Image processing platform and method for automatically generating naked-eye 3D images

The image processing platform automatically generates naked 3D images by adapting to different screen shapes and positions, overcoming conventional limitations and improving usability and design efficiency.

JP3253364UActive Publication Date: 2025-10-24SPEED 3D
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Patent Information

Application Number
JP2025002325U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Priority Date
2023-11-08
Filing Date
2025-07-11
Publication Date
2025-10-24
Estimated Expiration
2033-12-12

AI Technical Summary

Technical Problem

Conventional naked-eye 3D imaging technologies are limited to flat screens and require complex customization for three-dimensional screens, making them inconvenient and unable to meet practical application demands.

Method used

An image processing platform with a receiving module and image conversion module that converts target images into naked 3D images using texture baking based on screen information, including number, size, curvature, positional relationship, and field of view, allowing adaptation to various screen shapes and positions.

Benefits of technology

Enables quick, cost-effective generation of naked 3D images compatible with diverse screens, enhancing flexibility and usability, and facilitating visual design optimization.

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Abstract

We provide a video processing platform that automatically generates naked-eye 3D images. [Solution] An image processing platform (1) for automatically generating naked-view 3D images includes a receiving module (12) and an image conversion module (11). The receiving module receives a target image and naked-view 3D image information from an external device. The naked-view 3D image information includes information on the number of screens, screen size, the positional relationship between the optimal viewing position and the screen positioning point, and the field of view. The image conversion module is connected to the receiving module and performs texture baking processing based on the naked-view 3D image information to convert the target image into a naked-view 3D image.
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Description

[Technical Field]

[0001] The present invention relates to an image processing platform, in particular to an image processing platform for automatically generating naked-eye 3D images, and further to a method for automatically generating naked-eye 3D images using the image processing platform. [Background technology]

[0002] Naked-eye 3D imaging technology is a stereoscopic technology that allows viewers to view 3D images directly with their naked eyes without using special 3D glasses. Viewers can enjoy the 3D viewing effect more easily because they can view 3D images directly without using 3D glasses.

[0003] However, conventional naked-eye 3D imaging technologies are generally only applicable to flat screens and cannot be directly applied to three-dimensional screens such as L-shaped screens or curved screens. Displaying naked-eye 3D images on a three-dimensional screen requires complex image processing, and naked-eye 3D images generated by conventional naked-eye 3D imaging technologies must be customized to fit the screen and cannot be moved to different locations. Therefore, conventional naked-eye 3D imaging technologies are extremely inconvenient to use and have significant limitations in their applications, making them unable to meet the demands of practical applications.

[0004] The detailed features and advantages of the present invention will be described in detail below in the implementation manner, and the content is sufficient to allow those skilled in the art to understand the technical content of the present invention and implement it based on it. Those skilled in the art can easily understand the relevant objectives and advantages of the present invention based on the disclosure content of this specification, the utility model registration claims and the drawings. Summary of the Invention [Problem to be solved by the invention]

[0005] The present invention provides an image processing platform and method for automatically generating naked-eye 3D images. [Means for solving the problem]

[0006] According to one embodiment of the present invention, there is provided an image processing platform for automatically generating naked 3D images, which includes a receiving module and an image conversion module. The receiving module receives a target image and naked 3D image information from an external device. The naked 3D image information includes screen number information, screen size information, the positional relationship between the optimal viewing position and the screen positioning point, and field of view. The image conversion module is connected to the receiving module and performs texture baking based on the naked 3D image information to convert the target image into a naked 3D image.

[0007] In one embodiment, the naked-view 3D video information further includes information about an angle between the screens.

[0008] In one embodiment, the naked-view 3D image information further includes screen curvature information.

[0009] In one embodiment, the naked-view 3D image information further includes setting commands, which are used to set the size, format, and frames per second of the naked-view 3D image.

[0010] In one embodiment, the positional relationship is the distance between the optimum viewing position and the screen positioning point, and the angle between a line connecting the optimum viewing position and the screen positioning point and a vertical line passing through the screen positioning point.

[0011] According to an embodiment of the present invention, a method for automatically generating a naked 3D image is provided, the method including: providing a target image and naked 3D image information from an external device; receiving the target image and the naked 3D image information from the external device via a receiving module, where the naked 3D image information includes screen number information, screen size information, a positional relationship between an optimal viewing position and a screen positioning point, and a field of view; and performing texture baking processing based on the naked 3D image information via an image conversion module to convert the target image into a naked 3D image.

[0012] In one embodiment, the naked-view 3D video information further includes information about an angle between the screens.

[0013] In one embodiment, the naked-view 3D image information further includes screen curvature information.

[0014] In one embodiment, the naked-view 3D image information further includes setting commands, which are used to set the size, format, and frames per second of the naked-view 3D image.

[0015] In one embodiment, the positional relationship is the distance between the optimum viewing position and the screen positioning point and the angle between a line connecting the optimum viewing position and the screen positioning point and a vertical line passing through the screen positioning point. [Effects of the Invention]

[0016] Based on the above, the image processing platform for automatically generating naked-eye 3D images of the present invention can have one or more of the following advantages. (1) In one embodiment of the present invention, the image processing platform includes a receiving module and an image conversion module. The receiving module receives a target image and naked 3D image information from an external device. The naked 3D image information includes information on the number of screens, screen size, the angle between the screens, screen curvature, the positional relationship between the optimal viewing position and the screen positioning point, and the field of view. The image conversion module is connected to the receiving module and performs a texture baking process based on the naked 3D image information to convert the target image into a naked 3D image. The above-mentioned automatic naked 3D image generation mechanism allows a user to select a target image via an external device (such as a smartphone, tablet PC, or laptop), edit the naked 3D image information based on the characteristics of the target screen, and have the image conversion module convert the target image into a naked 3D image compatible with the target screen. In this way, a user can quickly generate the required naked 3D image through the image processing platform, significantly reducing the cost of generating naked 3D images. This makes the image processing platform extremely convenient to use and has a wider range of applications. (2) In one embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, allowing the user to select a target image via an external device and edit the naked 3D image information based on the characteristics of the target screen. Therefore, if the optimal viewing position needs to be changed, the user can directly re-edit the naked 3D image information and input the positional relationship between the replaced optimal viewing position and the screen positioning point to generate the naked 3D image. Therefore, the image processing platform can meet the requirements of different applications. (3) In one embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, which can be applied not only to an L-shaped screen but also to various screens such as curved screens, etc. Therefore, the image processing platform is more flexible in use and can meet the requirements of different users. (4) In one embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, and the generated naked 3D images can be used as reference by visual designers, thereby making visual design more convenient for visual designers and enabling visual designers to more efficiently optimize the overall visual effect of the naked 3D images displayed on the target screen. (5) In one embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, allowing users to quickly generate the required naked 3D images through the image processing platform without requiring complex image processing steps. Therefore, the image processing platform can reliably meet various requirements in practical applications. [Brief explanation of the drawings]

[0017] [Figure 1] 1 is an explanatory diagram of an image processing platform for automatically generating naked-eye 3D images according to a first embodiment of the present invention; FIG. [Figure 2] 1 is a diagram illustrating the operation of an image processing platform for automatically generating naked-eye 3D images according to the first embodiment of the present invention; [Figure 3] 1 is a first schematic diagram of a target screen of the image processing platform for automatically generating naked-eye 3D images according to the first embodiment of the present invention; FIG. [Figure 4] 1 is a second schematic diagram of the target screen of the image processing platform for automatically generating naked-eye 3D images according to the first embodiment of the present invention; FIG. [Figure 5]1 is a third diagram illustrating the target screen of the image processing platform for automatically generating naked-eye 3D images according to the first embodiment of the present invention; FIG. [Figure 6] 1 is a first schematic diagram illustrating a target screen of an image processing platform for automatically generating naked-eye 3D images according to a second embodiment of the present invention; FIG. [Figure 7] 4 is a flowchart illustrating a method for automatically generating naked-eye 3D images according to a third embodiment of the present invention. [Figure 8] 10 is a flowchart illustrating a method for automatically generating naked-eye 3D images according to a fourth embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION

[0018] Hereinafter, embodiments of an image processing platform for automatically generating naked-view 3D images and a method therefor according to the present invention will be described with reference to the accompanying drawings. For clarity and ease of explanation in the drawings, the dimensions and proportions of each element in the drawings may be exaggerated or reduced. In the following description and / or the claims, when an element is described as being "connected" or "coupled" to another element, this may be directly connected or coupled to the other element, or an intermediary element may be present. When an element is described as being "directly connected" or "directly coupled" to another element, this does not mean that an intermediary element is present, and other terms describing the relationship between elements or layers should be interpreted similarly. For ease of understanding, the same elements in the following embodiments will be denoted and described with the same reference numerals.

[0019] FIG. 1 is an explanatory diagram of an image processing platform for automatically generating naked-eye 3D images according to a first embodiment of the present invention. As shown in the figure, the image processing platform 1 includes a receiving module 12 and an image conversion module 11. The receiving module 12 is connected to the image conversion module 11. In one embodiment, the image processing platform 1 may be a cloud platform providing online services. In another embodiment, the image processing platform 1 may be an image processing device capable of providing offline services. In one embodiment, the image conversion module 11 may be a server, a workstation, or other computer device with image processing capabilities. In one embodiment, the receiving module 12 may be an antenna module or any other communication device with communication capabilities. In another embodiment, the receiving module 12 and the image conversion module 11 may be integrated into one device.

[0020] Of course, this embodiment is only used for illustrative purposes and does not limit the scope of the present invention, and any equivalent modifications or alterations made based on the image processing platform for automatically generating naked-eye 3D images of this embodiment should still fall within the scope of protection of the present invention.

[0021] FIG. 2 is an explanatory diagram of the operation of the image processing platform for automatically generating naked-view 3D images according to the first embodiment of the present invention. As shown in the figure, the receiving module 12 receives a target image M1 and naked-view 3D image information M2 from an external device ED. A user can run an application through the external device ED, select one of multiple images as the target image M1, and edit the naked-view 3D image information M2. The user can then transmit the target image M1 and the naked-view 3D image information M2 to the image conversion module 11 via the external device ED. In this embodiment, the user wants to use an L-shaped target screen. Therefore, the naked-view 3D image information M2 may include information about the number of screens, screen size, the angle between the screens, the positional relationship between the optimal viewing position and the screen positioning point, the field of view (FOV), and a setting command. In another embodiment, if the user wants to use a curved target screen, the naked-eye 3D image information M2 may include information on the number of screens, screen size information, information on the angle between the screens and / or screen curvature information, the positional relationship between the optimal viewing position and the screen positioning point, the field of view (FOV), and setting commands.

[0022] Next, the image conversion module 11 performs a texture baking process based on the naked 3D image information M2 to convert the target image M1 into a naked 3D image M3 (the naked 3D image M3 described herein refers to a 2D image with a 3D visual effect). First, the image conversion module 11 generates a 3D simulation space with a simulated target screen based on the naked 3D image information M2, then projects the target image M1 from the optimal viewing point onto the simulation target screen in the 3D simulation space and performs a texture baking process. Through the above mechanism, the image conversion module 11 can generate a naked 3D image M3 that matches the actual target screen. Finally, the user can download the naked 3D image M3 via the external device ED and play the naked 3D image M3 on the target screen.

[0023] Of course, this embodiment is only used for illustrative purposes and does not limit the scope of the present invention, and any equivalent modifications or alterations made based on the image processing platform for automatically generating naked-eye 3D images of this embodiment should still fall within the scope of protection of the present invention.

[0024] FIG. 3 is a first explanatory diagram of a target screen of the image processing platform for automatically generating naked-view 3D images according to the first embodiment of the present invention. As shown in the figure, the target screen SC is an L-shaped screen, including a first flat screen S1 and a second flat screen S2 connected to each other. Therefore, a user can edit the naked-view 3D image information M2 based on the characteristics of the target screen SC, setting the number of screens to 2, the screen size to 1m x 1.5m, and the inter-screen angle information θ1 to set an appropriate field of view. The user also needs to edit the positional relationship between the optimal viewing position VP and the screen positioning point SP and the setting command. Regarding the above positional relationship, the user can set the distance between the optimal viewing position VP and the screen positioning point SP, and the angle θ2 between the connecting line LC between the optimal viewing position VP and the screen positioning point SP and the vertical line LV passing through the screen positioning point SP. Regarding the setting command, the user can set the size, format, and frames per second (FPS) of the naked-view 3D image M3 through the setting command. In this embodiment, the screen positioning point SP may be the center point of the connecting portion (straight line) between the first flat screen S1 and the second flat screen S2. In another embodiment, the screen positioning point SP may be above or below the above center point. In another embodiment, the screen positioning point SP may also be the center point of the first flat screen S1 or the center point of the second flat screen S2, and may be changed according to actual needs. The user can adjust the optimal viewing position VP according to actual needs.

[0025] 4 is a second diagram illustrating the target screen of the image processing platform for automatically generating naked-view 3D images according to the first embodiment of the present invention. As shown in the figure, through the above-described automatic naked-view 3D image generation mechanism, the image conversion module 11 can generate a naked-view 3D image M3 that is compatible with the target screen SC, without causing distortion in the naked-view 3D image M3.

[0026] 5 is a third diagram illustrating the target screen of the image processing platform for automatically generating naked-eye 3D images according to the first embodiment of the present invention. As shown in the figure, without the above-mentioned automatic naked-eye 3D image generation mechanism, the image M4 displayed on the target screen SC will be distorted.

[0027] The above-mentioned mechanism for automatically generating naked-view 3D images allows a user to select a target image via the external device ED, edit naked-view 3D image information M2 based on the characteristics of the target screen SC, and have the image conversion module 11 convert the target image M1 into a naked-view 3D image M3 that is compatible with the target screen SC. In this way, a user can quickly generate the required naked-view 3D image M3 via the image processing platform 1, greatly reducing the cost of generating the naked-view 3D image M3. Therefore, the image processing platform 1 is extremely convenient to use and has a wide range of applications.

[0028] Furthermore, if the optimal viewing position needs to be changed, the user can directly re-edit the naked-viewing 3D image information M2 and input the positional relationship between the replaced optimal viewing position VP and the screen positioning point SP to generate the naked-viewing 3D image M3. Therefore, the image processing platform 1 can meet the requirements of various applications. The naked-viewing 3D image M3 can be used as a reference by the visual designer. This allows the visual designer to more conveniently perform visual design and more efficiently optimize the overall visual effect of the naked-viewing 3D image M2 displayed on the target screen SC.

[0029] Of course, this embodiment is only used for illustrative purposes and does not limit the scope of the present invention, and any equivalent modifications or changes made based on the target screen of the image processing platform for automatically generating naked-eye 3D images of this embodiment should still fall within the protection scope of the present invention.

[0030] FIG. 6 is a first explanatory diagram of a target screen of an image processing platform for automatically generating naked-view 3D images according to a second embodiment of the present invention. As shown in the figure, the target screen SC' is a curved screen including a first curved screen S1' and a second curved screen S2' connected to each other. Therefore, a user can edit the naked-view 3D image information M2 based on the characteristics of the target screen SC', set the number of screens to 2, the screen size information to 1m x 0.5m, and the inter-screen angle information θ1' to set an appropriate field of view. The user can also add screen curvature information (expressible in radians). For the above-mentioned positional relationship, the user can set the distance between the optimal viewing position VP' and the screen positioning point SP', and the angle θ2' between the connecting line LC' between the optimal viewing position VP' and the screen positioning point SP' and the vertical line LV' passing through the screen positioning point SP'. Similarly, the screen positioning point SP' may be the center point of the connecting portion (straight line) between the first curved screen S1' and the second curved screen S2'. The user can adjust the optimal viewing position VP' based on actual needs. Similarly, the user can set the size, format and frames per second (FPS) of the naked-eye 3D image M3 through the setting command.

[0031] Conventional naked-view 3D images are customized for a specific screen and cannot be applied to other screens or directly to other locations. In contrast, as described above, the above-described mechanism for automatically generating naked-view 3D images allows a user to select a target image via an external device (such as a smartphone, tablet PC, or laptop), edit naked-view 3D image information M2 based on the characteristics of the target screen, and have the image conversion module 11 convert the target image into a naked-view 3D image M3 that is compatible with the target screen. In this way, the user can adjust the naked-view 3D image M2 through the above mechanism to generate a naked-view 3D image M3 that can be adapted to different target screens and locations, thereby reliably overcoming the shortcomings of the prior art.

[0032] Of course, this embodiment is only used for illustrative purposes and does not limit the scope of the present invention, and any equivalent modifications or changes made based on the target screen of the image processing platform for automatically generating naked-eye 3D images of this embodiment should still fall within the protection scope of the present invention.

[0033] Furthermore, conventional naked-eye 3D imaging technologies are generally only applicable to flat screens and cannot be directly applied to screens with three-dimensional shapes, such as L-shaped screens or curved screens. Displaying naked-eye 3D images on a three-dimensional screen requires complex image processing. Therefore, conventional naked-eye 3D imaging technologies are extremely inconvenient to use and have significant limitations in their applications, making them unable to meet the needs of practical applications. In contrast, according to an embodiment of the present invention, an image processing platform includes a receiving module and an image conversion module. The receiving module receives a target image and naked-eye 3D image information from an external device. The naked-eye 3D image information includes information on the number of screens, screen size, inter-screen angle information, screen curvature information, the positional relationship between the optimal viewing position and the screen positioning point, and field of view. The image conversion module is connected to the receiving module and performs a texture baking process based on the naked-eye 3D image information to convert the target image into a naked-eye 3D image. The aforementioned mechanism for automatically generating naked-view 3D images allows users to select a target image via an external device (such as a smartphone, tablet PC, or laptop), edit the naked-view 3D image information based on the characteristics of the target screen, and have the image conversion module convert the target image into a naked-view 3D image compatible with the target screen. In this way, users can quickly generate the required naked-view 3D image through the image processing platform, greatly reducing the cost of generating naked-view 3D images. This makes the image processing platform extremely convenient to use and more widely applicable.

[0034] In addition, according to an embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, allowing users to select a target image via an external device and edit the naked 3D image information according to the characteristics of the target screen. Therefore, if the optimal viewing position needs to be changed, the user can directly re-edit the naked 3D image information and input the positional relationship between the replaced optimal viewing position and the screen positioning point to generate the naked 3D image. Therefore, the image processing platform can meet the requirements of different applications.

[0035] Furthermore, according to the embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, and the generated naked 3D images can be applied not only to an L-shaped screen but also to various different screens such as a curved screen, etc. Therefore, the image processing platform has more flexibility in use and can meet the requirements of different users.

[0036] Furthermore, according to the embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, and the generated naked 3D images can be used as reference by visual designers, thereby making visual design more convenient for visual designers and enabling visual designers to more efficiently optimize the overall visual effect of the naked 3D images displayed on the target screen.

[0037] Furthermore, according to the embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, allowing users to quickly generate the required naked 3D images through the image processing platform. No complex image processing steps are required. Therefore, the image processing platform can reliably meet various requirements in actual applications. From the above, it can be seen that the image processing platform for automatically generating naked 3D images according to the embodiment of the present invention can indeed achieve very good technical effects.

[0038] 7 is a flowchart of the method for automatically generating naked 3D images according to the third embodiment of the present invention. As shown in the figure, the method for automatically generating naked 3D images according to the third embodiment includes the following steps: Step S71: A target image and naked-eye three-dimensional image information are provided from an external device. Step S72: Receive the target image and the naked-vision 3D image information from the external device via a receiving module, and the naked-vision 3D image information includes screen number information, screen size information, inter-screen angle information, the positional relationship between the optimal viewing position and the screen positioning point, and field of view. Step S73: Through an image conversion module, a texture baking process is performed based on the naked-vision 3D image information to convert the target image into a naked-vision 3D image.

[0039] Of course, this embodiment is only used for illustrative purposes and does not limit the scope of the present invention, and any equivalent modifications or variations made based on the method for automatically generating naked-eye 3D images of this embodiment should still fall within the scope of protection of the present invention.

[0040] Although the steps of the methods described herein are shown and described in a particular order, the order of operations of each method may be changed, some steps may be performed in reverse order or simultaneously with other steps, and in other embodiments, different steps may be performed intermittently and / or alternately.

[0041] 8 is a flowchart of the method for automatically generating naked 3D images according to the fourth embodiment of the present invention. As shown in the figure, the method for automatically generating naked 3D images according to the fourth embodiment includes the following steps: Step S81: A target image and naked-eye three-dimensional image information are provided from an external device. Step S82: Receive the target image and the naked-vision 3D image information from the external device via a receiving module, and the naked-vision 3D image information includes screen number information, screen size information, inter-screen angle information, screen curvature information, the positional relationship between the optimal viewing position and the screen positioning point, and field of view. Step S83: Through an image conversion module, a texture baking process is performed based on the naked-vision 3D image information to convert the target image into a naked-vision 3D image.

[0042] Of course, this embodiment is only used for illustrative purposes and does not limit the scope of the present invention, and any equivalent modifications or variations made based on the method for automatically generating naked-eye 3D images of this embodiment should still fall within the scope of protection of the present invention.

[0043] Although the steps of the methods described herein are shown and described in a particular order, the order of operations of each method may be changed, some steps may be performed in reverse order or simultaneously with other steps, and in other embodiments, different steps may be performed intermittently and / or alternately.

[0044] In summary, according to an embodiment of the present invention, the image processing platform includes a receiving module and an image conversion module. The receiving module receives a target image and naked 3D image information from an external device. The naked 3D image information includes information on the number of screens, screen size, the angle between the screens, screen curvature, the positional relationship between the optimal viewing position and the screen positioning point, and the field of view. The image conversion module is connected to the receiving module and performs a texture baking process based on the naked 3D image information to convert the target image into a naked 3D image. The above-mentioned automatic naked 3D image generation mechanism allows a user to select a target image via an external device (such as a smartphone, tablet PC, or laptop), edit the naked 3D image information based on the characteristics of the target screen, and have the image conversion module convert the target image into a naked 3D image compatible with the target screen. In this way, a user can quickly generate the required naked 3D image through the image processing platform, significantly reducing the cost of generating naked 3D images. This makes the image processing platform extremely convenient to use and has a wider range of applications.

[0045] In addition, according to an embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, allowing users to select a target image via an external device and edit the naked 3D image information according to the characteristics of the target screen. Therefore, if the optimal viewing position needs to be changed, the user can directly re-edit the naked 3D image information and input the positional relationship between the replaced optimal viewing position and the screen positioning point to generate the naked 3D image. Therefore, the image processing platform can meet the requirements of different applications.

[0046] Furthermore, according to the embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, and the generated naked 3D images can be applied not only to an L-shaped screen but also to various different screens such as a curved screen, etc. Therefore, the image processing platform has more flexibility in use and can meet the requirements of different users.

[0047] Furthermore, according to the embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, and the generated naked 3D images can be used as reference by visual designers, thereby making visual design more convenient for visual designers and enabling visual designers to more efficiently optimize the overall visual effect of the naked 3D images displayed on the target screen.

[0048] Furthermore, according to the embodiment of the present invention, the image processing platform can provide a mechanism for automatically generating naked 3D images, allowing users to quickly generate the required naked 3D images through the image processing platform without requiring complex image processing steps, so that the image processing platform can reliably meet various requirements in practical applications.

[0049] It should be noted that at least some steps of the methods described in each embodiment of the present invention can be performed by software instructions stored in a computer-usable storage medium for execution by a computer (or a processor). For example, an example of a computer program product includes a computer-usable storage medium for storing a computer-readable program.

[0050] A computer-usable or computer-readable storage medium may be an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system (or apparatus, device, etc.). Examples of non-transitory computer-usable or computer-readable storage media include semiconductor or solid-state memory, magnetic tape, portable floppy disks, random access memory (RAM), read-only memory (ROM), hard disks, and optical disks. Examples of optical disks include optical disks with read-only memory (CD-ROM), rewritable optical disks (CD-R / W), and digital versatile optical disks (DVD), etc.

[0051] It is clear that this invention surpasses conventional technology and achieves the desired improvements, and is not something that a person skilled in the art would easily have thought of. Its inventive step and practicality clearly meet the requirements for a utility model registration application, and we will file a utility model registration application in accordance with the law. We sincerely hope that your office will approve this utility model registration application in order to promote creativity, and we would like to express our gratitude.

[0052] The above is merely illustrative and not limiting. Any other equivalent modifications or variations that do not depart from the spirit and scope of the present invention are intended to be included within the scope of the following claims. [Explanation of symbols]

[0053] 1. Video Processing Platform 11 Video conversion module 12 Receiver Module ED external device M1 target image M2 Naked 3D Image Information M3 Naked 3D Images M4 video SC Target Screen S1 1st Flat Screen S2 Second Flat Screen S1' 1st curved screen S2' Second curved screen VP Optimal Viewing Position VP' Optimal viewing position SP Screen positioning point SP' Screen positioning point LC connection wire LC' connecting line LV vertical line LV' vertical line θ1 Including angle θ2 Including angle θ1' Including angle θ2' Including angle S71 Step S72 Step S73 Step S81 Step S82 Step S83 Step

Claims

1. a receiving module for receiving a target image and naked-vision 3D image information from an external device, the naked-vision 3D image information including screen number information, screen size information, a positional relationship between an optimal viewing position and a screen positioning point, and a field of view; an image conversion module connected to the receiving module, the image conversion module converting the target image into a naked three-dimensional image by performing texture baking processing based on the naked three-dimensional image information; An image processing platform that automatically generates naked-eye 3D images.

2. The image processing platform for automatically generating naked-view 3D images according to claim 1 , wherein the naked-view 3D image information further includes information about an angle between the screens.

3. The image processing platform for automatically generating naked-view 3D images according to claim 1 , wherein the naked-view 3D image information further includes screen curvature information.

4. 2. The image processing platform for automatically generating naked-eye 3D images according to claim 1, wherein the naked-eye 3D image information further includes setting commands, and the setting commands are used to set the size, format, and number of frames per second of the naked-eye 3D image.

5. 2. An image processing platform for automatically generating naked-eye 3D images as described in claim 1, wherein the positional relationship is the distance between the optimal viewing position and the screen positioning point, and the angle between the connecting line between the optimal viewing position and the screen positioning point and a vertical line passing through the screen positioning point.

6. providing a target image and naked-eye 3D image information from an external device; receiving the target image and the naked-view 3D image information from the external device via a receiving module, the naked-view 3D image information including screen number information, screen size information, a positional relationship between an optimal viewing position and a screen positioning point, and a field of view; performing texture baking processing based on the naked-view 3D image information through an image conversion module to convert the target image into a naked-view 3D image; A method for automatically generating naked-eye 3D images including:

7. The method for automatically generating naked-view 3D images according to claim 6 , wherein the naked-view 3D image information further includes information about an angle between the screens.

8. The method for automatically generating a naked 3D image according to claim 6 , wherein the naked 3D image information further includes screen curvature information.

9. 7. The method for automatically generating naked-eye 3D images according to claim 6, wherein the naked-eye 3D image information further includes setting commands, which are used to set the size, format, and number of frames per second of the naked-eye 3D image.

10. A method for automatically generating naked-eye 3D images as described in claim 6, wherein the positional relationship is the distance between the optimal viewing position and the screen positioning point and the angle between the connecting line between the optimal viewing position and the screen positioning point and a vertical line passing through the screen positioning point.