Virtual reality spherical internal display device operating system

By integrating multiple key technologies, the problems of image stretching and distortion and multi-dimensional information display on spherical displays have been solved, achieving seamless splicing and a full-range virtual reality experience, and improving the system's interoperability and user experience.

CN122072503APending Publication Date: 2026-05-22李龙
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
李龙
Filing Date
2024-11-20
Publication Date
2026-05-22

AI Technical Summary

Technical Problem

Traditional flat images are stretched and distorted on spherical displays. Existing virtual reality systems lack the ability to display multi-dimensional information, have insufficient interoperability and intelligence between systems, and need to improve compatibility with external devices.

Method used

It adopts key technologies such as non-stretching deformation display algorithm, multi-dimensional data analysis and simulation, personalized interface and theme, application development and release platform, AI voice recognition operation, network connection and computing power generation, security protection, external operation accessory connection and multi-language support, and integrates the operating system of the spherical internal display device.

Benefits of technology

It enables seamless splicing and display of images on a spherical display screen, providing a comprehensive virtual reality experience, supporting multi-dimensional data display, improving system interoperability and intelligence, expanding external device compatibility, and enhancing user experience and security.

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Abstract

According to the virtual reality spherical display device, an operating system is designed for the virtual reality spherical display device, non-stretching display, multi-dimensional data simulation, a personalized interface, AI voice control, efficient network computing power, safety protection, multi-language support and external accessory connection are integrated, and real, flexible and extensible immersive virtual reality experience is provided.
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Description

Technical Field

[0001] This invention relates to the field of virtual reality technology, specifically an operating system designed for virtual reality spherical display devices. The system integrates key technologies such as stretch-free distortion display algorithms, multi-dimensional data analysis and simulation, personalized interfaces and themes, application development and publishing platforms, AI voice recognition operation, network connectivity and computing power generation, security protection, external operating accessory connectivity, and multi-language support, aiming to provide an efficient, flexible, and user-friendly virtual reality experience. Background Technology

[0002] With the rapid development of virtual reality technology, spherical displays, as a new type of display device, have attracted much attention due to their ability to provide a more immersive visual experience. However, when traditional flat images are directly applied to spherical displays, stretching and distortion occur, affecting the viewing experience. Furthermore, most existing virtual reality systems only support 3D data display and lack the ability to comprehensively simulate multi-dimensional information such as geographical orientation and environmental sounds. At the same time, the interoperability, intelligence level, and compatibility with external devices between systems also need improvement. Summary of the Invention

[0003] The purpose of this invention is to provide an operating system for a virtual reality spherical display device, which is achieved through the following technical solution: Algorithm for displaying no stretching deformation: Employing a unique image processing algorithm, a planar image is mapped onto a spherical display screen, ensuring that the image maintains its original proportions and shape from any viewing angle.

[0004] By preprocessing and transforming the images, seamless stitching and display of images within a spherical structure can be achieved, avoiding stretching and deformation.

[0005] Multidimensional data analysis and simulation module: It can analyze multidimensional data from a spherical camera, including geographic location, direction, wind speed, sound, and 3D images.

[0006] Utilizing advanced rendering technologies and algorithms, this multi-dimensional information is simulated in real time within a spherical display screen, providing a comprehensive virtual reality experience.

[0007] Personalized interface and themes: It offers multiple built-in themes and subscription themes published by other users to meet users' personalized needs.

[0008] It supports interface customization, allowing users to adjust the interface layout and style according to their personal preferences.

[0009] Application development and deployment platform: It provides an open application development framework and rich API interfaces to support developers in designing and publishing custom applications based on the system of this invention.

[0010] The framework provides comprehensive development tools and environment, making it convenient for developers to develop and debug applications.

[0011] AI voice recognition operation module: It integrates advanced voice recognition technology, enabling users to operate and control the system via voice commands.

[0012] The speech recognition module supports multiple languages, improving the system's internationalization level.

[0013] Network connectivity and computing power generation module: It supports multiple network connection methods, including Wi-Fi, Bluetooth, 5G, etc., ensuring seamless connection with other devices and networks.

[0014] It has the ability to create and generate computing power, and dynamically adjust the allocation of computing power according to application needs and system resource conditions.

[0015] Security protection module: It possesses confidentiality and security features; any application developed using a non-official framework will be unexecutable.

[0016] All data reads are performed within a secure system container, ensuring the security and privacy of user data.

[0017] External operating accessory connection module: It features a standardized interface that supports the connection of various external operating accessories, such as keyboards, gamepads, and VR glasses.

[0018] Enhance the system's functionality and performance by expanding and upgrading external accessories.

[0019] Multilingual support module: It includes multiple language packs, allowing users to switch languages ​​as needed.

[0020] Provides language updates and expansion capabilities to ensure the system can support more languages ​​and regions.

[0021] Algorithm for displaying no stretching deformation: The algorithm employs unique image processing techniques to preprocess and transform planar images to ensure undistorted display on a spherical screen.

[0022] The algorithm calculates the position and orientation of each pixel in the image and maps it to the corresponding pixel on the spherical display screen to achieve seamless stitching and display.

[0023] Multidimensional data analysis and simulation module: The module can receive multidimensional data from a spherical camera, including geographic location, direction, wind speed, sound, and 3D images.

[0024] Utilizing advanced rendering technologies and algorithms, the module simulates this multi-dimensional data in real time within a spherical display screen, providing users with a comprehensive virtual reality experience.

[0025] The module also supports user-defined multidimensional data input to meet the needs of different application scenarios.

[0026] Personalized interface and themes: The system offers multiple built-in themes and subscription themes published by other users, which users can choose and apply according to their personal preferences.

[0027] It supports interface customization, allowing users to adjust the interface layout, colors, fonts, and other styles to meet their individual needs.

[0028] Application development and deployment platform: The platform provides an open application development framework and a rich set of API interfaces, supporting developers to design and publish custom applications based on the system of this invention.

[0029] The framework provides comprehensive development tools and environments, including code editors, debuggers, simulators, etc., to facilitate application development and debugging for developers.

[0030] The app store supports features such as in-app purchases and social sharing, enriching the app ecosystem and enhancing the user experience.

[0031] AI voice recognition operation module: The module integrates advanced speech recognition technology, supporting speech recognition and operation control in multiple languages.

[0032] The speech recognition module continuously learns and optimizes to improve the accuracy and response speed of speech recognition and reduce the false recognition rate.

[0033] Users can operate and control the system using voice commands, such as opening applications, adjusting volume, and switching perspectives.

[0034] Network connectivity and computing power generation module: The module supports multiple network connectivity methods, including Wi-Fi, Bluetooth, and 5G, ensuring seamless connectivity with other devices and networks.

[0035] The module has the ability to create and generate computing power, and dynamically adjusts the allocation of computing power according to application needs and system resource conditions to improve system performance and energy efficiency.

[0036] The module also supports the integration of technologies such as cloud computing and edge computing, further improving the system's computing power and response speed.

[0037] Security protection module: The module is secure and confidential; any application developed using an unofficial framework will be unexecutable to prevent malware intrusion and attacks.

[0038] All data reads are performed within a secure system container, ensuring the security and privacy of user data.

[0039] The module also provides security protection measures such as data encryption and firewalls to further enhance the security of the system.

[0040] External operating accessory connection module: The module is designed with standardized interfaces that support the connection of various external operating accessories, such as keyboards, gamepads, VR glasses, etc.

[0041] By expanding and upgrading external accessories, modules can further enhance the functionality and performance of the system, such as improving the interactive experience and display effects.

[0042] The module also supports connection and collaboration with other virtual reality devices, enabling a wider range of virtual reality application scenarios.

[0043] Multilingual support module: The module includes multiple language packs, allowing users to switch languages ​​as needed.

[0044] Provides language updates and expansion capabilities to ensure the system can support more languages ​​and regions.

[0045] With multilingual support, the module can better meet the needs of users in different countries and regions, and enhance its international competitiveness. Example

[0046] The following is an example to further illustrate the technical solution of the present invention: An operating system for a virtual reality spherical display device includes a non-stretchable and non-deformable display algorithm, a multi-dimensional data analysis and simulation module, a personalized interface and theme, an application development and release platform, an AI voice recognition operation module, a network connection and computing power generation module, a security protection module, an external operation accessory connection module, and a multi-language support module.

[0047] In practical implementation, the system first maps the planar image onto a spherical display screen using a non-stretching deformation display algorithm, ensuring that the image maintains its original proportions and shape from any viewing angle. Then, the multidimensional data analysis and simulation module receives multidimensional data from the spherical camera and simulates this multidimensional information in real time within the spherical display screen. Users can choose their preferred interface style and theme through personalized interfaces and themes. The application development and release platform supports developers in designing and releasing custom applications based on this system. The AI ​​voice recognition operation module enables users to operate and control the system via voice commands. The network connection and computing power generation module supports multiple network connection methods and dynamically adjusts computing power allocation to improve system performance and energy efficiency. The security protection module ensures system security and user data privacy. The external operating accessory connection module supports the connection and expansion of various external operating accessories. The multilingual support module allows users to switch languages ​​as needed.

[0048] In summary, the virtual reality spherical display device operating system of the present invention has significant technical advantages and broad application prospects. By integrating multiple key technologies, the system can provide users with a more realistic and immersive virtual reality experience and meet the needs of complex application scenarios. At the same time, the system also possesses high flexibility and scalability, supporting developers to design and publish custom applications based on the system of the present invention, further enriching the application ecosystem and enhancing the user experience. Attached Figure Description

[0049] Figure 1 This is a schematic diagram showing the shape of a regular planar image after it has been loaded onto a spherical display screen, without any stretching or deformation.

Claims

1. An operating system for a virtual reality spherical internal display device, characterized in that, The system includes a non-stretch deformation display algorithm, a multi-dimensional data analysis and simulation module, a personalized interface and theme, an application development and release platform, an AI voice recognition operation module, a network connection and computing power generation module, a security protection module, an external operation accessory connection module, and a multi-language support module.

2. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The non-stretchable deformation display algorithm employs a unique image processing algorithm to map a planar image onto a spherical display screen, ensuring that the image maintains its original proportions and shape from any viewing angle.

3. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The multidimensional data analysis and simulation module is compatible with 3D data and can analyze multidimensional data from a spherical panoramic camera multidimensional recording device. This multidimensional data includes 3D images, geographical direction, wind, sound and other dimensional information, and simulates this multidimensional information in real time on the spherical display screen.

4. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The application development and deployment platform provides an open application development framework and rich API interfaces, supporting developers to design and deploy custom applications based on the system of this invention.

5. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The AI ​​voice recognition operation module integrates advanced voice recognition technology, enabling users to operate and control the system through voice commands.

6. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The network connection and computing power generation module supports multiple network connection methods and has the ability to create and generate computing power.

7. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The external operating accessory connection module is designed with a standardized interface, supporting the connection of various external operating accessories.

8. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The multilingual support module has multiple built-in language packs, allowing users to switch languages ​​as needed.

9. The operating system for the virtual reality spherical internal display device as described in claim 1, characterized in that, The personalized interface and themes include multiple system-provided themes and subscription themes published by other users, as well as interface customization functions.

10. The operating system for the virtual reality spherical in-display device as described in claim 1, characterized in that, The security protection module has confidentiality and security features. Any application developed using a non-official framework will be unexecutable, and all data reading will be performed within the system's secure container.