Virtual Display Interface Sizing for XR Viewing Range Adaptation
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Solution Overview
Problem
The effect of viewing virtual display interfaces in extended-reality environments is poor due to inadequate sizing based on user position and visual range.
Innovation Solution
A method and apparatus that determine the size of virtual display interfaces in extended-reality spaces based on their target position and user visual range, using map information from image acquisition devices and rendering engines, and adjust interface size according to user movement.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If virtual display interfaces are displayed in extended-reality spaces, then the viewing experience is improved, but the sizing is inadequate based on user position and visual range
Solution Approach 1:
The virtual display interface size is dynamically adjusted based on real-time detection of user position and visual range in the extended-reality space. The system continuously monitors user movement and automatically modifies interface dimensions to maintain optimal viewing conditions, transforming a static display problem into a dynamic adaptation solution.
Solution Approach 2:
The system changes the size parameter of the virtual display interface according to detected user position and visual range parameters. By establishing a correspondence relationship between interface size and user visual characteristics, the system adjusts display parameters in real-time to achieve precise sizing that matches user needs.
2Adaptability or versatility
If the virtual display interface size is fixed, then the system complexity is reduced, but the adaptability to different user positions and visual ranges is poor
Solution Approach 1:
The system performs self-adjustment by automatically detecting user position and visual range, then autonomously modifying the virtual display interface size without requiring manual user input or configuration. This self-service mechanism enhances adaptability while keeping the user experience simple.
Solution Approach 2:
The system implements a feedback loop where user position and visual range information is continuously detected and fed back to the display system. Based on this feedback, the interface size is automatically adjusted, creating an adaptive system that responds to user conditions in real-time.
3Ease of operation
If the virtual display interface size is adjusted based on user position, then the viewing experience is optimized, but the detection and measurement complexity increases
Solution Approach 1:
The system introduces an intermediary detection module that mediates between the user and the display system. This module captures user position and visual range information, processes it into meaningful data, and translates it into appropriate interface size adjustments, simplifying the overall detection and measurement process.
Data Source
AI summary
The embodiments of the present disclosure relate to the technical field of smart devices. Provided are a method and apparatus for displaying a virtual display interface in an extended-reality space. The method includes: acquiring map information of a real space by means of an image collection device; generating an extended-reality space by means of a rendering engine and on the basis of the map information of the real space; and determining a target position of a virtual display interface in the extended-reality space, and displaying the virtual display interface at the target position, wherein the size of the virtual display interface is related to the target position where the virtual display interface is located, and a visual range of a user.


