Centralized Event Orchestrator for Secure Multicomputer Processing
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Solution Overview
Problem
Computer systems face challenges in ensuring the safety and security of sensitive information while optimizing technical operations, particularly in multicomputer processing environments.
Innovation Solution
Implementing a centralized event orchestrator and a link discovery engine to process client device request data, which involves receiving event definition information, generating relational user interface elements, and executing orchestration commands to manage events securely and efficiently.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If sensitive information is maintained in computer systems to provide automated services, then the ability to provide electronic services is improved, but information security risks increase
Solution Approach 1:
The patent segments sensitive information into multiple components: pseudonymous identifiers separate from personal information, event data separate from user profiles, and distributed storage across multiple systems. This segmentation allows the system to provide comprehensive electronic services while reducing security risks by eliminating single points of failure and limiting the impact of potential breaches.
Solution Approach 2:
The patent introduces intermediaries including pseudonymous identifiers that mediate between user identity and service access, and secure enclaves that mediate between data storage and processing. These intermediaries protect sensitive information while enabling service delivery by creating controlled access layers that prevent direct exposure of personal data.
2Productivity
If multicomputer processing is implemented to optimize technical operations, then processing efficiency is improved, but system complexity increases
Solution Approach 1:
The patent implements universal event schemas and standardized data structures that enable multiple computer systems to process diverse information types through common protocols. This multi-functionality allows efficient multicomputer processing without proportionally increasing complexity, as the same framework handles various event types across distributed systems.
Solution Approach 2:
The patent transforms complex multicomputer coordination problems into manageable parameters by defining standardized event attributes, pseudonymous identifier formats, and structured data schemas. These parameter changes convert unstructured complexity into controlled, programmable variables that simplify system integration and processing.
Data Source
AI summary
Aspects of the disclosure relate to multicomputer processing of client device request data using a centralized event orchestrator and a link discovery engine. A computing platform may receive event definition information defining an event. Subsequently, the computing platform may receive a request for a recipient-selection user interface. The computing platform may mine alias data associated with a unique alias linked to a recipient computing device and may generate one or more relational user interface elements having relational content mined from the alias data. Then, the computing platform may send a delivery selection user interface having the one or more relational user interface elements to the recipient computing device. The computing platform may receive delivery selection information from the recipient computing device and may generate and send one or more event orchestration commands directing an event processor to execute one or more actions associated with the event.


