Distributed Register Resource Instrument Linking
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Solution Overview
Problem
There is a need for an improved system to effectively process distribution requests initiated by users, particularly in handling resource distribution instruments with logical resource components.
Innovation Solution
The system comprises one or more memory devices with computer-readable program code, a communication device, and processing devices configured to execute the code. It processes distribution requests by creating unique identifiers for resource instruments, linking them, and managing conditions for interactions, all stored on a distributed register.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If a distributed register system is used to store resource instruments and their conditions, then reliability and security of resource distribution are improved, but device complexity and processing overhead increase
Solution Approach 1:
The system segments resource instruments into hierarchical levels (first resource instrument as parent, second resource instrument as child). Each instrument is stored as a separate entry on the distributed register with its own unique identifier, allowing independent management and verification while maintaining overall system security through the hierarchical relationship.
Solution Approach 2:
The distributed register acts as an intermediary between resource instruments and third-party entities. It stores and verifies conditions, unique identifiers, and hierarchical relationships, mediating the interaction between multiple resource instruments and external entities to ensure security without requiring direct complex communication protocols between all components.
2Adaptability or versatility
If multiple resource instruments are linked in a hierarchical structure, then adaptability and control over distribution requests are improved, but device complexity increases
Solution Approach 1:
The system implements a nested hierarchical structure where a first resource instrument contains or governs one or more second resource instruments. The first instrument's unique identifier is linked to the second instrument's unique identifier, creating a parent-child relationship. This nesting allows hierarchical control where the parent instrument can impose conditions on child instruments while maintaining individual manageability of each level.
Solution Approach 2:
Conditions for resource distribution are predetermined and stored on the distributed register before actual distribution requests occur. The hierarchical linkage and control rules are established in advance, allowing the system to automatically evaluate and enforce conditions without complex real-time decision-making, thereby improving adaptability while managing complexity through pre-computation.
3Productivity
If conditions are predetermined and stored on the distributed register, then productivity in processing distribution requests is improved, but loss of information and storage requirements increase
Solution Approach 1:
Conditions are extracted from the main resource instrument data and stored as separate, structured entries on the distributed register. Each condition is associated with specific unique identifiers and can be independently verified. This extraction allows for efficient storage and retrieval of condition data without cluttering the core instrument information, improving processing speed while managing storage requirements through organized data separation.
Data Source
AI summary
Embodiments of the present invention provide a system for processing distribution requests initiated using resource distribution instruments comprising logical resource components. In particular, the system may be configured to receive a first request from a user to store a first resource instrument on a distributed register, store the first resource instrument on the distributed register, receive a second request from the user to store at least one second resource instrument on the distributed register and link the second resource instrument to the first resource instrument, link the first resource instrument with the second resource instrument, store the second resource instrument on the distributed register, receive an indication that the second resource instrument is used to initiate an interaction, determine that one or more conditions exist for the second resource instrument, determine that the interaction meets the one or more conditions, and complete the interaction.


