NFT-Based User Environment Customization via Body Data
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Solution Overview
Problem
Current technologies do not effectively leverage the unique characteristics of non-fungible tokens (NFTs) for personalized data storage and environment customization, particularly in distributed ledger-based networks, where data portability, customization, and anonymous ownership are underutilized.
Innovation Solution
A method is developed to generate NFTs based on user body data, which are recorded on a distributed ledger network, allowing for anonymous ownership and customization of user environments, such as retail websites or virtual reality interfaces, by using digital asset clients and body metrics systems to determine and register NFT properties.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If user data is stored in centralized databases, then data access and processing is efficient, but user anonymity and data portability are compromised
Solution Approach 1:
The patent introduces NFTs as intermediary tokens that bridge centralized data storage and decentralized user control. The NFT acts as a mediator that contains encrypted user data and body metrics, allowing users to maintain anonymity while enabling efficient data access through the token's embedded information. This resolves the contradiction by providing a third-layer solution that combines benefits of both centralized and decentralized approaches.
Solution Approach 2:
The patent segments user data into distinct components stored within the NFT structure, including body metrics, preferences, and encrypted personal information. This segmentation allows different portions of data to be accessed differently - some data remains encrypted for anonymity while other metadata enables efficient processing and portability, thus resolving the contradiction between access efficiency and user privacy.
2Adaptability or versatility
If NFTs are used for data storage, then user anonymity and data portability are improved, but data access complexity increases
Solution Approach 1:
The patent applies preliminary action by pre-structuring the NFT with all necessary data components, encryption keys, and access protocols during token creation. Body metrics and user preferences are embedded in advance with predetermined access rules, eliminating the need for complex runtime data assembly or authentication procedures. This reduces access complexity while maintaining the anonymity and portability benefits of NFT-based storage.
3Adaptability or versatility
If body metrics are collected and stored, then personalized environment customization is enabled, but user privacy concerns increase
Solution Approach 1:
The patent applies local quality by implementing differential encryption and access control within the NFT structure. Sensitive body metrics are encrypted with higher security protocols while less sensitive data (such as device preferences or non-identifying characteristics) use lighter encryption. This allows personalized environment customization through access to necessary metrics while protecting sensitive personal information, thus resolving the privacy concern.
Data Source
AI summary
According to embodiments of the present disclosure, a method is provided. The method includes receiving first body data for a user of a user device. The method further includes determining second body data for the user by using at least the received first body data. The method further includes generating a non-fungible token based on the second body data. The method further includes registering the non-fungible token in a digital asset client on a user device of the user. The method further includes retrieving from the digital asset client an identifier of the non-fungible token. The method further includes transmitting to a receiver system the identifier of the non-fungible token. The method further includes controlling one or more features of a user environment provided by the receiving system. based on the values of the properties of the non-fungible token.


