Centralized Event Orchestrator for 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 and event orchestration.
Innovation Solution
A computing platform with a centralized event orchestrator processes client device request data by receiving event definition information, identifying stimulus options, and generating orchestration commands to execute actions, enhancing information security and technical performance through multicomputer processing.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If multicomputer processing is implemented to optimize technical operations, then processing efficiency is improved, but information security risks increase
Solution Approach 1:
The patent introduces an event orchestrator as an intermediary component that sits between multiple client devices and the central system. This orchestrator manages event definitions, stimulus options, and delivery selections, coordinating actions across multiple computers while maintaining centralized control over sensitive information. The orchestrator acts as a security layer that enables distributed processing without exposing core system vulnerabilities.
Solution Approach 2:
The system segments the processing architecture into distinct functional components: client devices that initiate events, an event orchestrator that manages event definitions and coordinates actions, and multiple recipient devices that execute specific tasks. This segmentation allows distributed processing across multiple computers while maintaining clear boundaries and control points for security management.
2Reliability
If centralized event orchestration is used to improve information security, then security control is enhanced, but system complexity increases
Solution Approach 1:
The event orchestrator is designed as a universal component that handles multiple functions: receiving event definitions from clients, managing stimulus options, coordinating delivery selections, and routing events to appropriate recipients. By consolidating these diverse functions into a single multi-functional orchestrator, the system reduces overall complexity compared to having separate specialized components for each function.
Solution Approach 2:
The system manages complexity by dynamically changing parameters such as event definitions, stimulus options, and delivery selections rather than maintaining fixed complex structures. The orchestrator adapts its behavior based on received parameters, allowing flexible security control without requiring complex hard-coded logic for each scenario.
3Adaptability or versatility
If multiple stimulus options are provided to recipients, then user flexibility is improved, but processing overhead increases
Solution Approach 1:
The system implements stimulus options where recipients are presented with multiple potential actions, but only the selected option is fully executed. The orchestrator prepares multiple stimulus definitions in advance but only activates the chosen one, avoiding the overhead of processing all possible options. This partial action approach maintains user flexibility while controlling processing resources.
Data Source
AI summary
Aspects of the disclosure relate to multicomputer processing of client device request data using a centralized event orchestrator. A computing platform may receive event definition information defining an event as well as stimulus selection information. Subsequently, the computing platform may receive a request for a recipient-selection user interface. The computing platform may identify one or more stimulus options available for a user of a recipient computing device associated with the event and may send a delivery selection user interface that includes a user-selectable component, which, when invoked, causes the computing platform to create a new endpoint associated with a stimulus option. Thereafter, the computing platform may receive delivery selection information and may generate one or more event orchestration commands directing an event processor to execute one or more actions associated with the event. The computing platform then may send the one or more event orchestration commands to the event processor.


