Incident Response Interface Using Resource Embeddings and Impact Values
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Solution Overview
Problem
Existing software development systems lack the ability to efficiently, dynamically, and reliably manage development resource reference units and technology operations incident events, leading to inefficient enterprise operations in agile environments.
Innovation Solution
Implement a development resource and technology operations system that generates development resource reference unit impact values, embedding vectors, and responsive directions, enabling automatic evaluation and action initiation based on impact values.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If traditional software development systems are used to manage development resource reference units and technology operations incident events, then system simplicity is maintained, but operational efficiency and reliability deteriorate
Solution Approach 1:
The system segments development resources into discrete reference units with unique identifiers, embedding vectors, and structured data representations. This segmentation enables efficient individual management and retrieval of resource units while maintaining overall system organization and scalability.
Solution Approach 2:
The patent introduces an intermediary processing layer that automatically evaluates development resource reference units, generates impact values, and initiates actions based on predefined criteria. This intermediary layer handles the complexity of resource management internally, presenting a simplified interface to users while maintaining high operational efficiency.
2Extent of automation
If manual management of development resources and incident events is used, then system complexity is low, but automation extent and reliability deteriorate
Solution Approach 1:
The system implements self-service capabilities where development resource reference units are automatically evaluated, impact values are computed, and actions are initiated without manual intervention. The system autonomously processes incident events, generates responses, and updates resource states based on predefined rules and machine learning models.
Solution Approach 2:
The patent incorporates feedback mechanisms where the system continuously monitors resource usage, incident responses, and system performance. This feedback is used to refine impact evaluations, improve automated decision-making, and enhance overall system reliability through iterative optimization.
3Adaptability or versatility
If static resource management is used, then system simplicity is maintained, but adaptability and responsiveness to incident events deteriorate
Solution Approach 1:
The system dynamically adapts to changing conditions by automatically adjusting resource allocations, generating real-time impact evaluations, and responding to incident events as they occur. Development resource reference units can be created, modified, or deprecated based on current system state and incident requirements.
Solution Approach 2:
The patent utilizes parameter changes in embedding vectors and impact values to represent different resource states and incident severities. By dynamically adjusting these parameters based on incident characteristics and resource usage patterns, the system achieves high adaptability while maintaining structured data management.
Data Source
AI summary
Apparatus, methods, and computer program products for outputting a technology operations incident event response interface component for rendering to a technology operations incident event response interface. A method may include identifying a technology operations incident event, filtering a plurality of development resource reference unit embedding vectors, generating a candidate development resource reference unit structure, generating a candidate technology operations incident responsive direction, generating a technology operations incident event response interface component, and outputting the technology operations incident event response interface component.


