一所述预设时间间隔,所述第七随机区选取子模块1028可以在所述随机区的总像素列数符合要求的前提下,从所述分界线的两侧各随机选取列像素平均数相等像素;以及所述第七随机区选取子模块1028可以从所述判断子模块1021的获取判断结果,或者所述第七随机区选取子模块1028具备和所述判断子模块1021相同的判断功能。
第八随机区选取子模块1029,用于若所述第一显示区用于图案显示时,将所述第一显示区中的所述第二像素的列数设置为大于所述第二显示区中的所述第三像素的列数,以得到所述随机区。
具体的,所述第八随机区选取子模块1029可以获取所述第七随机区选取子模块1028已经选取的列像素平均数相等的像素以及上述判断结果,例如当上述判断结果为“是”,所述第八随机区选取子模块1029在所述已经选取的相等列数的像素的前提下,进一步遵循上述“将所述第一显示区中的所述第二像素的列数设置为大于所述第二显示区中的所述第三像素的列数”的规则来确定所述随机区。
第九随机区选取子模块10210,用于所述第一显示区不是所述目标显示区时,将所述第一显示区中的所述第二像素的列数设置为小于所述第二显示区中的所述第三像素的列数,以得到所述随机区。
可以理解的,所述第九随机区选取子模块10210与所述第八随机区选取子模块1029的区别仅在于,当上述判断结果为“否”时,所述第九随机区选取子模块10210会遵循上述“将所述第一显示区中的所述第二像素的列数设置为小于所述第二显示区中的所述第三像素的列数”的规则来选取所述随机区。其他描述请参考关于所述第八随机区选取子模块1029的描述。
需要注意的是,所述第二获取模块102中任一模块在获取所述随机区时,都可以通过所述第三随机区选取子模块1024来辅助实现在相邻两次预设时间间隔内选取的所述随机区不相同的功能。
第三获取模块103,用于将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
在一实施例中,所述第三获取模块103可以包括第一子模块1031、第二子模块1032、第三子模块1033,具体描述如下:
第一子模块1031,用于获取所述随机区的位置信息以及所述目标显示区的位置信息。
具体的,所述第一子模块1031可以从所述第一获取模块101获取所述目标显示区的位置信息以及可以从所述第二获取模块102中相应的模块获取所述随机区的位置信息。
第二子模块1032,用于根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息。
具体的,由于所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素,所述第二子模块1032可以根据所述随机区的位置信息以及所述目标显示区的位置信息,在所述目标显示区中减去所述随机区,即通过计算得到所述的第一像素的位置信息。
第三子模块1033,根据所述随机区的位置信息以及所述第一像素的位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
具体的,所述第三子模块1033可以从所述第二获取模块102中相应的模块获取所述随机区的位置信息,以及从所述第二子模块1032中获取所述的第一像素的位置信息,并且根据上述位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
在一实施例中还提供了控制器和存储器。
请参考图20,图20为本发明实施例提供的控制器和存储器的结构示意图。
存储器201可用于存储软件程序以及模块,其主要包括存储程序区和存储数据区。控制器202通过运行存储在存储器201的软件程序以及模块,从而执行各种功能应用以及数据处理。
控制器202通过运行或执行存储在存储器201内的软件程序或模块,以及调用存储在存储器201内的数据,执行各种功能和处理数据,从而进行整体监控。
在一些实施例中,控制器202获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,其中,所述第一显示区和所述第二显示区是显示面板上相邻设置的两个显示区。
在一些实施例中,控制器202根据所述分界线的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区,实现如下步骤:
控制器202先从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区;再判断所述目标显示区为所述第一显示区或者所述第二显示区;当所述第一显示区为所述目标显示区时,根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素;当所述第二显示区为所述目标显示区时,根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
在一些实施例中,当所述第一显示区用于图案显示时,控制器202将所述第一显示区中的第一像素以及所述随机区中的全部像素进行图案显示,所述第一像素为所述第一显示区中除所述随机区所占区域的其他区域中的全部像素。
在一些实施例中,当所述第二显示区用于图案显示时,控制器202将所述第二显示区中的第二像素以及所述随机区中的全部像素进行图案显示,所述第二像素为所述第二显示区中除所述随机区所占区域的其他区域中的全部像素。
需要说明的是,本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过程序来指令相关的硬件来完成,该程序可以存储于计算机可读存储介质中,如存储在电子设备的存储器中,并被该电子设备内的至少一个处理器执行,在执行过程中可包括如充电提醒方法的实施例的流程。其中,存储介质可以包括:只读存储器(ROM,Read Only Memory)、随机存取记忆体(RAM,Random Access Memory)、磁盘或光盘等。
本发明的有益效果为:本发明提供了图像显示方法、图像显示装置以及控制器,通过每隔一预设时间间隔从第一显示区和第二显示区中获取若干列像素作为随机区,并且根据当前用于图案显示的显示区情况,将所述随机区与相应的部分第一显示区或者将所述随机区与相应的部分第二显示区的像素进行图案显示,提高了显示面板的屏幕显示的均匀性。
以上对本发明实施例提供的图像显示方法、装置、控制器及存储介质进行了详细介绍,其各功能模块可以集成在一个处理芯片中,也可以是各个模块单独物理存在,也可以两个或两个以上模块集成在一个模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;以及,对于本领域的技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。

Claims (15)

  1. 一种图像显示方法,用于对显示面板进行图案显示,所述显示面板包括相邻设置的第一显示区、第二显示区,其中,所述第一显示区和所述第二显示区不同时进行图像显示,其中,所述方法包括:
    获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区;
    根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区;
    将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
  2. 根据权利要求1所述的图像显示方法,其中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取多列像素作为随机区的步骤,包括:
    根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
    若所述第一显示区是所述目标显示区,则根据所述分
    界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素;
    若所述第一显示区不是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
  3. 根据权利要求1所述的图像显示方法,其中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区步骤,包括:
    每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。
  4. 根据权利要求1所述的图像显示方法,其中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区的步骤,包括:
    根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取相等列数的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
    若所述第一显示区是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区;
    若所述第一显示区不是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
  5. 根据权利要求1所述的图像显示方法,其中,所述将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素的步骤,包括:
    获取所述随机区的位置信息以及所述目标显示区的位置信息;
    根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息;
    根据所述随机区的位置信息以及所述第一像素的位
    置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
  6. 一种图像显示装置,用于对显示面板进行图案显示,所述显示面板包括相邻设置的第一显示区、第二显示区,其中,所述第一显示区和所述第二显示区不同时进行图像显示,其中,所述图像显示装置包括:
    第一获取模块,用于获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区;
    第二获取模块,用于根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区;
    第三获取模块,用于将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
  7. 如权利要求6所述的图像显示装置,其中,所述第二获取模块包括:
    判断子模块,用于根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
    第一随机区选取子模块,用于若所述第一显示区是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素;
    第二随机区选取子模块,用于若所述第一显示区不是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
  8. 如权利要求6所述的图像显示装置,其中,所述第二获取模块还包括:
    第三随机区选取子模块,用于每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。
  9. 如权利要求6所述的图像显示装置,其中,所述第二获取模块还包括:第四随机区选取子模块,用于根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取相等列数的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
    第五随机区选取子模块,用于若所述第一显示区是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第一显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区;
    第六随机区选取子模块,用于若所述第一显示区不是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
  10. 如权利要求6所述的图像显示装置,其中,所述第三获取模块包括:
    第一子模块,用于获取所述随机区的位置信息以及所述目标显示区的位置信息;
    第二子模块,用于根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息;
    第三子模块,用于根据所述随机区的位置信息以及所述第一像素的位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
  11. 一种控制器,其中,所述控制器用于执行存储于存储器的若干指令,以实现以下方法:
    获取分界线的位置信息,所述分界线用于分割所述第一显示区和所述第二显示区,以及从所述第一显示区和所述第二显示区中选取出当前正在用于图案显示的显示区,作为目标显示区;
    根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区;
    将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素。
  12. 根据权利要求11所述的控制器,其中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取多列像素作为随机区的步骤,包括:
    根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
    若所述第一显示区是所述目标显示区,则根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区中的第二像素的数量大于所述第二显示区中的第三像素的数量,所述第二像素为所述第一显示区内属于所述随机区的像素,所述第三像素为所述第二显示区内属于所述随机区的像素;
    若所述第一显示区不是所述目标显示区,则根据所述
    分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区,其中所述第一显示区内的所述第二像素的数量小于所述第二显示区内的所述第三像素的数量。
  13. 根据权利要求11所述的控制器,其中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取多列像素作为所述随机区步骤,包括:
    每隔一预设时间间隔,从所述分界线的两侧各选取与前一次预设时间间隔内选取的像素不同位置或不同数量的像素作为所述随机区。
  14. 根据权利要求11所述的控制器,其中,所述根据所述分界线的位置信息以及所述目标显示区的位置信息,每隔一预设时间间隔从所述第一显示区和所述第二显示区中获取若干列像素作为随机区的步骤,包括:
    根据所述分界线的位置信息,每隔一预设时间间隔从所述分界线的两侧各选取相等列数的像素,以及根据所述目标显示区的位置信息,判断所述第一显示区是否为所述目标显示区;
    若所述第一显示区是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第一显示区
    的距离呈线性减少关系或者呈非线性减少关系,以得到所
    述随机区;
    若所述第一显示区不是所述目标显示区,则将每一列所述像素的数量设置为和对应列的像素与所述第二显示区的距离呈线性减少关系或者呈非线性减少关系,以得到所述随机区。
  15. 根据权利要求11所述的控制器,其中,所述将所述目标显示区中的第一像素和所述随机区中的全部像素进行图像显示,所述第一像素为所述目标显示区中除所述随机区所占区域的其他区域中的全部像素的步骤,包括:
    获取所述随机区的位置信息以及所述目标显示区的位置信息;
    根据所述随机区的位置信息以及所述目标显示区的位置信息,得到所述的第一像素的位置信息;
    根据所述随机区的位置信息以及所述第一像素的位置信息,将所述第一像素以及所述随机区中的全部像素进行图案显示。
PCT/CN2019/100746 2019-05-20 2019-08-15 图像显示方法、装置以及控制器 Ceased WO2020232844A1 (zh)

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