Multi-View Virtual Display Processing for Synchronized Multi-Viewer Immersion
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Solution Overview
Problem
Existing VR display systems struggle to provide immersive experiences for multiple viewers simultaneously, with communication barriers and inconsistent viewing angles leading to suboptimal experiences for all but the primary viewer.
Innovation Solution
A multi-view virtual display signal processing method and system that synchronously processes multiple view signals to form multi-view video and audio signals, along with control signals, enabling high-frequency display and synchronized viewing through specialized glasses for multiple viewers.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If VR head-mounted displays are used to provide immersive experience, then the immersive experience for single user is improved, but communication efficiency between users deteriorates
Solution Approach 1:
The system segments the viewing experience by providing different view signals to different users. Each user receives a customized view signal corresponding to their viewing angle, allowing simultaneous immersive experiences for multiple users while maintaining individual perspective accuracy
Solution Approach 2:
The system transitions from single-view to multi-view by adding angular dimension. The display device can present content from multiple angles simultaneously, enabling both immersive individual experience and group communication by showing different perspectives to different users
2Productivity
If medium and large stereoscopic display systems are used to enable multiple people watching, then communication efficiency is improved, but immersive experience for non-primary viewers deteriorates
Solution Approach 1:
The system applies local quality by providing customized view signals to different users based on their specific viewing angles. Each user receives a view signal optimized for their position, ensuring that every user experiences immersive quality rather than a compromised shared view
Solution Approach 2:
The system implements dynamics by adjusting view signals in real-time according to user positions. The display device can dynamically switch between different view signals or present multiple views simultaneously, adapting to changing viewer configurations to maintain immersive experience for all users
3Device complexity
If single view signal is processed, then processing complexity is reduced, but ability to serve multiple viewers simultaneously deteriorates
Solution Approach 1:
The system merges multiple view signals into a unified processing framework. By combining multiple view signals and processing them together, the system can serve multiple viewers simultaneously while maintaining manageable processing complexity through integrated signal handling
Solution Approach 2:
The system achieves universality by creating a processing apparatus that can handle both single-view and multi-view scenarios. The same apparatus processes view signals regardless of whether one or multiple views are involved, providing multi-viewer capability without requiring separate processing systems
Data Source
AI summary
The present disclosure relates to a multi-view virtual display signal processing method and system, a computer readable storage medium, and an electronic device. The multi-view virtual display signal processing method comprises: in a state that at least two view signals of a predetermined frequency are received, synchronously processing the at least two view signals to form a multi-view video signal and a multi-channel audio signal, and outputting the two signals (S110); and forming, according to the multi-view video signal, a first-type control signal matching the multi-view video signal and outputting the first-type control signal (S120).


