WO2022116002A1 - 数据处理方法及装置、显示装置 - Google Patents
数据处理方法及装置、显示装置 Download PDFInfo
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- WO2022116002A1 WO2022116002A1 PCT/CN2020/133146 CN2020133146W WO2022116002A1 WO 2022116002 A1 WO2022116002 A1 WO 2022116002A1 CN 2020133146 W CN2020133146 W CN 2020133146W WO 2022116002 A1 WO2022116002 A1 WO 2022116002A1
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G3/00—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
- G09G3/20—Control 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
- G09G3/34—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters by control of light from an independent source
- G09G3/3406—Control of illumination source
- G09G3/342—Control of illumination source using several illumination sources separately controlled corresponding to different display panel areas, e.g. along one dimension such as lines
- G09G3/3426—Control of illumination source using several illumination sources separately controlled corresponding to different display panel areas, e.g. along one dimension such as lines the different display panel areas being distributed in two dimensions, e.g. matrix
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G2320/00—Control of display operating conditions
- G09G2320/02—Improving the quality of display appearance
- G09G2320/0233—Improving the luminance or brightness uniformity across the screen
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G2320/00—Control of display operating conditions
- G09G2320/06—Adjustment of display parameters
- G09G2320/0613—The adjustment depending on the type of the information to be displayed
- G09G2320/062—Adjustment of illumination source parameters
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G2320/00—Control of display operating conditions
- G09G2320/06—Adjustment of display parameters
- G09G2320/0626—Adjustment of display parameters for control of overall brightness
- G09G2320/0646—Modulation of illumination source brightness and image signal correlated to each other
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G2360/00—Aspects of the architecture of display systems
- G09G2360/16—Calculation or use of calculated indices related to luminance levels in display data
Definitions
- the present disclosure relates to the field of display technology, and in particular, to a data processing method and device, and a display device.
- a large-size, high-brightness display device may, for example, use a direct-lit backlight module to improve the brightness of the display device.
- the direct type backlight module generally includes more light-emitting diodes (Light-Emitting Diode, LED), and can control the luminous brightness of the backlight module by local dynamic dimming technology (Local Dimming).
- a data processing method is provided.
- the data processing method is applied in a display device.
- the display device includes a display panel, a backlight module, a first storage space and a second storage space.
- the display panel and the backlight module are arranged opposite to each other.
- the display panel includes a plurality of pixels.
- the backlight module includes a plurality of backlight units, each of which corresponds to at least one pixel position.
- the backlight data set includes first backlight values of at least one row of backlight units, the at least one row of backlight units includes an M-th row of backlight units, and M is a positive integer
- the data processing method includes: During the N-1th sliding window period, use the sliding window to sample the backlight data set, and store the Nth backlight data subset obtained by sampling into the first storage space; the N-1 is a positive integer
- the Nth sliding window period utilize the described sliding window after the movement to sample the backlight data set, and store the N+1th backlight data subset obtained by sampling into the second storage space, and
- a compensation coefficient of at least one pixel corresponding to the N th backlight data subset in each pixel corresponding to the M th row of backlight units is calculated.
- the data processing method further includes: in the N+1th sliding window period, sampling the backlight data set by using the moved sliding window, and sampling the N+th 2 backlight data subsets are stored in the first storage space, and according to the N+1 th backlight data subset, it is calculated in each pixel corresponding to the M th row of backlight units, and the Compensation coefficient of at least one pixel corresponding to one backlight data subset.
- the data processing method further includes: in the last sliding window period corresponding to the backlight data set, according to the last backlight data subset of the backlight data set, calculate the data in the Mth row In each pixel corresponding to the backlight unit, the compensation coefficient of at least one pixel corresponding to the last backlight data subset, and using the moved sliding window to sample the next backlight data set of the backlight data set, A first subset of backlight data for the next set of backlight data is obtained.
- the at least one row of backlight units is a multi-row backlight unit
- the multiple rows of backlight units include at least three rows of backlight units with the M-th row of backlight units as a middle row.
- the backlight data set when the M-th row of backlight units is the first row of backlight units, the backlight data set includes: at least one row of virtual backlight values sequentially arranged along a column direction in which the plurality of backlight units are arranged , the first backlight value of the first row of backlight units and the first backlight value of the second row of backlight units.
- the number of virtual backlight values in each row is equal to the number of first backlight values of the backlight units in the first row; and the virtual backlight values in the at least one row are zero.
- the backlight units corresponding to the Nth backlight data subset are arranged in an array, and at least one pixel corresponding to the Nth backlight data subset corresponds to the backlight unit at the center of the array of at least one pixel.
- the data processing method further includes: according to the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset, and a The initial pixel value of the at least one pixel is obtained, and the compensated pixel value of the at least one pixel is obtained.
- the first backlight value of each backlight unit corresponding to the one frame of image is calculated according to the initial pixel value of each pixel of the previous frame of the one frame of image.
- the first backlight value of each backlight unit corresponding to the one frame of image is configured to drive the backlight module.
- calculating, in each pixel corresponding to the M th row backlight unit, at least one pixel corresponding to the N th backlight data subset Compensation factor including: According to the formula A compensation coefficient for the at least one pixel is obtained.
- G is the compensation coefficient of one pixel
- ⁇ is the gamma value of gamma correction
- B max is the maximum first backlight value of the backlight unit corresponding to the one pixel
- B psf is the second backlight corresponding to the one pixel.
- the second backlight value corresponding to the one pixel is the first backlight value in the Nth backlight data subset and the corresponding position of each backlight unit corresponding to the Nth backlight data subset at the corresponding position of the one pixel The product between the optical diffusion coefficients.
- a data processing apparatus is provided.
- the data processing device is applied in a display device.
- the display device includes: a display panel, a backlight module, a first storage space and a second storage space.
- the display panel and the backlight module are arranged opposite to each other.
- the display panel includes a plurality of pixels.
- the backlight module includes a plurality of backlight units, each of which corresponds to at least one pixel position.
- the backlight data set includes first backlight values of at least one row of backlight units, the at least one row of backlight units includes an M-th row of backlight units, and M is a positive integer
- the data processing device is configured to , in the N-1th sliding window period, use the sliding window to sample the backlight data set, and store the Nth backlight data subset obtained by sampling into the first storage space; and, in the Nth During the sliding window period, use the moved sliding window to sample the backlight data set, store the N+1 th backlight data subset obtained by sampling into the second storage space, and store the N+1 th backlight data subset obtained by sampling into the second storage space, and store the N+1 th backlight data subset according to the of backlight data subsets, and calculate the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset in each pixel corresponding to the M-th row of backlight units.
- the N-1 is a positive integer.
- the data processing apparatus is further configured to, within the N+1th sliding window period, use the moved sliding window to sample the backlight data set, and use the moved sliding window to sample the backlight data set.
- N+2 backlight data subsets are stored in the first storage space, and according to the N+1 th backlight data subset, it is calculated in each pixel corresponding to the M th row of backlight units, which is the same as the The compensation coefficient of at least one pixel corresponding to the N+1 backlight data subsets.
- the data processing apparatus is further configured to, within the last sliding window period corresponding to the backlight data set, calculate the calculation in the first backlight data subset according to the last backlight data subset of the backlight data set.
- the compensation coefficient of at least one pixel corresponding to the last subset of backlight data is used, and the next backlight data set of the backlight data set is performed using the moved sliding window. Sampling to obtain a first subset of backlight data of the next set of backlight data.
- the data processing apparatus is further configured to, within the Nth sliding window period, according to the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset, and one frame The initial pixel value of the at least one pixel in the image, and the compensated pixel value of the at least one pixel is obtained.
- a data processing apparatus is provided.
- the data processing device is applied to a display device.
- the data processing apparatus includes a memory and a processor.
- One or more computer programs are stored in the memory.
- the processor is coupled to the memory.
- the processor is configured to execute the computer program, so that the display device implements the data processing method described in any one of the above embodiments.
- a data processing apparatus is provided.
- the data processing device is a chip.
- the chip is configured to implement the data processing method as described in any of the above embodiments.
- a display device in yet another aspect, includes a display panel, a backlight module, a first storage space, a second storage space and a data processing device.
- the data processing apparatus is the data processing apparatus described in any one of the above embodiments.
- the display panel includes a plurality of pixels.
- the backlight module and the display panel are arranged opposite to each other.
- the backlight module includes a plurality of backlight units, each of which corresponds to at least one pixel position.
- the first storage space and the second storage space are located within at least one cache.
- a non-transitory computer-readable storage medium stores computer program instructions, which, when executed on a computer, cause the computer to execute the data processing method described in any one of the foregoing embodiments.
- a computer program product includes computer program instructions that, when executed on a computer, cause the computer to execute the data processing method according to any one of the above embodiments.
- a computer program When the computer program is executed on a computer, the computer program causes the computer to execute the data processing method described in any of the above embodiments.
- FIG. 1 is a structural diagram of a display device according to some embodiments.
- FIG. 2 is a structural diagram of a data processing apparatus according to some embodiments.
- FIG. 3 is another structural diagram of a display device according to some embodiments.
- FIG. 4 is another structural diagram of a display device according to some embodiments.
- FIG. 5 is a schematic diagram of obtaining an optical diffusion coefficient of a backlight unit according to some embodiments.
- FIG. 6 is a process diagram of a data processing method according to some embodiments.
- FIG. 7 is another process diagram of a data processing method according to some embodiments.
- FIG. 8 is yet another process diagram of a data processing method according to some embodiments.
- FIG. 9 is a schematic diagram of a backlight data set according to some embodiments.
- FIG. 10 is another schematic diagram of a backlight data set according to some embodiments.
- 11A is a schematic diagram of each backlight unit corresponding to a subset of backlight data according to some embodiments.
- 11B is a schematic diagram of a subset of backlight data according to some embodiments.
- FIG. 12 is a schematic diagram of determining the relative positional relationship between a pixel and a backlight unit according to some embodiments
- FIG. 13 is yet another process diagram of a data processing method according to some embodiments.
- FIG. 14 is yet another process diagram of a data processing method according to some embodiments.
- first and second are only used for descriptive purposes, and should not be construed as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, a feature defined as “first” or “second” may expressly or implicitly include one or more of that feature.
- plural means two or more.
- the expressions “coupled” and “connected” and their derivatives may be used.
- the term “connected” may be used in describing some embodiments to indicate that two or more components are in direct physical or electrical contact with each other.
- the term “coupled” may be used in describing some embodiments to indicate that two or more components are in direct physical or electrical contact.
- the terms “coupled” or “communicatively coupled” may also mean that two or more components are not in direct contact with each other, yet still co-operate or interact with each other.
- the embodiments disclosed herein are not necessarily limited by the content herein.
- the term “if” is optionally construed to mean “when” or “at” or “in response to determining” or “in response to detecting,” depending on the context.
- the phrases “if it is determined that" or “if a [statement or event] is detected” are optionally interpreted to mean “in determining" or “in response to determining" or “on detection of [recited condition or event]” or “in response to detection of [recited condition or event]”.
- Embodiments of the present disclosure provide a display device.
- the display device may be a display, and may also be a product including a display, such as a television, a computer (all-in-one or a desktop), a computer, a tablet, a mobile phone, an electronic screen, etc.
- the display device may have a higher resolution, for example, an 8K display device, which implements 8K image display.
- the display device 500 includes a display panel 100 , a backlight module 200 , a data processing device 300 , a first storage space 410 and a second storage space 420 .
- the display panel 100 includes a plurality of pixels Q.
- the resolution of the display panel 100 is 7680 ⁇ 4320.
- the backlight module 200 includes a plurality of backlight units (ie, backlight partitions) 210 .
- the number of the plurality of backlight units is about twenty thousand.
- the plurality of pixels Q may be that the display panel 100 includes a part of the pixels Q, or may be all the pixels Q.
- the plurality of backlight units 210 may be that the backlight module 200 includes a part of the backlight units 210 , or may be all of the backlight units 210 .
- a plurality of pixels Q may be arranged in an array.
- the pixels arranged in a row in the X direction are referred to as a row of pixels
- the pixels arranged in a row in the Y direction are referred to as a column of pixels.
- the arrangement of the plurality of backlight units 210 in the backlight module 200 is not limited.
- a plurality of backlight units 210 are arranged in an array.
- the backlight units arranged in a row along the X direction in FIG. 4 are a row of backlight units
- the X direction is the row direction in which the backlight units are arranged
- the backlight units arranged in a row along the Y direction in FIG. 4 are a row of backlight units
- the The Y direction is the column direction in which the backlight units are arranged.
- Each backlight unit corresponds to at least one pixel location.
- each backlight unit corresponds to a plurality of pixel positions, and when the plurality of pixels are arranged in an array, among the plurality of pixels corresponding to each backlight unit, the number of pixels in each row is the same as the number of pixels in each column. numbers are equal.
- a plurality of pixels corresponding to each backlight unit are arranged in an array of 40 rows and 40 columns.
- the data processing apparatus 300 includes a memory 301 and a processor 302 .
- the memory 301 is coupled to the processor 302 .
- One or more computer programs executable on the processor 302 are stored in the memory 301 .
- the display device 500 implements the data processing method described in any of the following embodiments.
- the above-mentioned processor 302 may be one processor, or may be a collective term for multiple processing elements.
- the processor 302 may be a general-purpose central processing unit (CPU), a microprocessor, an application-specific integrated circuit (ASIC), or one or more programs for controlling the present disclosure Implementing integrated circuits, such as one or more microprocessors.
- the above-mentioned memory 301 may be a memory, or may be a collective name of a plurality of storage elements, and is used to store executable program codes and the like.
- the memory 301 may include random access memory (Random Access Memory, RAM), and may also include non-volatile memory (non-volatile memory), such as disk memory, flash memory (Flash), and the like.
- the memory 301 is used for storing the application code for executing the solution of the present disclosure, and the execution is controlled by the processor 320 .
- the processor 302 is configured to execute the application program code stored in the memory 301 to control the display device 500 to implement the data processing method provided by any of the following embodiments of the present disclosure.
- the data processing apparatus 300 may be a chip.
- the chip is configured to implement the data processing method as in any of the above embodiments.
- the chip may be a programmable device.
- the programmable device is CPLD (Complex Programmable Logic Device, complex programmable logic device), EPLD (Erasable Programmable Logic Device, erasable programmable logic device) or FPGA (field-programmable gate array, field programmable gate array) ).
- the first storage space and the second storage space are located within at least one cache.
- the first storage space and the second storage space are located in the same cache (refer to the cache 400 in FIG. 3 , the cache 400 includes the first storage space 410 and the second storage space 420 ), that is, the first storage space and the second storage space Storage spaces are different storage spaces within the same cache.
- the first storage space and the second storage space are located in two caches respectively, that is, the first storage space is located in one cache of the two caches, and the second storage space is located in the other cache of the two caches .
- the cache may be a random access memory or a double-rate synchronous dynamic random access memory (Double Data Rate Synchronous Dynamic Random Access Memory, DDR SRAM).
- DDR SRAM Double Data Rate Synchronous Dynamic Random Access Memory
- the display device further includes a driver chip (Driver IC) and a timing controller (Timming Controller, T-CON).
- the driving chip is bound to the display panel, and the control chip is coupled to the timing controller.
- the data processing device transmits the image data (for example, the image data includes the pixel value of each pixel; for example, the pixel value is the compensation pixel value) to the timing controller, and the timing controller outputs the timing control signal to the driver chip, and the driver chip
- the driving signal is output to the display panel according to the timing control signal, so as to drive the display panel to display.
- the backlight module further includes a lamp board, where a plurality of light emitting devices and a backlight control circuit coupled with the plurality of light emitting devices are arranged on the light board.
- the data processing device transmits the first backlight value of each backlight unit to the backlight control circuit
- the backlight control circuit converts the first backlight value into a corresponding backlight control signal (eg, a PWM signal), and sends it to each backlight unit.
- the light-emitting devices transmit corresponding backlight control signals to control the light-emitting devices to emit light.
- the backlight module adopts local dynamic dimming technology.
- the embodiments of the present disclosure do not limit the number of light-emitting devices provided in the backlight unit, and can be designed according to actual conditions.
- the number of light-emitting devices L provided in one backlight unit is greater than or equal to two (for example, in the backlight unit 210 in FIG. 5, the number of light-emitting devices is four, which are L1-L4 respectively), and at least two light-emitting devices The devices are uniformly distributed within the backlight unit.
- the light emitting device may employ inorganic light emitting devices including micro light emitting diodes (micro LEDs) or mini light emitting diodes (mini LEDs).
- An embodiment of the present disclosure provides a data processing method, which is applied to the above-mentioned display device.
- the execution body of the data processing method may be the display device, or one or some components of the display device.
- it may be The data processing device in the text.
- the display device may obtain the first backlight value corresponding to the multiple backlight units according to the image data corresponding to the image to be displayed, the image data including the initial pixel values of the multiple pixels. For example, according to the initial pixel value of each pixel corresponding to each backlight unit, the first backlight value of the backlight unit is obtained.
- the display device further includes a storage part.
- the storage component may be a memory, such as a DDR.
- the storage component is configured to store the first backlight value and the initial pixel value.
- the first backlight value and the initial pixel value are located in different storage spaces, respectively.
- each pixel includes a plurality of sub-pixels, for example, the plurality of sub-pixels are red sub-pixels, green sub-pixels and blue sub-pixels.
- the first image data contains the gray scale of each sub-pixel in each pixel.
- the initial pixel value of the pixel can be obtained according to the gray scale of each sub-pixel in the pixel.
- the RGB data is converted into YUV data. Taking the BT709 standard as an example, the pixel's gray level can be obtained.
- Brightness Y 0.2126R+0.7152G+0.0722B, at this time, the brightness Y value of the pixel can be regarded as the initial pixel value of the pixel.
- the embodiment of the present disclosure does not limit the conversion standard of RGB data and YUV data, and can be selected according to the actual situation.
- the pixel average value of the backlight unit of J times is obtained to obtain the first backlight value of the backlight unit.
- the pixel average value of the backlight unit is the average value of initial pixel values of each pixel corresponding to the backlight unit, and 1 ⁇ J ⁇ 2.
- J can be taken as 1.5.
- each backlight unit corresponds to 1600 pixels, and the 1600 pixels are arranged in an array of 40 rows and 40 columns, the average value of the sum of the initial pixel values of the 1600 pixels that are J times is calculated to obtain the backlight unit.
- the first backlight value of the backlight unit may be a unitless value, and the value of the value only represents the relative brightness of the backlight unit.
- the first backlight value of the backlight unit can be used to control the size of the drive current, that is, the first backlight value can be regarded as the backlight drive value, the backlight drive value has a linear relationship with the drive current, and the drive current has an approximately linear relationship with the luminous brightness.
- the magnitude of the driving current represents the magnitude of the relative brightness of the backlight unit.
- REXT is the external resistor of the chip
- GCG[A:9] and GCG[8: 6] are all preset register values
- Code is the backlight drive value
- I OUT ICG is the drive current.
- the present disclosure may also use different standards for conversion, which is not limited here.
- the first backlight value of the backlight unit may also be the actual brightness of the backlight unit.
- the first backlight value (backlight driving value) BL V of the backlight unit under a certain brightness for example, Y is a certain gray level P
- the first backlight value (backlight driving value) BL V under the maximum light-emitting brightness of the display device for example, Y is the maximum gray level 255.
- the backlight driving value of the display device 500 at the maximum light-emitting brightness may be 255 when the maximum value of Y is 255, and the light-emitting brightness of each backlight unit is adjusted, and the obtained light-emitting brightness of the display device 500 reaches the maximum brightness (for example, 1000nit) The corresponding backlight drive value.
- the first backlight values of the plurality of backlight units may be divided into a plurality of sets of backlight data.
- one backlight data set includes the first backlight values of at least one row of the backlight units.
- one backlight data set may include first backlight values of multiple rows of backlight units; for example, one backlight data set and the next backlight data set of the one backlight data set may have first backlight values of the same row of backlight units.
- the backlight data set includes first backlight values of at least one row of backlight units, and at least one row of backlight units includes an M-th row of backlight units, where M is a positive integer.
- the M-th row of backlight units is any row of backlight units among the plurality of backlight units.
- the data processing method includes:
- N-1 is a positive integer, that is, N is an integer greater than 1.
- the Nth sliding window period use the moved sliding window to sample the backlight data set, store the N+1th backlight data subset obtained by sampling into the second storage space, and store the N+1th backlight data subset obtained by sampling into the second storage space, and according to the Nth backlight data subset Set, calculate the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset in each pixel corresponding to the Mth row backlight unit.
- the N-1th sliding window period corresponds to the Nth backlight data subset
- the Nth backlight data subset corresponds to the first backlight value of at least one backlight unit
- at least one backlight unit includes the Mth row of backlight units. of at least one backlight unit.
- the backlight unit at the center of the array formed by the multiple backlight units is located at the center of the array.
- the period of sampling to obtain the Nth backlight data subset is different from the period of calculating the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset according to the Nth backlight data subset, and is staggered.
- the sliding window corresponds to the Nth backlight data subset, for example, the position of the sliding window is at the position of the Nth backlight data subset, so that in the N-1th During the sliding window period, the Nth backlight data subset is obtained by sampling the sliding window; in the Nth sliding window period, the sliding window corresponds to the N+1th backlight data subset, for example, the position of the sliding window is at the N+1th At the position of the number of backlight data subsets, in this way, in the Nth sliding window period, the N+1th backlight data subset is obtained by sampling the sliding window.
- each backlight unit corresponding to the Nth backlight data subset is arranged in an array, and the above-mentioned at least one pixel corresponding to the Nth backlight data subset is at least one pixel corresponding to the backlight unit at the center of the array. .
- the Nth backlight data subset obtained by the sliding window sampling, in the Nth sliding window period calculate the compensation coefficient of at least one pixel, the backlight corresponding to the at least one pixel position
- the unit is located at the center of the backlight unit array corresponding to the Nth backlight data subset, and the backlight unit is located in the Mth row of backlight units.
- part (A) in FIG. 7 shows that for a backlight data set, in each sliding window period, the subset of backlight data obtained through the moving sliding window, part (B) in FIG.
- each backlight unit 210 corresponding to the backlight data set in section A wherein each backlight unit corresponding to the Nth backlight data subset is in an array of 5 rows and 5 columns, and at least one pixel corresponding to the Nth backlight data subset is At least one pixel corresponding to the backlight unit 210 at the center of the array of 5 rows and 5 columns (ie, the backlight unit of the 3rd row and 3rd column in the array of 5 rows and 5 columns).
- the compensation coefficient of at least one pixel corresponding to the backlight unit in the 3rd row and 3rd column in the array of 5 rows and 5 columns corresponding to the Nth backlight data subset is calculated.
- the multiple pixels are arranged in an array, and in the Nth sliding window period, the compensation coefficient of one row of pixels among the multiple pixels corresponding to one backlight unit can be calculated.
- the backlight unit is located at the center of the backlight unit array corresponding to the Nth backlight data subset, and the one backlight unit is located in the Mth row of backlight units.
- the backlight unit in the 3rd row and 3rd column in the array of 5 rows and 5 columns of backlight units corresponding to the Nth backlight data subset the backlight unit in the 3rd row and 3rd column corresponds to 40 rows and 40 columns of pixels.
- the compensation coefficient of one row of pixels ie, one row of 40-column pixels
- the backlight unit of the third row and third column can be calculated.
- the compensation coefficient of a row of pixels corresponding to one backlight unit is calculated, and in the N+1th sliding window period, the compensation coefficient of a row of pixels corresponding to another backlight unit is calculated.
- the unit and the other backlight unit are two adjacent columns of backlight units in the same row of backlight units, and the row of pixels corresponding to the one backlight unit and the row of pixels corresponding to the other backlight unit are consecutively arranged pixels in the same row of pixels .
- the pixel position corresponding to the first column of pixels in the next row of pixels in the row of pixels is The backlight data subset corresponding to the first backlight value of the backlight unit is sampled to calculate the compensation coefficient of the first column of pixels in the next row of pixels in the row of pixels according to the backlight data subset in the next sliding window period.
- the backlight data subset corresponding to the first backlight value of the backlight unit corresponding to the pixel position of the first column of pixels in one row is the same as the one in the next row of pixels in the row of pixels.
- the backlight data subsets corresponding to the first backlight values of the backlight units corresponding to the pixel positions of the first column of are the same.
- the backlight unit is in an array of 108 rows and 192 columns.
- the 192nd backlight data subset corresponding to the M-th row of backlight units is obtained by sampling, and the 192nd backlight data subset includes the first backlight values of multiple backlight units, and the multiple backlight units are based on the number of the backlight units.
- the 192nd backlight unit of the M rows of backlight units is an array; in the 192nd sliding window period, the 193rd backlight data subset corresponding to the Mth row of backlight units is sampled to obtain the 193rd backlight data subset.
- the plurality of backlight units is an array centered on the first backlight unit of the M-th row of backlight units, and is based on the 192nd sampling obtained in the 191st sliding window period.
- the compensation coefficient is calculated for the first row of pixels in the multi-row pixels corresponding to the 192nd backlight unit; in the 193rd sliding window period, the 194th backlight data corresponding to the Mth row of backlight units is obtained by sampling Subset, the 194th backlight data subset includes the first backlight value of a plurality of backlight units, and the plurality of backlight units is an array centered on the second backlight unit of the M-th row of backlight units, and according to the 192nd For the 193rd subset of backlight data sampled in the sliding window period, the compensation coefficient is calculated for the second row of pixels in the multi-row pixels corresponding to the first backlight unit; in the 194th sliding window period, the The 195th backlight data subset corresponding to the M-th row of backlight units, the 195th backlight data subset includes the first backlight values of multiple backlight units, and the multiple backlight units are the third backlight of the M-th row of backlight units.
- the array is centered on the unit, and according to the 194th backlight data subset sampled in the 193rd sliding window period, the compensation coefficient is calculated for the second row of pixels in the multiple rows of pixels corresponding to the second backlight unit.
- the third backlight data subset corresponding to the M-th row of backlight units is obtained by sampling, and the third backlight data subset includes first backlight values of multiple backlight units, and multiple backlight data subsets.
- the backlight unit is an array centered on the third backlight unit of the M-th row of backlight units, and the third backlight data subset obtained by sampling in the second sliding window period is the same as that in the 194th sliding window period.
- the resulting 195th backlight data subset is the same.
- the backlight data set in the process of sampling the first backlight values of the plurality of backlight units, is first retrieved from a memory (eg, DDR) that stores the first backlight values of all the backlight units, and stored in a storage space.
- the backlight data set is loaded in, and the backlight data set includes the first backlight values of the multiple rows of backlight units, and then the sliding window is used to sample the backlight data set formed by the loaded first backlight values of the multiple rows of backlight units to obtain each Backlight data subset.
- a memory eg, DDR
- the backlight data set is loaded in, and the backlight data set includes the first backlight values of the multiple rows of backlight units, and then the sliding window is used to sample the backlight data set formed by the loaded first backlight values of the multiple rows of backlight units to obtain each Backlight data subset.
- one row of backlight units includes 192 columns of backlight units
- one backlight data set includes the first backlight values of 5 rows of backlight units
- the backlight data set before sampling the backlight data set, it is necessary to First load the backlight data set, that is, load the first backlight values of 5 rows of backlight units, that is, load the first backlight values of 5 ⁇ 192 backlight units, and then use the sliding window to load the 5 ⁇ 192 backlight units.
- the backlight data set constituted by the first backlight value is sampled. In this way, when the data volume of the backlight data set is relatively large, additional storage resources will be occupied and the cost will be increased. And, if the time to load the first backlight value of one backlight unit is one clock cycle, the time to load the first backlight value of the five-line backlight unit is 5 ⁇ 192 clock cycles.
- the backlight data set includes the first backlight value of at least one row of backlight units, at least one row of backlight units includes the Mth row of backlight units, and the Nth backlight data subset obtained by sampling in the Nth sliding window period , calculate the compensation coefficient of at least one pixel corresponding to the N-th backlight data subset in each pixel corresponding to the backlight unit of the M-th row, so that within the sliding window period for calculating the compensation coefficient of at least one pixel, it is necessary to wait for the The compensation coefficient of at least one pixel is calculated only after the corresponding backlight data subset is obtained, which makes the data processing time longer.
- the backlight data subset corresponding to the pixel compensation coefficient calculated in the next sliding window period can be obtained.
- the obtained backlight data subset can be directly It is not necessary to wait for the backlight data subset to be obtained and then perform the calculation, so that the process of calculating the compensation coefficient of at least one pixel corresponding to one backlight unit and sampling the backlight data subset corresponding to the next backlight unit can be performed synchronously. , which saves the time of data processing and improves the efficiency of data processing.
- the backlight data set does not need to be loaded into additional storage space before sampling the backlight data set according to the embodiment of the present disclosure, and the backlight data set can be directly loaded from the memory (eg DDR) Sampling the data set can save storage resources; and, compared with the part (A) in FIG. 8 , in the process of sampling the backlight data, part (B) in FIG. This results in a delay in the data processing process, thereby shortening the data processing time and improving the data processing efficiency.
- the memory eg DDR
- the embodiments of the present disclosure provide a data processing method, in which, in the N-1th sliding window period, the backlight data set is sampled by using the sliding window, and the Nth backlight data subset obtained by sampling is stored in the first storage.
- the Nth sliding window period use the moved sliding window to sample the backlight data set, store the N+1th backlight data subset obtained by sampling into the second storage space, and store the N+1th backlight data subset obtained by sampling into the second storage space, and according to the Nth backlight data subset Set, calculate the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset in each pixel corresponding to the Mth row backlight unit.
- the backlight data subset corresponding to the calculation of the pixel compensation coefficient in the next sliding window period can be obtained.
- the obtained backlight data subset can be obtained directly Calculating the pixel compensation coefficient does not need to wait for the backlight data subset to be obtained before performing the calculation, and the process of calculating the compensation coefficient of at least one pixel corresponding to one backlight unit and sampling the backlight data subset corresponding to the next backlight unit can be performed synchronously , which saves the time of data processing and improves the efficiency of data processing.
- the embodiment of the present disclosure does not need to store the backlight data set through additional storage space before sampling the backlight data subset, which can avoid the time consumed for storing the backlight data set, avoid the storage space required for storing the backlight data set, and save energy. storage resources.
- At least one row of backlight units corresponding to the backlight data set is one row of backlight units.
- one backlight data set includes the first backlight value of the M-th row of backlight units; the other backlight data set includes the M+1-th row of backlight units.
- the first backlight value, the other backlight data set may be the one The next backlight data set for the backlight data set.
- At least one row of backlight units corresponding to the backlight data set is two rows of backlight units.
- the two rows of backlight units include an M-th row of backlight units and an M+1-th row of backlight units.
- the M-th backlight data set includes the first backlight value of the M-th row of backlight units and the M+1-th row of backlight units
- the M+1-th backlight data set includes the M+1-th row The first backlight value of the backlight unit and the first backlight value of the M+2 row backlight unit.
- the first backlight data set includes the first backlight value of the first row of backlight units and the first backlight value of the second row of backlight units
- the second backlight data set includes the second row of backlights The first backlight value of the unit and the first backlight value of the 3rd row backlight unit.
- At least one row of backlight units corresponding to the backlight data set is multiple rows of backlight units, and the multiple rows of backlight units include at least three rows of backlight units with the M-th row of backlight units as the middle row. For example, at least three rows of backlight units have an odd number of rows.
- the at least three rows of backlight units with the M th row of backlight units as the middle row refers to the rows of backlight units located on opposite sides of the M th row of backlight units in the at least three rows of backlight units along the column direction of the backlight unit arrangement.
- the numbers are the same, each with at least one row.
- the number of rows of at least three rows of backlight units is W
- W is an odd number greater than or equal to 3
- the M-th row of backlight units is the (W+1)/2-th row of the W rows of backlight units.
- the number of rows of the backlight units located on opposite sides of the backlight unit in the M-th row of the at least three rows of backlight units is (W-1)/2 rows.
- the M-th row of backlight units is the middle row of three rows of backlight units, that is, the M-th row of backlight units is the second row of backlight units in the three rows of backlight units, and along the column direction of the backlight units, three
- the backlight unit is the third row of backlight units in the five rows of backlight units.
- the number of rows of backlight units located on opposite sides of the M-th row of backlight units in the five rows of backlight units along the column direction of the backlight units is two rows.
- At least three rows of backlight units are distributed continuously.
- at least one row of backlight units is three rows of backlight units
- the three rows of backlight units include the second row of backlight units and the third row of backlight units.
- the M th backlight data set (that is, the 3rd backlight data set) includes the first pixel values of the 2nd row to the 4th row backlight unit; the M+1 row backlight unit is the th
- at least three rows of backlight units include the third row of backlight units, the fourth row of backlight units, and the fifth row of backlight units. set) includes the first pixel values of the backlight units in the 3rd row to the 5th row.
- the backlight unit is the middle row of the backlight unit from the 1st row to the 5th row
- the M th backlight data set (that is, the 3rd backlight data set) includes the first pixel value of the 1st row to the 5th row backlight unit
- the M+1 th row of backlight units is the 4th row of backlight units
- at least three rows of backlight units include the 2nd to 6th rows of backlight units.
- the M+1 th backlight data set (that is, the fourth backlight unit A data set) includes the first pixel values of the backlight units in the 2nd row to the 6th row.
- a backlight data set includes the first backlight values of at least two rows of backlight units
- the first backlight values of the at least two rows of backlight units are arranged in sequence;
- the column directions in which the plurality of backlight units are arranged are sequentially arranged.
- at least two rows of backlight units include the first backlight values of the first to fifth rows of backlight units, along the Y direction in FIG.
- the first backlight value of the 2 rows of backlight units, the first backlight value of the 3rd row of backlight units, the first backlight value of the 4th row of backlight units and the first backlight value of the 5th row of backlight units are arranged in sequence.
- the first backlight value of each backlight unit in each row of backlight units is arranged along the row direction in which the plurality of backlight units are arranged.
- the backlight data set when the M-th row of backlight units is the first row of backlight units (ie, the first row of backlight units), the backlight data set includes: at least one row of virtual backlights sequentially arranged along the column direction in which the plurality of backlight units are arranged. value, the first backlight value of the first row of backlight units, and the first backlight value of the second row of backlight units.
- the number of virtual backlight values in each row is equal to the number of first backlight values in the backlight unit of the first row. At least one row of virtual backlight values is zero.
- the backlight unit in the first row and the third column is the backlight corresponding to the backlight data subset with 5 rows and 5 columns.
- the virtual backlight value is zero
- the backlight data subset includes the virtual backlight value of 2 rows and 5 columns, the first backlight value of the backlight unit in the 1st row, the 1st column to the 5th column, the second row, the 1st column to the 5th column
- an array composed of a plurality of backlight units corresponding to each first backlight value in a backlight data subset the backlight unit at the center of the array is located in the first column of backlight units, and the backlight data subset includes at least one virtual Pixel values, such as the position where the sliding window cannot obtain the first backlight value, are all virtual pixel values.
- an array of 3 rows and 3 columns formed by a plurality of backlight units corresponding to each first backlight value in a backlight data subset, the backlight unit at the center of the array is the 2nd row and 1st column in the backlight module.
- the nine first backlight values in the one backlight data subset are the virtual pixel value, the first backlight value of the backlight unit in the first row and the first column, and the first backlight value of the backlight unit in the first row and the second column.
- calculating the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset in each pixel corresponding to the Mth row backlight unit including: according to the formula A compensation coefficient for the at least one pixel is obtained.
- G is the compensation coefficient of one pixel
- ⁇ is the gamma value of gamma correction
- B max is the maximum first backlight value of the backlight unit corresponding to one pixel
- B psf is the second backlight value corresponding to one pixel
- the corresponding second backlight value is the product of the first backlight value in the Nth backlight data subset and the optical diffusion coefficient of each backlight unit corresponding to the Nth backlight data subset at a corresponding position of a pixel.
- the backlight driving value corresponding to the maximum light emission luminance of the display device may be used as the maximum first backlight value (maximum backlight luminance driving value) of the backlight unit corresponding to one pixel.
- the pixel value is the largest (for example, the pixel grayscale is 255)
- the corresponding backlight driving value when the light-emitting brightness of the display device reaches the maximum brightness (for example, 1000 nit) is obtained, That is, the maximum first backlight value of the backlight unit corresponding to the pixel.
- the backlight value has a linear relationship with the driving current, and the driving current has an approximately linear relationship with the luminous brightness.
- ⁇ is the gamma value in the process of performing gamma correction on the image data by the display device.
- the value of ⁇ may be 2.2 or 2.4.
- Bmax in the expression can be used as the maximum first backlight value of the backlight unit corresponding to the pixel.
- the display brightness of BPsf can be used as the display brightness corresponding to the second backlight value of the pixel.
- the optical diffusion coefficient of a backlight unit at a corresponding position of a pixel is related to the relative positional relationship between the backlight unit and the pixel.
- the relative positional relationship includes a reference distance and a reference angle; for example, referring to FIG. 12 , the reference distance Z is the distance between the corresponding position of a pixel Q being projected in the backlight module and the reference point S of each backlight unit 210, the The reference point S can be any point in the backlight unit 210.
- the reference point S is the center point (eg, the geometric center or the geometric center of gravity) of the backlight unit 210;
- the included angle between the line connecting the reference points S of each backlight unit 210 and the reference direction, the reference direction is any direction in the plane perpendicular to the thickness of the display device, for example, the reference direction is the X direction in FIG. 12 .
- the backlight units are arranged in an array, referring to FIG. 5 , with the center point O of the backlight unit 210 as the coordinate origin, the row direction X of the backlight unit 210 as the horizontal axis, and the column direction Y as the vertical axis, the coordinates are established. Tie. Measure the brightness value of each coordinate point T in the coordinate system, and record the distance F between each coordinate point T and the coordinate origin O, and the angle ⁇ between the line connecting each coordinate point T and the coordinate origin O and the horizontal axis, according to The brightness value of each coordinate point and the brightness value of the coordinate origin are used to obtain the optical diffusion coefficient of the backlight unit 210 .
- the optical diffusion coefficient may be the ratio between the luminance value of each coordinate point T and the luminance value of the coordinate origin O.
- the coordinate origin O is the position where the maximum luminance value of the backlight unit 210 is located.
- the above-mentioned correspondence list of the distance F, the included angle ⁇ and the optical diffusion coefficient can be searched to obtain the reference distance and reference angle of the backlight unit. under the optical diffusion coefficient.
- a second backlight value corresponding to a pixel can be obtained.
- the first backlight values of the 25 backlight units are BL 1 to BL 25 respectively, and the backlight unit corresponding to one pixel is located at 5
- the optical diffusion coefficients of the 25 backlight units at the corresponding positions of the one pixel are respectively ⁇ 1 - ⁇ 25 .
- the second backlight value B psf of the one pixel (BL 1 ⁇ 1 +BL 2 ⁇ 2 +BL 3 ⁇ 3 +...+BL 25 ⁇ 25 ).
- the sampling position of the first backlight value of the backlight unit corresponds to the backlight unit.
- the arrangement position of the first backlight value of the backlight unit A(1,1) in the first row and the first column is also the first row and the first backlight value. 1 column, the arrangement position can be expressed as D(1,1).
- the backlight unit 210 at the center of the backlight unit array with 5 rows and 5 columns is the i-th row.
- the data address of the first backlight value D(i, j) of the backlight unit A ij is p.
- i and j are both positive integers.
- the first backlight value may be a virtual backlight value.
- u indicates that a row of backlight units has u columns of backlight units, and u is a positive integer, for example, u is 192.
- the 1st row and 1st column backlight unit in the 5-row 5-column backlight unit array is represented as A(i-2,j-2), and the arrangement position of the first backlight value is D(i-2,j- 2), the data address of its first backlight value is p-2u-2;
- the 1st row and 2nd column backlight unit in the 5-row 5-column backlight unit array is denoted as A(i-2,j-1), its th
- the arrangement position of a backlight value is D(i-2,j-1), and the data address of the first backlight value is p-2u-1;
- the unit is represented as A(i-2,j), the arrangement position of its first backlight value is D(i-2,j), and the data address of its first backlight value is p-2u; 5 rows and 5 columns of backlight units
- the backlight unit in the 1st row and 4th column in the array is represented as A(
- the data address is p-2u+1; the 1st row and 5th column backlight unit in the 5-row 5-column backlight unit array is represented as A(i-2,j+2), and the arrangement position of the first backlight value is D(i-2,j+2), the data address of the first backlight value is p-2u+2.
- the 2nd row and 1st column backlight unit in the 5-row 5-column backlight unit array is represented as A(i-1,j-2), and the arrangement position of the first backlight value is D(i-1,j-2) , the data address of its first backlight value is p-u-2;
- the second row and second column of the backlight unit in the 5-row and 5-column backlight unit array is represented as A(i-1,j-1), and the first backlight value is The arrangement position is D(i-1,j-1), and the data address of the first backlight value is p-u-1;
- the 2nd row and 3rd column backlight unit in the 5-row 5-column backlight unit array is represented as A(i -1,j), the arrangement position of the first backlight value is D(i-1,j), and the data address of the first backlight value is p-u;
- the 2nd row, the 4th row in the 5-row 5-column backlight unit array The column backlight unit is represented as A(i-1,j+1),
- the backlight unit in the 3rd row and 1st column in the 5-row 5-column backlight unit array is denoted as A(i, j-2), and the arrangement position of the first backlight value is D(i, j-2), and its first backlight value is D(i, j-2).
- the data address of the backlight value is p-2; the backlight unit of the 3rd row and 2nd column in the 5-row 5-column backlight unit array is represented as A(i,j-1), and the arrangement position of the first backlight value is D( i,j-1), the data address of the first backlight value is p-1; the 3rd row and 3rd column backlight unit in the 5-row 5-column backlight unit array is denoted as A(i,j), its first backlight unit The arrangement position of the value is D(i,j), and the data address of the first backlight value is p; the 3rd row and 4th column backlight unit in the 5-row 5-column backlight unit array is represented as A(i,j+1 ), the arrangement position of its first backlight value is D(i,j+1), the data address of its first backlight value is p+1; the 3rd row and 5th column of the backlight unit array of 5 rows and 5 columns are backlight
- the unit is represented as A(i, j+
- the 4th row and 1st column backlight unit in the 5-row 5-column backlight unit array is represented as A(i+1,j-2), and the arrangement position of the first backlight value is D(i+1,j-2) , the data address of the first backlight value is p+u-2;
- the 4th row and 2nd column backlight unit in the 5-row 5-column backlight unit array is represented as A(i+1,j-1), and its first backlight unit
- the arrangement position of the value is D(i+1,j-1), and the data address of the first backlight value is p+u-1;
- the 4th row and 3rd column of the backlight unit in the 5-row 5-column backlight unit array represent is A(i+1,j), the arrangement position of its first backlight value is D(i+1,j), and the data address of its first backlight value is p+u; in the backlight unit array of 5 rows and 5 columns
- the 4th row and 4th column of the backlight unit is represented as A(i+1,j
- the 5th row and 1st column backlight unit in the 5-row 5-column backlight unit array is represented as A(i+2,j-2), and the arrangement position of the first backlight value is D(i+2,j-2) , the data address of its first backlight value is p+2u-2;
- the 5th row and 2nd column backlight unit in the 5-row 5-column backlight unit array is denoted as A(i+2,j-1), its first backlight unit
- the arrangement position of the value is D(i+2,j-1), and the data address of the first backlight value is p+2u-1;
- the 5th row and 3rd column of the backlight unit array of 5 rows and 5 columns represent the backlight unit.
- the arrangement position of its first backlight value is D(i+2,j), and the data address of its first backlight value is p+2u; in the backlight unit array of 5 rows and 5 columns
- the 5th row and 4th column of the backlight unit is represented as A(i+2,j+1), the arrangement position of its first backlight value is D(i+2,j+1), the data of its first backlight value
- the address is p+2u+1;
- the 5th row and 5th column backlight unit in the 5-row 5-column backlight unit array is represented as A(i+2,j+2), and the arrangement position of the first backlight value is D( i+2, j+2), the data address of the first backlight value is p+2u+2.
- the first backlight value corresponding to the backlight unit A(i,j) can be obtained by changing the values of i and j, and the backlight data subset corresponding to the backlight unit A(i,j) can be obtained by sampling accordingly, to calculate at least one pixel compensation coefficient in the backlight unit A(i,j).
- the data processing method further includes: according to the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset and the initial pixel value of at least one pixel in a frame of image , obtain the compensated pixel value of at least one pixel.
- the compensation pixel value V 2 of a pixel is the product of the compensation coefficient G of the pixel and the initial pixel value V 1 of the pixel.
- the compensation coefficient of the pixel The initial pixel value V 1 of the pixel, then the compensated pixel value of the pixel
- the backlight module provides a light source for the display panel, and the picture viewed by the user is the superimposed light-emitting effect of the light-emitting device of the backlight module and the pixels on the display panel. Since the liquid crystal layer in the liquid crystal display device has transmittance to the light emitted from the backlight module, when the display device displays a completely black screen, part of the backlight may pass through, resulting in light leakage of the display device, resulting in reduced display effect. In order to avoid light leakage, the brightness of the backlight can be reduced while displaying a darker picture.
- the liquid crystal layer has a certain transmittance, the light passing through the liquid crystal layer can be reduced at a low backlight brightness to achieve The display effect is completely black; in the part of the bright screen, the required backlight brightness can be maintained to realize the display effect of the bright screen.
- the local dynamic dimming technology can be used to avoid light leakage in the display.
- the backlight module is divided into multiple backlight units (which can also be described as backlight partitions), and at least one pixel corresponds to one backlight unit.
- One light-emitting device corresponds to at least one pixel on the display panel, and dynamically controls the intensity of the backlight according to the display content (ie, the pixel value) of at least one pixel corresponding to the position of the backlight unit.
- the control of the pixels corresponding to the backlight unit can reduce the luminous brightness of the backlight unit in a dark picture, and maintain the luminous brightness of the backlight unit in a bright picture.
- the bright part and the dark part of the display screen are connected to each other.
- the light-emitting brightness of the backlight unit corresponding to the display area should be determined by the corresponding light-emitting device and several surrounding light-emitting devices. devices together.
- the brightness of the display area corresponding to the backlight unit on the backlight module and the backlight units around it is different, therefore, when the luminous brightness of the light-emitting devices in the backlight units around a backlight unit is significantly reduced, the The luminous brightness of the backlight unit will also be affected, resulting in deviations in the display brightness of the display area corresponding to the backlight unit.
- the gamma curve is low.
- the pixel value (ie low gray scale) interval produces obvious distortion, which deviates from the standard gamma curve. Such distortion may cause the human eye to be unable to see the details of the picture when the display device displays the dark part of the picture, resulting in the loss of the picture details.
- the backlight module drives the backlight unit to emit light according to the first backlight value corresponding to each backlight unit
- the display panel displays according to the compensated pixel value of each pixel, and combines the actual backlight brightness.
- the pixel value is compensated, which can avoid the deviation of the pixel display caused by the mutual interference of the light emission of each backlight unit, and can avoid the distortion of the gamma curve, thereby improving the display effect of the display device.
- the process of compensating the pixel values of a plurality of pixels is also performed row by row.
- the moving direction of the sliding window is the same as the row direction of the backlight unit, and the moving step of the sliding window is the first backlight value corresponding to a column of backlight units.
- the moving direction of the sliding window is the same as the row direction of the backlight unit (ie, the X direction in FIG. 7), and the sliding window of the Nth sliding window period is compared with the N-1th sliding window.
- the sliding window of the sliding window period moves the position of the first backlight value of a column of backlight units.
- the start time of the compensation coefficient of the first pixel calculated according to the Nth backlight data subset is the pixel period of one row of pixels among the plurality of pixels corresponding to one backlight unit.
- the compensation of the first pixel calculated according to the Nth backlight data subset is calculated
- the time difference between the start time of the coefficient and the start time of the compensation coefficient of the first pixel calculated according to the N+1th backlight data subset within the N+1th sliding window period is 40 pixel periods.
- the pixel period is the time it takes to calculate the compensation coefficient for one pixel from a subset of backlight data.
- the N+1th N+th pixel is obtained by sampling.
- 1 backlight data subset that is, when the N+1th sliding window period arrives, the N+1th backlight data subset is taken out in advance, so that within the N+1th sliding window period according to the N+1th
- the N+1 th backlight data subset can be obtained before calculating the compensation coefficient of the corresponding pixel for each backlight data subset, compared with the N+1 th backlight data subset obtained within the N+1 th sliding window period.
- the data sampling time can be saved, the data processing delay can be avoided, and the data processing efficiency can be improved.
- the sampling process of the backlight data subset on which the compensation coefficient of a pixel corresponding to the backlight unit is calculated is not within a sliding window period from the calculation process of the compensation coefficient of the pixel, and the calculation process of a pixel corresponding to the backlight unit is calculated.
- the sampling of the backlight data subset on which the compensation coefficient is based is earlier than the calculation of the compensation coefficient for one pixel, so that when the pixel data (ie, the initial pixel value) arrives, the compensation coefficient can be calculated according to the obtained backlight data subset. , and get the compensated pixel value according to the compensation coefficient and the initial pixel value.
- the pixel data Compared with the sampling of the backlight data subset when the pixel data arrives, the pixel data needs to be stored in a storage space first, and the pixel compensation is started after the backlight data subset is obtained by sampling, and the compensation pixel value is calculated.
- the embodiments of the present disclosure can directly perform the calculation according to the backlight data subset, thereby saving the storage space for storing the pixel data and avoiding occupying additional storage resources.
- the data processing method further includes: in the N+1th sliding window period, using the moved sliding window to sample the backlight data set, and sampling the N+2th
- the backlight data subset is stored in the first storage space, and according to the N+1th backlight data subset, at least one pixel corresponding to the N+1th backlight data subset in each pixel corresponding to the Mth row backlight unit is calculated. Compensation factor for pixels.
- the Nth backlight data subset stored in the first storage space has been used. In this case, referring to FIG.
- the N+2 th backlight data subset in the process of obtaining the N+2 th backlight data subset, can be stored in the first storage space, and after obtaining the N+3 th backlight data subset During the data subset process, the N+3th backlight data subset can be stored in the second storage space, so that the first storage space and the second storage space are alternately stored in data, saving the data storage space of the display device , saving production costs.
- the data processing method further includes: in the last sliding window period corresponding to the backlight data set, according to the last backlight data subset of the backlight data set, calculating in each pixel corresponding to the M-th row backlight unit, The compensation coefficient of at least one pixel corresponding to the last backlight data subset, and using the moved sliding window to sample the next backlight data set of the backlight data set to obtain the first backlight data subset of the next backlight data set. set.
- one backlight data set includes the first backlight value of the M-th row of backlight units
- the next backlight data set of the one backlight data set includes the M+1-th row of backlight units.
- the last backlight data subset of a backlight data set is the backlight data subset used to calculate the compensation coefficient for the pixels in the last row corresponding to the M-th row of backlight units in the backlight data set, and in the last sliding window period, for The compensation coefficient is calculated for the last row of pixels corresponding to the M-th row of backlight units in a backlight data set.
- the first backlight data subset of the next backlight data set is the backlight data subset used to calculate the compensation coefficient for the pixels in the first row corresponding to the M-th row of backlight units in the one backlight data set.
- one sliding window moves the position of one column of backlight units along the row direction compared to the previous sliding window.
- a plurality of backlight units corresponding to a subset of backlight data sampled by a sliding window are arranged in an array.
- the position of the backlight unit corresponding to at least one pixel for which the compensation coefficient is calculated in each pixel corresponding to the backlight unit in the M-th row is at the center of the array of multiple backlight units corresponding to the backlight data subset obtained by sliding window sampling, for example, a
- the multiple backlight units corresponding to the backlight data subset obtained by sliding window sampling are in an array of 5 rows and 5 columns, then the position of the backlight unit corresponding to at least one pixel for which the compensation coefficient is calculated in each pixel corresponding to the backlight unit in the Mth row is located in the 5th row.
- the center of the 5-column array that is, the backlight unit located at the 3rd row and 3rd column of the 5-row and 5-column array.
- the sliding window slides to sample the next backlight data set to obtain the first backlight data subset of the next backlight data set.
- the one backlight data set includes the first backlight values of multiple rows of backlight units with the M th row of backlight units as the middle row
- the next backlight data set includes multiple rows of backlight units with the M+1 th row of backlight units as the middle row.
- the first backlight value of the row backlight unit so that the backlight unit corresponding to each first backlight value in the first backlight data subset includes the first backlight unit (the first column of backlight units) in the M+1th row of backlight units.
- the first backlight value is the first backlight value.
- the first backlight unit in the M+1 th row of backlight units is located at the center of the array.
- the sliding window moves from the last backlight unit of a row of backlight units to the first backlight unit of the next row of backlight units, and samples the first backlight value corresponding to the backlight unit array centered on the first backlight unit. In this way, the movement of the sliding window between the two backlight data sets can be made continuous, so as to realize the continuous processing of the data.
- the first backlight value of each backlight unit corresponding to one frame of image is calculated according to the initial pixel value of each pixel of the previous frame of image of the one frame of image.
- the first backlight value of each backlight unit corresponding to the one frame of image is configured to drive the backlight module.
- the first backlight value of each backlight unit corresponding to the K-1 th frame image is calculated and obtained.
- the pixel value of each pixel corresponding to the Kth frame of image is compensated according to the first backlight value of each backlight unit calculated from the initial pixel value of each pixel corresponding to the K-1th frame of image , at this time, the first backlight value in the backlight data set corresponding to the Kth frame image is calculated from the initial pixel value of each pixel corresponding to the K-1th frame image.
- K-1 is a positive integer.
- the first backlight value of each backlight unit corresponding to the image of the Kth frame is configured to drive the backlight module.
- the first backlight values of the backlight units corresponding to the two adjacent frames of images are approximately equal.
- the backlight data set of the previous frame of image can be used, and it is not necessary to calculate the first backlight value of each backlight unit according to the image data of the current frame of image, which saves the time of data processing. time, thereby improving the efficiency of data processing.
- the first backlight value of the backlight data set for the first frame image pair may be calculated from the initial pixel values of each pixel of the first frame image pair.
- Embodiments of the present disclosure provide a data processing apparatus.
- the data processing device is applied to the above-mentioned display device.
- the M th backlight data set includes the first backlight values of at least one row of backlight units, the at least one row of backlight units includes the M th row of backlight units, and M is a positive integer.
- the data processing device is configured to use the sliding window to sample the Mth backlight data set within the N-1th sliding window period, and store the Nth backlight data subset obtained by sampling into the first storage space; and, During the Nth sliding window period, the Mth backlight data set is sampled by using the moved sliding window, and the N+1th backlight data subset obtained by sampling is stored in the second storage space, and according to the For the N backlight data subsets, the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset in each pixel corresponding to the M-th row of backlight units is calculated.
- N-1 is a positive integer.
- the data processing apparatus is further configured to use the moved sliding window to sample the Mth backlight data set within the N+1th sliding window period, and to sample the N+2th backlight data set obtained by sampling.
- the backlight data subset is stored in the first storage space, and according to the N+1th backlight data subset, at least one pixel corresponding to the N+1th backlight data subset in each pixel corresponding to the Mth row backlight unit is calculated. Compensation factor for pixels.
- the data processing apparatus is further configured to, within the last sliding window period corresponding to the M th backlight data set, calculate the backlight in the M th row according to the last backlight data subset of the M th backlight data set. In each pixel corresponding to the unit, the compensation coefficient of at least one pixel corresponding to the last backlight data subset, and use the moved sliding window to sample the M+1th backlight data set to obtain the M+1th backlight data. The first subset of backlight data for the collection.
- the data processing apparatus is further configured to, within the Nth sliding window period, according to the compensation coefficient of at least one pixel corresponding to the Nth backlight data subset and the compensation coefficient of at least one pixel in one frame of image The initial pixel value, and the compensated pixel value of at least one pixel is obtained.
- Some embodiments of the present disclosure provide a non-transitory computer-readable storage medium, the computer-readable storage medium stores computer program instructions, and when the computer program instructions are executed on a processor, causes the computer to execute the above-mentioned embodiments The data processing method described in any one of the embodiments.
- the computer herein may be the above-mentioned display device.
- the above-mentioned computer-readable storage media may include, but are not limited to, magnetic storage devices (eg, hard disks, floppy disks, or magnetic tapes, etc.), optical disks (eg, CD (Compact Disk), DVD (Digital Versatile Disk, etc.), Digital Universal Disk), etc.), smart cards and flash memory devices (eg, EPROM (Erasable Programmable Read-Only Memory), card, stick or key drive, etc.).
- the various computer-readable storage media described in this disclosure may represent one or more devices and/or other machine-readable storage media for storing information.
- the term "machine-readable storage medium" may include, but is not limited to, wireless channels and various other media capable of storing, containing, and/or carrying instructions and/or data.
- the computer program product includes computer program instructions that, when executed on a computer, cause the computer to perform one or more steps in the data processing methods described in the above embodiments.
- Some embodiments of the present disclosure also provide a computer program.
- the computer program When the computer program is executed on a computer, the computer program causes the computer to perform one or more steps in the data processing method described in the above-mentioned embodiments.
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Abstract
Description
Claims (18)
- 一种数据处理方法,应用于显示装置中,所述显示装置包括:显示面板、背光模组、第一存储空间和第二存储空间;所述显示面板和所述背光模组相对设置;所述显示面板包括多个像素,所述背光模组包括多个背光单元,每个背光单元与至少一个像素位置对应;针对一个背光数据集合,所述背光数据集合包括至少一行背光单元的第一背光值,所述至少一行背光单元包含第M行背光单元,所述M为正整数,所述数据处理方法包括:在第N-1个滑动窗口周期内,利用滑动窗口对所述背光数据集合进行取样,将取样得到的第N个背光数据子集存入所述第一存储空间;所述N-1为正整数;在第N个滑动窗口周期内,利用移动后的所述滑动窗口对所述背光数据集合进行取样,将取样得到的第N+1个背光数据子集存入所述第二存储空间,并根据所述第N个背光数据子集,计算在所述第M行背光单元对应的各个像素中,与所述第N个背光数据子集对应的至少一个像素的补偿系数。
- 根据权利要求1所述的数据处理方法,还包括:在第N+1个滑动窗口周期内,利用移动后的所述滑动窗口,对所述背光数据集合进行取样,将取样得到的第N+2个背光数据子集存入所述第一存储空间,并根据所述第N+1个背光数据子集,计算在所述第M行背光单元对应的各个像素中,与所述第N+1个背光数据子集对应的至少一个像素的补偿系数。
- 根据权利要求1或2所述的数据处理方法,还包括:在所述背光数据集合对应的最后一个滑动窗口周期内,根据所述背光数据集合的最后一个背光数据子集,计算在所述第M行背光单元对应的各个像素中,与所述最后一个背光数据子集对应的至少一个像素的补偿系数,并利用移动后的所述滑动窗口对所述背光数据集合的下一个背光数据集合进行取样,得到所述下一个背光数据集合的第一个背光数据子集。
- 根据权利要求1~3中任一项所述的数据处理方法,其中,所述至少一行背光单元为多行背光单元,所述多行背光单元包括以所述第M行背光单元为中间行的至少三行背光单元。
- 根据权利要求1~3中任一项所述的数据处理方法,其中,在所述第M行背光单元为第一行背光单元的情况下,所述背光数据集合包括:沿所述多个背光单元排列的列方向依次排列的至少一行虚拟背光值、所述第一行背光 单元的第一背光值和第二行背光单元的第一背光值;每行虚拟背光值的个数与所述第一行背光单元的第一背光值的个数相等;所述至少一行虚拟背光值为零。
- 根据权利要求1~5中任一项所述的数据处理方法,其中,所述第N个背光数据子集对应的各背光单元呈阵列排布,与所述第N个背光数据子集对应的至少一个像素为阵列的中心位置处的背光单元对应的至少一个像素。
- 根据权利要求1~6中任一项所述的数据处理方法,其中,在所述第N个滑动窗口周期内,所述数据处理方法还包括:根据与所述第N个背光数据子集对应的至少一个像素的补偿系数、以及一帧图像中所述至少一个像素的初始像素值,求得所述至少一个像素的补偿像素值。
- 根据权利要求7所述的数据处理方法,其中,所述一帧图像对应的各背光单元的第一背光值是根据该一帧图像的上一帧图像的各像素的初始像素值计算得到;在所述显示面板显示该一帧图像情况下,所述一帧图像对应的各背光单元的第一背光值被配置为驱动所述背光模组。
- 一种数据处理装置,应用于显示装置中,所述显示装置包括:显示面板、背光模组、第一存储空间和第二存储空间;所述显示面板和所述背光模组相对设置;所述显示面板包括多个像素,所述背光模组包括多个背光单元,每个背光单元与至少一个像素位置对应;针对一个背光数据集合,所述背光数据集合包括至少一行背光单元的第一背光值,所述至少一行背光单元包含第M行背光单元,所述M为正整数,所述数据处理装置被配置为,在第N-1个滑动窗口周期内,利用滑动窗口对所述背光数据集合进行取样,将取样得到的第N个背光数据子集存入所述第一存储空间;及,在第N个滑动窗口周期内,利用移动后的所述滑动窗口对 所述背光数据集合进行取样,将取样得到的第N+1个背光数据子集存入所述第二存储空间,并根据所述第N个背光数据子集,计算在所述第M行背光单元对应的各个像素中,与所述第N个背光数据子集对应的至少一个像素的补偿系数;所述N-1为正整数。
- 根据权利要求10所述的数据处理装置,其中,所述数据处理装置还被配置为,在第N+1个滑动窗口周期内,利用移动后的所述滑动窗口,对所述背光数据集合进行取样,将取样得到的第N+2个背光数据子集存入所述第一存储空间,并根据所述第N+1个背光数据子集,计算在所述第M行背光单元对应的各个像素中,与所述第N+1个背光数据子集对应的至少一个像素的补偿系数。
- 根据权利要求10或11所述的数据处理装置,其中,所述数据处理装置还被配置为,在所述背光数据集合对应的最后一个滑动窗口周期内,根据所述背光数据集合的最后一个背光数据子集,计算在所述第M行背光单元对应的各个像素中,与所述最后一个背光数据子集对应的至少一个像素的补偿系数,并利用移动后的所述滑动窗口对所述背光数据集合的下一个背光数据集合进行取样,得到所述下一个背光数据集合的第一个背光数据子集。
- 根据权利要求10~12中任一项所述的数据处理装置,其中,所述数据处理装置还被配置为,在所述第N个滑动窗口周期内,根据与所述第N个背光数据子集对应的至少一个像素的补偿系数、以及一帧图像中所述至少一个像素的初始像素值,求得所述至少一个像素的补偿像素值。
- 一种数据处理装置,应用于显示装置,所述数据处理装置包括:存储器;所述存储器中存储一个或多个计算机程序;处理器;所述处理器与所述存储器耦接;所述处理器被配置为执行所述计算机程序,以使得所述显示装置实现如权利要求1~9中任一项所述的数据处理方法。
- 一种数据处理装置,所述数据处理装置为芯片;所述芯片被配置为实现如权利要求1~9中任一项所述的数据处理方法。
- 一种显示装置,包括:显示面板;所述显示面板包括多个像素;背光模组,与所述显示面板相对设置;所述背光模组包括多个背光单元,每个背光单元与至少一个像素位置对应;第一存储空间;第二存储空间;和如权利要求10~13中任一项所述的数据处理装置;或者,如权利要求14所述的数据处理装置;或者,如权利要求15所述的数据处理装置。
- 根据权利要求16所述的显示装置,其中,所述第一存储空间和所述第二存储空间位于至少一个缓存内。
- 一种非瞬态的计算机可读存储介质,其存储有计算机程序,其中,所述计算机程序在计算机运行时,使得计算机实现如权利要求1~9中任一项所述的数据处理方法。
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