Metaverse Bridge Architecture for Cross-Platform Identity and Asset Transfer
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Current metaverse platforms lack interoperability in terms of avatar, asset, and identity, leading to incompatibility and fragmented user experiences across different platforms.
Innovation Solution
A method and system for controlling an interoperability architecture that enables seamless interaction and information flow between metaverse platforms through a metaverse bridge, utilizing manifesto information exchange and virtual bridge connections to facilitate interoperability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If each metaverse platform operates based on its own protocols, then each platform can maintain its own functionality and independence, but interoperability and compatibility between different metaverse platforms deteriorate
Solution Approach 1:
The patent introduces a metaverse bridge as an intermediary component that connects different metaverse platforms. The bridge receives manifesto information from multiple platforms, identifies compatible functions, and establishes virtual bridge connections to enable interoperability. This mediator resolves the contradiction by allowing platforms to maintain their own protocols while providing a translation and coordination layer for cross-platform interaction.
Solution Approach 2:
The metaverse bridge is designed with universal functionality to handle multiple types of interoperability scenarios. It can identify and establish direct connections for compatible functions while routing incompatible functions through the bridge itself. This multi-functional approach allows the system to support both direct platform-to-platform communication and bridge-mediated communication, resolving the tension between platform independence and interoperability.
2Reliability
If a metaverse bridge is introduced to enable interoperability, then compatibility between platforms improves, but system complexity increases
Solution Approach 1:
The patent segments the interoperability system into distinct functional components: manifesto information exchange modules, function identification modules, and virtual bridge connection establishment modules. By dividing the complex bridge functionality into separate, specialized components, the system manages complexity while maintaining interoperability capabilities.
Solution Approach 2:
The system performs preliminary actions by exchanging manifesto information before establishing actual connections. The metaverse bridge pre-identifies compatible functions and prepares connection parameters in advance, which simplifies the actual connection establishment process and reduces the operational complexity of the system.
3Productivity
If direct connection is established between compatible functions, then communication efficiency improves, but the ability to handle incompatible functions deteriorates
Solution Approach 1:
The patent implements a dynamic connection strategy where the system adaptively selects between direct connection and bridge-mediated connection based on function compatibility. Compatible functions use direct connections for efficient communication, while incompatible functions are automatically routed through the metaverse bridge. This dynamic approach optimizes communication efficiency while maintaining versatility in handling different function types.
Solution Approach 2:
The system applies partial direct connection for compatible functions while using the bridge for incompatible ones. Rather than forcing all connections to be direct or all to go through the bridge, the system selectively applies the most appropriate connection method for each function, achieving optimal balance between efficiency and compatibility.
Data Source
AI summary
A method and system for controlling an interoperability architecture for a cross-platform metaverse are disclosed. According to an embodiment of the present disclosure, a method and system for controlling the architecture that manages the interaction and major components of the metaverse platform are provided.


