Tiered Simultaneous Core Coordination for Network Slicing
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Solution Overview
Problem
Current communication technologies lack intelligent coordination between private and public cores, preventing effective network traffic management, slicing, and tiering operations.
Innovation Solution
A tiered simultaneous core management system that uses private and public cores in coordination, allowing servers to determine and adjust core assignments for mobile devices based on network characteristics, subscription, and service tiers, using AI/ML models to learn and optimize network usage.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If private cores and public cores operate independently without coordination, then each core can function autonomously, but intelligent communication and coordination between cores cannot be achieved
Solution Approach 1:
The patent introduces a core manager as an intermediary component that coordinates communication between private cores and public cores. The core manager receives requests from virtualized network functions, determines appropriate core assignments based on service requirements and network conditions, and manages the tiered core structure. This intermediary enables intelligent communication without requiring direct complex interactions between all core components.
2Productivity
If static core assignment is used, then system simplicity is maintained, but network resource efficiency and quality of service cannot be optimized
Solution Approach 1:
The patent implements dynamic core assignment where the core manager continuously monitors network conditions, service requirements, and core availability. Core assignments are adjusted in real-time based on changing conditions such as network congestion, service tier requirements, and application performance needs. This dynamic approach optimizes network resource efficiency while providing differentiated service quality through tiered core selection.
3Adaptability or versatility
If single core architecture is used, then system complexity is reduced, but network slicing and tiered service capabilities cannot be provided
Solution Approach 1:
The patent segments the network core into multiple independent cores including private cores for enterprise customers and public cores for general service. Each core can be independently configured and managed to provide different service levels. The core manager divides and assigns traffic to appropriate core segments based on service requirements, enabling network slicing capabilities while maintaining manageable complexity through centralized coordination.
4Ease of operation
If no core coordination mechanism is implemented, then system operation is simple, but intelligent traffic management and service optimization cannot be achieved
Solution Approach 1:
The patent implements a feedback mechanism where the core manager continuously monitors network performance, service quality metrics, and core utilization. Based on this feedback, the system dynamically adjusts core assignments and traffic routing decisions. The feedback loop enables intelligent traffic management while maintaining operational simplicity through automated decision-making based on monitored conditions.
Data Source
AI summary
A tiered simultaneous core that uses private core(s) and carrier (public) core(s) in coordination with one another is disclosed. The system can use network capabilities and intelligently select how to use one or more private cores and one or more public cores together, coordinating between the networks using tiered use. In other words, use of the private core(s) and the public core(s) is divided into tiers. These tiers may be associated with a user or entity (e.g., a corporation, a government organization, etc.), an application, a type of data transfer, a priority, etc.


