Transparent Data Display Window for NFT Replay Continuity
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Solution Overview
Problem
Current virtual reality systems lack enhanced mechanisms for immersive user experiences and efficient replay and sharing of virtual reality sessions, particularly in terms of storage and continuity across different display devices.
Innovation Solution
A transparent data display window system that processes and displays encrypted non-fungible tokens (NFTs), embedding a unique time code for seamless continuation of virtual reality experiences across multiple transparent data display windows without the need for special glasses or headgear.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If traditional virtual reality systems use head-mounted displays with stereoscopic images, then immersive user experience is achieved, but device complexity and requirement for special glasses increase
Solution Approach 1:
The patent uses transparent displays to create a visual copy of virtual reality content that can be viewed through ordinary transparent windows rather than requiring specialized head-mounted displays. The virtual reality experience is projected onto transparent surfaces that users can see through, eliminating the need for occluding glasses while maintaining immersion.
Solution Approach 2:
The patent transitions from traditional 2D screen displays to transparent 3D spatial displays. By projecting virtual reality content onto transparent surfaces in three-dimensional space, the system allows users to view the virtual environment through transparent windows, changing the display dimension from a blocking screen to an immersive transparent overlay.
2Adaptability or versatility
If virtual reality sessions are recorded and stored for replay, then sharing capability is improved, but storage space requirements increase significantly
Solution Approach 1:
The patent extracts only the essential data needed for virtual reality replay (such as position, orientation, and interaction parameters) rather than storing complete video streams. By extracting and storing only the critical state information and using transparent displays for playback, the system dramatically reduces storage requirements while maintaining replay capability.
Solution Approach 2:
The patent changes the storage format from full video recording to compressed parameter data. Instead of storing complete visual frames, the system stores transformed parameters that describe the virtual reality state, which can then be efficiently stored and replayed with minimal storage space while maintaining quality.
3Adaptability or versatility
If users switch between different display devices during virtual reality experience, then flexibility is improved, but continuity of experience is lost
Solution Approach 1:
The patent implements a feedback mechanism where the system tracks user interaction state and automatically maintains continuity across different transparent display devices. When a user switches devices, the system receives feedback about the current session state and seamlessly transfers the experience, ensuring uninterrupted progression without requiring manual intervention.
Solution Approach 2:
The patent creates a universal virtual reality experience platform that works across multiple transparent display devices. The system is designed to be device-agnostic, allowing users to start on one transparent window and continue on another without losing context, making the entire transparent display ecosystem function as a unified multi-functional platform.
Data Source
AI summary
A transparent data display window apparatus, system, and method that receives and processes encrypted data in the form of non-fungible token (NFT) for display thereon. The transparent data display window receives and displays encrypted NFT data. The transparent data display window generates and embeds a unique time code within the transparent data display specific to a current display of the encrypted NFT data on the transparent data display such that the embedded unique time code is readable and recordable at a particular time by a user device proximate to the transparent data display window and useful for continuing the current display of the encrypted NFT data from the particular time of the recording of the embedded unique time code by the user device proximate to the transparent data display on another display device.


