Blockchain Enterprise Authentication via Smart Contract Verification
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Solution Overview
Problem
Current identity authentication processes for enterprises are opaque, inefficient, costly, and prone to data loss and tampering, lacking transparency and traceability.
Innovation Solution
A blockchain-based enterprise authentication method using smart contracts to verify enterprise and representative identities, ensuring transparency, credibility, and tamper-resistance by recording authentication records on a blockchain, reducing the need for manual labor and time.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If manual authentication review is used, then authentication credibility is maintained, but authentication efficiency is low and time consumption is high
Solution Approach 1:
The authentication system performs self-service through automated smart contracts that automatically verify enterprise information against government databases without requiring manual reviewer intervention. The system autonomously completes authentication tasks by querying databases, comparing data, and generating results, thereby dramatically improving efficiency while reducing time consumption.
Solution Approach 2:
The patent replaces the mechanical manual review process with an automated information processing system. Smart contracts electronically query government databases, automatically compare submitted enterprise information with official records, and generate authentication results through algorithmic verification, substituting human manual operations with automated computational processes.
2Productivity
If authentication process is automated, then authentication efficiency is improved, but transparency and traceability are reduced
Solution Approach 1:
The system implements comprehensive feedback mechanisms where smart contracts automatically record and publish authentication process information, query results, and verification data to a transparent ledger. This feedback loop ensures that all authentication activities are visible and traceable, maintaining transparency while enabling automated high-efficiency processing.
Solution Approach 2:
The patent introduces a blockchain-based transparent ledger as an intermediary that records all authentication processes and results. This intermediary structure enables both automated efficient processing and full transparency by immutably recording each authentication step, making the process visible and traceable without requiring manual intervention.
3Reliability
If traditional authentication platform is used, then authentication can be performed, but authentication data is vulnerable to loss and tampering
Solution Approach 1:
The system creates immutable copies of authentication data on a blockchain ledger. Each authentication result is hashed and stored as an immutable record that cannot be altered or deleted, providing tamper-proof data storage. This copying mechanism ensures data reliability while maintaining relatively simple system architecture through the use of established blockchain technology.
4Measurement precision
If manual authentication review is performed, then detailed verification is possible, but authentication cost is high
Solution Approach 1:
The authentication system performs self-service verification by automatically querying government databases and comparing submitted information with official records through smart contracts. This automated self-verification maintains high measurement precision for data accuracy while eliminating the need for expensive manual reviewer resources, thereby reducing authentication costs.
Solution Approach 2:
The patent replaces expensive manual verification processes with automated information processing systems that query databases and compare data algorithmically. This substitution maintains verification accuracy through systematic data comparison while dramatically reducing the labor costs and resource consumption associated with manual authentication review.
Data Source
AI summary
One or more embodiments of the present specification provide a blockchain-based enterprise authentication method, apparatus, and device. The authentication method includes: receiving an enterprise authentication request, wherein the enterprise authentication request comprises to-be-authenticated enterprise information of an enterprise, to-be-authenticated identity information of a legal representative of the enterprise, and auxiliary authentication information; performing a first determination of whether the to-be-authenticated enterprise information matches with enterprise information stored in a first database; performing a second determination of whether the to-be-authenticated identity information matches with legal representative identity information stored in a second database; sending an obtaining request to a client device for auxiliary legal representative information according to the auxiliary authentication information; performing a third determination of whether the to-be-authenticated identity information is authenticated based on the auxiliary legal representative information; generating an enterprise authentication record if the first determination, the second determination, and the third determination are affirmative.


