Dynamic graph display method and device and computer equipment

By generating parameter information through the pixel layout diagram of the lamp, compressing the dynamic image frame information and displaying it using color points, the problems of large storage space and low compression rate of dynamic image files are solved, and efficient dynamic image display and rich playback effects are achieved.

CN120676505APending Publication Date: 2025-09-19OPPLE LIGHTING CO LTD +1
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Patent Information

Application Number
CN202411648851.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

Due to the large amount of data in animated image files, the storage space requirements of lighting fixtures are high and the compression rate is low. The existing compressed image format cannot effectively reduce the storage requirements.

Method used

By obtaining the pixel layout diagram of the lamp, pixel layout parameter information is generated, and based on this information, the dynamic image frame information is compressed and displayed using the color point method to achieve efficient compression and decompression.

Benefits of technology

It improves the compression rate of animated image files, reduces storage space requirements, and supports rich playback effects in different playback directions and frame modes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a dynamic graph display method and device and computer equipment. The method comprises the following steps: acquiring a pixel layout map of the display equipment; pixel layout parameter information is generated according to the pixel layout map, and the pixel layout parameter information is built in the display device; obtaining image frame information of a target moving image needing to be displayed; compressing the image frame information of the target moving image based on a compression configuration condition and the pixel layout parameter information to generate compressed image frame information; and sending the compressed image frame information to the display equipment, and displaying the compressed image frame information in a color point taking mode. Compression of the frame image in the dynamic image file can be correspondingly completed according to the pixel layout condition of the light source in the lamp, the compression rate is effectively improved, meanwhile, the user-defined reduction degree can be supported, the display configuration mode is simple, and the dynamic image display scheme is achieved by being matched with the light source pixels with different arrangement modes.
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Description

Technical Field

[0001] The present disclosure relates to the field of color display technology, and in particular to a method, apparatus, and computer device for displaying a moving image. Background Art

[0002] Ordinary lamps can usually display different brightness and color temperatures statically, but surface light source lamps based on multi-pixel point light sources can control individual pixels, so they can not only display color patterns statically, but also dynamically present pictures to achieve animation effects.

[0003] However, animated image files are usually very large, while the actual storage space and pixel display of the actual lamp are limited. Generally speaking, the compression rate is low when using compressed image format for storage. The device may still need to reserve a large space for data storage, and the corresponding compressed image format needs to be used for decompression. Summary of the Invention

[0004] The embodiments of the present application propose a method, device and computer equipment for displaying animated images. The present application can compress frame images in animated image files according to the pixel layout conditions of the light source in the lamp, effectively improve the compression rate, and support customized restoration degree.

[0005] In one aspect, an embodiment of the present application provides a method for displaying a moving image, comprising:

[0006] Get the pixel layout diagram of the display device;

[0007] generating pixel layout parameter information according to the pixel layout diagram, and embedding the pixel layout parameter information into the display device;

[0008] Get the image frame information of the target animated image to be displayed;

[0009] compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information to generate compressed image frame information;

[0010] The compressed image frame information is sent to the display device for display in a color point manner.

[0011] In a possible implementation, the step of obtaining a pixel layout diagram of a display device includes:

[0012] The color coordinate information of the display device is measured by an integrating sphere when the single-color lamp is lit, and the color gamut range is obtained;

[0013] The color gamut range is converted into a corresponding pixel layout diagram and stored on a server.

[0014] In a possible implementation, generating pixel layout parameter information according to the pixel layout diagram includes:

[0015] The y coordinate of one of the top and bottom pixels in the pixel layout diagram of the display device is set to 0, and the y coordinate of the other pixel is set to y. max ;

[0016] The x coordinate of one of the leftmost and rightmost pixels in the pixel layout diagram of the display device is set to 0, and the x coordinate of the other pixel is set to x. max ;

[0017] The position information corresponding to all other pixel points in the pixel layout diagram is determined according to the position information of the pixel points at the four edge positions of the top, bottom, leftmost and rightmost.

[0018] In a possible implementation, obtaining image frame information of a target animated image to be displayed includes:

[0019] Import the target animated image and obtain the image frame information of each image frame included in it;

[0020] The target animated image is adjusted so that the image frame thereof is aligned with the pixel point distribution area of ​​the display device in a height or width direction.

[0021] In a possible implementation, compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information includes:

[0022] Counting the distribution information of all pixels of the display device along one of the y-axis and the x-axis, and obtaining the distribution density along the other axis, wherein the axis where the distribution information is located is consistent with the alignment direction;

[0023] Dividing the distribution density into first preset equal parts to obtain an expanded distribution density, so as to obtain a compression configuration condition;

[0024] Corresponding color information is extracted from each image frame according to the distribution information and distribution density of the pixel points on the y-axis and the x-axis, and the color coordinate information is converted to obtain compressed image frame information.

[0025] In a possible implementation, the step of dividing the distribution density into first preset equal parts to obtain an expanded distribution density further includes:

[0026] The distribution information is divided into two equal parts according to a second preset number of equal parts to obtain expanded distribution information.

[0027] In one possible implementation, display is performed using a color point method, including:

[0028] Get the position information of the pixel points on the current frame image;

[0029] Acquire minimum segmentation area information in the compression configuration condition, where the minimum segmentation area is determined by the distribution information and the distribution density;

[0030] The position information of the pixel point on the display device corresponding to the pixel point on the current frame image is determined according to the position information of the pixel point on the current frame image and the minimum segmentation area information, so as to select its corresponding color coordinate information as the color coordinate of the pixel point on the current frame image.

[0031] In a possible implementation, displaying by color point selection also includes:

[0032] The display of the current frame image is completed by adjusting the playback direction and / or magnification factor and / or filling mode and / or frame playback parameters of the target animated image.

[0033] In one aspect, an embodiment of the present application provides a motion picture display device, comprising:

[0034] Layout parameter generation unit: used to obtain a pixel layout diagram of a display device;

[0035] generating pixel layout parameter information according to the pixel layout diagram, and embedding the pixel layout parameter information into the display device;

[0036] Frame image compression unit: used to obtain the image frame information of the target dynamic image to be displayed;

[0037] compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information to generate compressed image frame information;

[0038] The compressed image frame information is sent to the display device for display in a color point manner.

[0039] In a possible implementation, the method further includes:

[0040] Frame image playback unit: used to obtain the position information of the pixel points on the current frame image;

[0041] Acquire minimum segmentation area information in the compression configuration condition, where the minimum segmentation area is determined by the distribution information and the distribution density;

[0042] The position information of the pixel point on the display device corresponding to the pixel point on the current frame image is determined according to the position information of the pixel point on the current frame image and the minimum segmentation area information, so as to select its corresponding color coordinate information as the color coordinate of the pixel point on the current frame image.

[0043] In one aspect, an embodiment of the present application provides a computer device, comprising: a storage device and a processor;

[0044] a memory storing one or more computer programs;

[0045] The processor is used to load the one or more computer programs to implement the above-mentioned dynamic image display method.

[0046] In an embodiment of the present application, first, a pixel layout diagram of a display device can be obtained; then, pixel layout parameter information is generated according to the pixel layout diagram, and the pixel layout parameter information is built into the display device; then, image frame information of a target dynamic image to be displayed is obtained; finally, the image frame information of the target dynamic image is compressed based on the compression configuration conditions and the pixel layout parameter information to generate compressed image frame information; the compressed image frame information is sent to the display device to be displayed by a color point sampling method. Thus, it can be seen that, on the one hand, the present application can complete the compression of the frame image in the dynamic image file according to the pixel layout conditions of the light source in the lamp, achieve a matching compression effect, and realize an effective compression scheme in which the compressed information of the frame image has pixel point information corresponding to the light source of the lamp, while improving the compression rate, reducing storage space, and being adaptable to lamp types with different arrangements of pixel point light sources; on the other hand, it can support customized restoration degree and can adjust the decompression effect of the frame image according to different playback requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0047] In order to more clearly illustrate the technical solutions and advantages of the embodiments of this specification or the prior art, the following is a brief introduction to the drawings required for use in the embodiments or the prior art descriptions. Obviously, the drawings described below are only some embodiments of this specification. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0048] Figure 1 A flowchart of a method for displaying a moving image provided in an embodiment of this specification;

[0049] Figure 2 A schematic diagram illustrating the principle of a method for displaying a moving image provided in an embodiment of this specification;

[0050] Figure 3 A schematic diagram of a method for determining pixel positions in a lamp provided in an embodiment of this specification;

[0051] Figure 4 A schematic diagram of a frame image compression method provided in an embodiment of this specification;

[0052] Figure 5 A schematic diagram of a frame image playback method provided in an embodiment of this specification;

[0053] Figure 6 A schematic diagram of determining a frame image playback mode based on a playback direction according to an embodiment of this specification;

[0054] Figure 7 A schematic diagram of determining a frame image playback mode based on an image magnification factor according to an embodiment of this specification;

[0055] Figure 8 A schematic diagram of a frame image playback method in a full fill mode provided in an embodiment of this specification;

[0056] Figure 9 A schematic diagram of a frame image playback method in a fade-in fade-out mode provided in an embodiment of this specification;

[0057] Figure 10 This is a structural diagram of a motion picture display device provided in an embodiment of this specification. DETAILED DESCRIPTION

[0058] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.

[0059] Surface light source lamps can not only display color patterns statically, but also dynamically present the pattern by moving the color pattern to be displayed along a specific direction to achieve animation effects.

[0060] In order to achieve the above-mentioned animation playback effect, it is usually necessary to obtain the frames of the animated image at different times, and simulate the animation playback by displaying the pixel data of different frames at different times. However, this method has the following defects: the frames have too much repeated content, which takes up too much storage space; the generated frames have fixed images and the playback effect is single; and the configuration process is complicated.

[0061] Therefore, in order to solve the above technical problems, the present application proposes a method for displaying animated images. This method can cleverly utilize the strong correlation between frame data and the pixel arrangement of lamps, thereby realizing the feature extraction of the display pattern at one time according to the pixel arrangement of lamps, improving the compression rate of the display pattern, reducing the storage space occupied, and at the same time supporting playback effects of different playback directions and different frame playback modes, enriching the animation playback effect.

[0062] like Figure 1 and Figure 2 As shown, the present application provides a method for displaying a moving picture, comprising:

[0063] S100: Obtain a pixel layout diagram of a display device;

[0064] In one embodiment, step S100 obtains a pixel layout diagram of a display device, which previously includes:

[0065] The color gamut range is obtained by measuring the color coordinate information of the display device when the monochrome lamp beads are lit using an integrating sphere.

[0066] The controller of the lighting device generates the lighting pixel color coordinate data based on the pixel layout parameters, frame image compression data, and playback configuration parameters. If the color coordinates in the image data have been converted, they are used directly. Otherwise, they are converted to the color gamut and finally generate the pixel display data.

[0067] S200: generating pixel layout parameter information according to the pixel layout diagram, and embedding the pixel layout parameter information into the display device;

[0068] It should be noted that the dynamic image display method of the present application is applied in the field of lighting. In actual operation, the frame image can be selected through a user terminal such as a computer or mobile phone and saved in the lighting controller, and the lighting controller extracts the pixel display content in real time for display.

[0069] However, animated image files are usually very large, while the actual storage space and pixel display of lamps are limited. When compressed image formats are used for storage, the compression rate is low. Therefore, the device may still need to reserve a large space for data storage. At the same time, the corresponding fixed decompression is required to complete the decompression of the compressed image format. It is necessary to combine the pixel layout of the light source itself in the lamp to provide a compression and decompression solution that achieves a high compression rate for the animated image and complete the corresponding lamp animated image display scene.

[0070] In one embodiment, step S200 generates pixel layout parameter information according to the pixel layout diagram, including:

[0071] The y coordinate of one of the top and bottom pixels in the pixel layout diagram of the display device is set to 0, and the y coordinate of the other pixel is set to y. max ;

[0072] The x coordinate of one of the leftmost and rightmost pixels in the pixel layout diagram of the display device is set to 0, and the x coordinate of the other pixel is set to x. max ;

[0073] The position information corresponding to all other pixel points in the pixel layout diagram is determined according to the position information of the pixel points at the four edge positions of the top, bottom, leftmost and rightmost.

[0074] Specifically, if Figure 3 As shown, by analyzing the pixel positions corresponding to the light sources in the lamp, the top pixel position is set to y=0, the leftmost pixel is set to x=0, and the bottom pixel is set to x=10000 and the rightmost pixel is set to y=10000.

[0075] The remaining pixels are calculated based on their distance from the edge pixel position, resulting in a table of all pixel positions. If all these pixels may be composed of multiple cascaded lighting devices, each device can store its own pixel position data.

[0076] S300: Obtain image frame information of the target animated image to be displayed;

[0077] In one embodiment, step S300 of obtaining image frame information of a target animated image to be displayed includes:

[0078] Import the target animated image and obtain the image frame information of each image frame included in it;

[0079] The target animated image is adjusted so that the image frame thereof is aligned with the pixel point distribution area of ​​the display device in a height or width direction.

[0080] S400: compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information to generate compressed image frame information;

[0081] In one embodiment, step S400 compresses the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information, including:

[0082] Counting the distribution information of all pixels of the display device along one of the y-axis and the x-axis, and obtaining the distribution density along the other axis, wherein the axis where the distribution information is located is consistent with the alignment direction;

[0083] Dividing the distribution density into first preset equal parts to obtain an expanded distribution density, so as to obtain a compression configuration condition;

[0084] Corresponding color information is extracted from each image frame according to the distribution information and distribution density of the pixel points on the y-axis and the x-axis, and the color coordinate information is converted to obtain compressed image frame information.

[0085] Specifically, if Figure 4 As shown, the first preset equal fraction is 1 / 2 as a default value for explanation:

[0086] 1) According to the pixel vertical axis distribution information, the y-axis where the pixel distribution is located is analyzed and summarized yc to obtain yc1-yc7;

[0087] Specifically, lines are drawn parallel to the x-axis at specific intervals, and the points where they intersect the y-axis correspond to yc1 - yc7 .

[0088] 2) According to the pixel horizontal axis distribution information, the horizontal axis pixel distribution density is analyzed to be mx (the minimum interval between two pixels is mx pixels), and the horizontal axis is divided according to the density of mx / 2 to obtain cell_x;

[0089] 3) Take the pixel points according to the combination of Cell_x and yc and convert them into color coordinates to obtain the pixel information of all images: [

[0091] [Cell_x],

[0092] [Yc1,cxcy1,cxcy2...cxcyn],

[0093] Yc2,cxcy1,cxcy2...cxcyn ...

[0095] [Yc7,cxcy1,cxcy2...cxcyn] ]

[0097] The data is then sent to the controller of the lighting device for storage.

[0098] Specifically, the pixel points respectively falling on the yc1-yc7 lines are read to obtain the above-mentioned pixel information such as (Yc1, cxcy1) and (Yc1, cxcy2).

[0099] In one embodiment, the method further includes dividing the distribution density into first predetermined equal parts to obtain an expanded distribution density, and then:

[0100] The distribution information is divided into two equal parts according to a second preset number of equal parts to obtain expanded distribution information.

[0101] Specifically, to further refine the image display effect, the user can continue to refine yc and cell_x to obtain an image with better display details. For example, according to the refined y-axis arrangement, yc1-yc14 can be obtained, or cell_x can be set to half of the above default value.

[0102] S500: Sending the compressed image frame information to the display device for display in a color point manner.

[0103] In one embodiment, displaying by color point selection includes:

[0104] Get the position information of the pixel points on the current frame image;

[0105] Acquire minimum segmentation area information in the compression configuration condition, where the minimum segmentation area is determined by the distribution information and the distribution density;

[0106] The position information of the pixel point on the display device corresponding to the pixel point on the current frame image is determined according to the position information of the pixel point on the current frame image and the minimum segmentation area information, so as to select its corresponding color coordinate information as the color coordinate of the pixel point on the current frame image.

[0107] For example, when it is required to display a color pattern moving in a specific direction to dynamically present its pattern, the frame image is set to a 3*3 matrix point, which can correspond to the pixel points of the lamp. 12 frames need to be played to achieve the animation playback effect. Therefore, the required storage space is a space containing 12*9 pixel information. The acquisition of the frame image requires completing 9 feature extraction compression processes.

[0108] By adopting the technical solution of the present application, the compressed information of the frame image can be obtained through one compression. The compressed information is 12+2 pixel points in a specific playback direction, multiplied by 3 rows, which means that only 14*3 pixel information compression space is required.

[0109] Specifically, if Figure 5 As shown, during playback, a color point operation is performed on all pixels, and the steps include:

[0110] 1) Get the position coordinates of the current pixel (mx1, my1);

[0111] 2) Get the horizontal and vertical coordinate range of the pixel of the image py1-pyn, px1-pxn;

[0112] 3) Find the value closest to the horizontal and vertical coordinates of the image pixel, for example (px16,py1);

[0113] 4) Select the color coordinates corresponding to the pixel point of the image as the color coordinates of the playback pixel point.

[0114] Specifically, the controller of the lighting device continuously generates lighting pixel color coordinate data based on pixel layout parameters, frame image compression data, and playback configuration parameters. If the color coordinates in the image data have been converted, they are directly used for display. Otherwise, they need to undergo color gamut conversion to finally generate pixel display data.

[0115] The pixels on the lighting device receive the above-mentioned playback data and play it to form an animation or pattern display.

[0116] In one embodiment, the display is performed by color point selection, further comprising:

[0117] The display of the current frame image is completed by adjusting the playback direction and / or magnification factor and / or filling mode and / or frame playback parameters of the target animated image.

[0118] Specifically, the factors that determine the image playback effect include:

[0119] 1) Playback direction

[0120] like Figure 6 As shown, the playback direction is divided into left and right (up and down can also be achieved after the picture is enlarged).

[0121] 2) Image magnification factor

[0122] like Figure 7 As shown, during playback, the light source pixels can be logically reduced to achieve a picture magnification effect, thereby further achieving a lens zoom-in or zoom-out effect.

[0123] 3) Fill mode

[0124] Full screen mode: All pixels of the fixture are always in the picture, such as Figure 8 As shown;

[0125] Fade-in and fade-out mode: The light source pixels of the lamp are gradually filled to achieve a fade-in and fade-out effect, such as Figure 9 shown.

[0126] 4. Frame playback speed (frame switching step, frame switching time, frame dwell time)

[0127] Frame switching step: the horizontal coordinate difference between the current frame and the next frame. The lens switching effect can be achieved by changing the parameter;

[0128] Frame switching time: the time it takes to switch the gradient process from the current frame to the next frame;

[0129] Frame dwell time: The dwell time after switching to a frame. This time and the frame switching time add up to the total frame playback time.

[0130] See also Figure 10 , Figure 10 1 is a schematic diagram of the structure of a motion picture display device provided in an embodiment of the present application. In a specific implementation, the motion picture display device 1000 may specifically include:

[0131] Layout parameter generation unit 1001: used to obtain a pixel layout diagram of a display device;

[0132] generating pixel layout parameter information according to the pixel layout diagram, and embedding the pixel layout parameter information into the display device;

[0133] Frame image compression unit 1002: used to obtain image frame information of a target animated image to be displayed;

[0134] compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information to generate compressed image frame information;

[0135] The compressed image frame information is sent to the display device for display in a color point manner.

[0136] In one embodiment, it further includes:

[0137] 1003: used to obtain the position information of the pixel points on the current frame image;

[0138] Acquire minimum segmentation area information in the compression configuration condition, where the minimum segmentation area is determined by the distribution information and the distribution density;

[0139] The position information of the pixel point on the display device corresponding to the pixel point on the current frame image is determined according to the position information of the pixel point on the current frame image and the minimum segmentation area information, so as to select its corresponding color coordinate information as the color coordinate of the pixel point on the current frame image.

[0140] An embodiment of the present application provides a computer device comprising: a storage device and a processor;

[0141] a memory storing one or more computer programs;

[0142] The processor is used to load the one or more computer programs to implement the dynamic image display method in this application.

[0143] In addition, it should be pointed out here that: the embodiment of the present application also provides a computer storage medium, and the computer storage medium stores a computer program, and the computer program includes program instructions. When the processor executes the above program instructions, it can execute the method in the corresponding embodiment above. Therefore, it will not be repeated here.

[0144] For technical details not disclosed in the computer storage medium embodiments involved in this application, please refer to the description of the method embodiments of this application. As an example, the program instructions can be deployed on a computer device, or executed on multiple computer devices located in a single location, or executed on multiple computer devices distributed in multiple locations and interconnected by a communication network.

[0145] According to one aspect of the present application, embodiments of the present application further provide a computer program product or computer program, which includes computer instructions stored in a computer-readable storage medium. A processor of a computer device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, so that the computer device can perform the methods described in the corresponding embodiments above. Therefore, these methods will not be described in detail here.

[0146] Those skilled in the art will appreciate that the units and algorithmic steps of each example described in conjunction with the embodiments disclosed in this application can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional technical personnel may use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.

[0147] In the above embodiments, all or part of the embodiments can be implemented by software, hardware, firmware, or any combination thereof. When implemented using software, all or part of the embodiments can be implemented in the form of a computer program product. The computer program product includes one or more computer instructions. When the computer program instructions are loaded and executed on a computer, all or part of the processes or functions described in the embodiments of the present invention are generated. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable device. The computer instructions can be stored in a computer-readable storage medium or transmitted via a computer-readable storage medium. The computer instructions can be transmitted from one website, computer, server, or data center to another website, computer, server, or data center via a wired (e.g., coaxial cable, optical fiber, digital line (DSL)) or wireless (e.g., infrared, wireless, microwave, etc.) method. The computer-readable storage medium can be any available medium that can be accessed by a computer or a data processing device such as a server or data center that includes one or more available media. The available medium can be a magnetic medium (e.g., a floppy disk, a hard disk, a tape), an optical medium (e.g., a DVD), or a semiconductor medium (e.g., a solid-state drive (SSD)).

[0148] The above disclosure is only a preferred embodiment of the present application, and certainly cannot be used to limit the scope of rights of the present application. Therefore, equivalent changes made according to the claims of the present application are still within the scope covered by the present application.

Claims

1. A method for displaying a moving picture, characterized in that: include: Get the pixel layout diagram of the display device; generating pixel layout parameter information according to the pixel layout diagram, and embedding the pixel layout parameter information into the display device; Get the image frame information of the target animated image to be displayed; compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information to generate compressed image frame information; The compressed image frame information is sent to the display device for display in a color point manner.

2. The method for displaying a moving picture according to claim 1, wherein: Generating pixel layout parameter information according to the pixel layout diagram includes: The y coordinate of one of the top and bottom pixels in the pixel layout diagram of the display device is set to 0, and the y coordinate of the other pixel is set to y. max ; The x coordinate of one of the leftmost and rightmost pixels in the pixel layout diagram of the display device is set to 0, and the x coordinate of the other pixel is set to x. max ; The position information corresponding to all other pixel points in the pixel layout diagram is determined according to the position information of the pixel points at the four edge positions of the top, bottom, leftmost and rightmost.

3. The method for displaying a moving picture according to claim 1, wherein: The step of obtaining image frame information of a target animated image to be displayed includes: Import the target animated image and obtain the image frame information of each image frame included in it; The target animated image is adjusted so that the image frame thereof is aligned with the pixel point distribution area of ​​the display device in a height or width direction.

4. The method for displaying a moving picture according to claim 3, wherein: The compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information includes: Counting the distribution information of all pixels of the display device along one of the y-axis and the x-axis, and obtaining the distribution density along the other axis, wherein the axis where the distribution information is located is consistent with the alignment direction; Dividing the distribution density into first preset equal parts to obtain an expanded distribution density, so as to obtain a compression configuration condition; Corresponding color information is extracted from each image frame according to the distribution information and distribution density of the pixel points on the y-axis and the x-axis, and the color coordinate information is converted to obtain compressed image frame information.

5. The method for displaying a moving picture according to claim 4, wherein: The method further includes dividing the distribution density into the first preset equal parts to obtain the expanded distribution density, and then further including: The distribution information is divided into two equal parts according to a second preset number of equal parts to obtain expanded distribution information.

6. The method for displaying a moving picture according to claim 4 or 5, wherein: Displayed by color point method, including: Get the position information of the pixel points on the current frame image; Acquire minimum segmentation area information in the compression configuration condition, where the minimum segmentation area is determined by the distribution information and the distribution density; The position information of the pixel point on the display device corresponding to the pixel point on the current frame image is determined according to the position information of the pixel point on the current frame image and the minimum segmentation area information, so as to select its corresponding color coordinate information as the color coordinate of the pixel point on the current frame image.

7. The method for displaying a moving picture according to claim 6, wherein: Displayed by color point method, also includes: The display of the current frame image is completed by adjusting the playback direction and / or magnification factor and / or filling mode and / or frame playback parameters of the target animated image.

8. A moving picture display device, characterized in that: include: Layout parameter generation unit: used to obtain a pixel layout diagram of a display device; generating pixel layout parameter information according to the pixel layout diagram, and embedding the pixel layout parameter information into the display device; Frame image compression unit: used to obtain the image frame information of the target dynamic image to be displayed; compressing the image frame information of the target animated image based on the compression configuration condition and the pixel layout parameter information to generate compressed image frame information; The compressed image frame information is sent to the display device for display in a color point manner.

9. The dynamic image display device according to claim 8, characterized in that: Also includes: Frame image playback unit: used to obtain the position information of the pixel points on the current frame image; Acquire minimum segmentation area information in the compression configuration condition, where the minimum segmentation area is determined by the distribution information and the distribution density; The position information of the pixel point on the display device corresponding to the pixel point on the current frame image is determined according to the position information of the pixel point on the current frame image and the minimum segmentation area information, so as to select its corresponding color coordinate information as the color coordinate of the pixel point on the current frame image.

10. A computer device, characterized in that: include: storage devices and processors; a memory storing one or more computer programs; A processor, configured to load the one or more computer programs to implement the method for displaying a moving image according to any one of claims 1 to 8.

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