Data Quantum Self-Authentication via Cryptographic Hashing
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Solution Overview
Problem
Conventional data security methods are inefficient and vulnerable due to reliance on external third-party certificates, which can be time-consuming and prone to security risks, lacking in ensuring data integrity and authenticity.
Innovation Solution
The system atomizes data into unique digital quanta, associating each data value with a recording record, generating a unique identifier that detects alterations and facilitates indexing and authentication, allowing for secure and efficient data management and verification.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If third-party certificates are added to authenticate information, then data authenticity is improved, but the process becomes time-consuming and introduces additional security vulnerabilities
Solution Approach 1:
The patent implements self-authentication through cryptographic hash functions where data authenticates itself without external third parties. Each data element is paired with a unique identifier generated by hashing, enabling the data to verify its own integrity and authenticity autonomously, eliminating the need for time-consuming external certification processes
Solution Approach 2:
The system generates unique identifiers and cryptographic hashes in advance during data creation and storage. This preliminary authentication preparation allows for rapid verification later without requiring real-time third-party intervention, thus reducing authentication time while maintaining reliability
2Reliability
If third-party certificates are used for data authentication, then data authenticity is improved, but the system introduces additional security risks and complexity
Solution Approach 1:
The authentication system becomes self-sufficient by using intrinsic cryptographic properties of the data itself rather than relying on external certificate authorities. The unique identifier generated through hashing serves as both the authentication mechanism and the security credential, eliminating the need for complex third-party verification infrastructure
Solution Approach 2:
The patent extracts the authentication function from external third-party systems and embeds it directly within the data structure itself. By generating unique identifiers that are mathematically tied to the data content, the authentication capability is extracted from external sources and integrated into the data element, reducing system complexity
3Reliability
If data is atomized into unique quanta with recording records, then data integrity and security are improved, but the data structure becomes more complex
Solution Approach 1:
The patent segments data into atomic units called data quanta, where each quantum consists of a data element paired with a unique identifier. This segmentation allows for granular tracking and verification of individual data elements, improving integrity through precise identification while the modular structure actually simplifies overall data management compared to monolithic approaches
4Reliability
If external third parties are involved in the certification process, then data authentication is improved, but the process becomes less efficient and more vulnerable
Solution Approach 1:
The system eliminates external third parties by enabling data to authenticate itself through cryptographic hash functions. Each data element generates its own unique identifier that serves as proof of authenticity, allowing rapid verification without waiting for external certification processes, thus dramatically improving authentication efficiency while maintaining reliability
Data Source
AI summary
The present specification provides a method comprising: providing a value file containing a value entry associated with a recording event and a recording record file containing a recording record entry associated with the value entry and also with the recording event. The method also comprises, at a computing device, associating in a data quantum file the value entry with the corresponding recording record entry; generating a data quantum unique identifier by applying an algorithm to the data quantum file such that any change to the value entry or the recording record entry produces a corresponding change to the data quantum unique identifier according to the algorithm; and associating in a registration file the data quantum unique identifier and a data quantum file locator. The data quantum unique identifier allows for detecting alterations of any one of the value entry and the recording record entry.


