XR Interface Display Following Head Movement
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Solution Overview
Problem
In extended reality (XR) devices, the interaction interface display fails to synchronize with the user's sight, leading to cumbersome manual adjustments and potential information omissions when the user turns their head.
Innovation Solution
An interaction interface display following method that acquires and adjusts the wearing position information of an extended reality display device in real time to align the display position of the interaction interface with the user's sight, ensuring synchronized viewing.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If the interaction interface display is fixed in position, then the device complexity is reduced, but the synchronization between interface and user sight deteriorates during head turning
Solution Approach 1:
The interaction interface display position is changed from fixed to dynamic, automatically adjusting based on real-time head position data. The interface follows the user's head movements, transforming from a static display to a dynamic one that adapts to user behavior, thereby maintaining synchronization without requiring complex manual adjustment mechanisms.
Solution Approach 2:
The system automatically tracks head position and adjusts interface position without requiring user intervention. The automatic following mechanism serves itself by continuously monitoring head movements and autonomously updating interface position, eliminating the need for manual button operations while maintaining synchronization.
2Ease of operation
If manual button operation is used to adjust interface position, then the device complexity is reduced, but the ease of operation deteriorates during frequent head turning
Solution Approach 1:
The interface adjustment system operates autonomously by automatically tracking head position and updating interface position without user intervention. This self-service mechanism eliminates the need for manual button operations, making the system easier to use during frequent head turning while the complexity is managed through automated processing.
Solution Approach 2:
The system implements a feedback loop where head position is continuously detected and used to automatically adjust interface position. This closed-loop feedback mechanism ensures the interface remains synchronized with user sight, improving ease of operation by eliminating manual adjustment needs while the feedback processing manages system complexity.
3Loss of information
If the interface does not follow head movement, then the device complexity is reduced, but the loss of information increases during head turning
Solution Approach 1:
The interface display transitions from a static fixed position to a dynamic position that automatically follows head movements. This dynamic adjustment ensures information remains visible and accessible during head turning, reducing information loss while the real-time processing manages system complexity.
Solution Approach 2:
The interface continuously tracks and adjusts position to maintain synchronization with head movements throughout the entire interaction period. This continuous following action prevents information omission by ensuring the interface is always visible, while the ongoing processing manages complexity through efficient real-time updates.
Data Source
AI summary
The present disclosure discloses an interaction interface display following method, an electronic device, a readable storage medium, and a chip, which relate to the field of interface following technology. The interaction interface display following method includes: acquiring the wearing position information of an extended reality display device; determining the position information of an interaction interface in a virtual interface of the extended reality display device; and adjusting a display position of the interaction interface, so that the wearing position information corresponds to the position information of the interaction interface after being adjusted.


