5G Cryptography Pool Management for Scalable Cell Monitoring
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Existing 5G networks face inefficiencies in managing cryptography resources, leading to delayed user data processing due to cryptopool resource exhaustion, which is currently monitored manually and unable to scale for large numbers of cells.
Innovation Solution
Automated systems and methods for monitoring and managing cryptography resource utilization by initializing a script, retrieving target network entities, and generating reports for entities exceeding a predetermined threshold, enabling scalable and efficient resource management.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If manual monitoring of cryptography resources is used, then operational control is maintained, but processing overhead is high and scalability is limited
Solution Approach 1:
The system implements self-service automation where the cryptography resource management system automatically monitors, detects, and responds to resource utilization thresholds without manual intervention. The automated script continuously checks resource pools and triggers notifications or actions when thresholds are exceeded, eliminating the need for manual monitoring while maintaining operational control.
2Adaptability or versatility
If manual monitoring of cryptography resources is used, then operational control is maintained, but scalability for large numbers of cells is limited
Solution Approach 1:
The system uses standardized templates and configurations that can be copied and applied across multiple cells and network entities. The automated monitoring script follows uniform procedures that can be replicated across thousands of cells, enabling scalable deployment without proportionally increasing management complexity. Configuration templates and threshold settings can be copied across different network entities.
3Productivity
If cryptography resource utilization is not monitored, then system simplicity is maintained, but user data processing efficiency deteriorates due to resource exhaustion
Solution Approach 1:
The system implements feedback mechanisms where resource utilization metrics are continuously monitored and compared against predefined thresholds. When thresholds are exceeded, the system generates notifications or triggers automated responses, creating a closed-loop control system that maintains cryptography resource efficiency and prevents resource exhaustion while improving user data processing.
Data Source
AI summary
Systems and methods of managing cryptography resources in a telecommunications network perform or comprise: initializing a cryptography resource management script; receiving an input, the input including at least one of an input type, an input target, and a test identifier; retrieving a list of target network entities from a database, based on the input; generating an output report; and for each target network entity in the list of target network entities, and in response to a determination that a cryptography resource utilization of the target network entity is greater than a predetermined threshold, adding the target network entity to the output report.


