Blockchain Tokenization for Future Domain Name Rights Verification
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Solution Overview
Problem
Current systems lack a secure, verifiable, and standardized method for expressing interest in future domain names, leading to issues with counterfeit and unregistered domain names that pose stability and security threats to the Internet.
Innovation Solution
A method involving a processor that receives expressions of interest for future domain names, determines availability by querying on-chain and off-chain databases, and generates digital tokens representing usage rights, which are recorded on a blockchain to secure and manage these interests.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional domain name registration methods are used, then domain names can be registered and managed, but there is no secure verification mechanism leading to counterfeit domains and security threats
Solution Approach 1:
The patent introduces a blockchain-based intermediary verification system that mediates between domain name registrants and the traditional registry system. The blockchain acts as a trusted third party that verifies and records domain name ownership and usage rights, providing security without requiring complete system restructuring. This resolves the contradiction by adding verification reliability through an intermediary layer while maintaining compatibility with existing domain name infrastructure.
Solution Approach 2:
The patent replaces traditional centralized verification mechanisms with a decentralized blockchain verification system. Instead of relying on centralized registry authorities to verify domain legitimacy, the system uses cryptographic proof and distributed ledger technology to automatically verify domain ownership and usage rights. This substitution provides enhanced security and transparency while reducing reliance on complex centralized verification procedures.
2Reliability
If blockchain technology is implemented for domain name verification, then security and verification are improved, but system complexity increases
Solution Approach 1:
The patent segments the domain name verification system into distinct functional layers: a blockchain layer for verification and recording, and a traditional DNS layer for domain name resolution. Each layer operates independently with well-defined interfaces, allowing the complex blockchain verification mechanism to be isolated from the existing domain name infrastructure. This segmentation reduces overall system complexity by preventing interference between layers while maintaining verification accuracy.
Solution Approach 2:
The patent implements preliminary action by pre-registering domain names and their usage rights on the blockchain before traditional registration occurs. This advance recording creates a verified baseline that simplifies subsequent verification processes. By performing verification setup in advance, the system avoids the need for complex real-time verification mechanisms, thereby reducing operational system complexity while maintaining high verification accuracy.
3Measurement precision
If digital tokens are generated for domain name usage rights, then ownership verification is enhanced, but processing time increases
Solution Approach 1:
The patent applies preliminary action by generating and storing domain name usage right tokens on the blockchain in advance, before actual domain name registration or transfer occurs. This pre-generation creates ready-to-use verification credentials that can be quickly deployed when needed. By performing token generation beforehand, the system achieves precise ownership verification without incurring time delays during critical registration or transfer operations.
Solution Approach 2:
The patent uses copying by creating digital token representations of domain name usage rights that can be replicated and transferred without affecting the original domain name registration. These token copies serve as verified proof of usage rights and can be quickly generated and distributed. The copying mechanism enables precise ownership verification through token replication while maintaining fast processing speeds, as copying digital data is significantly faster than traditional verification procedures.
Data Source
AI summary
A method includes a processor receiving a request having an expression of interest from a computing device associated with a user. The expression of interest is for an intent to register a future domain name in a DNS. The future domain name is a domain name in a TLD that is not currently registered by a TLD registry. The processor determines an availability of the future domain name by querying on-chain databases and off-chain databases for occurrences of the future domain name. When the future domain name is available, the processor allocates usage rights to the expression of interest. The usage rights are associated with an account of the user. The processor generates a digital token for the expression of interest representing usage rights of the intent to register the future domain name in a future TLD registry. The processor records the digital token on a blockchain.


