Network Resource Deployment Method for Slice Success
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Solution Overview
Problem
Existing network slice deployment methods fail to successfully deploy network slices when existing network resources cannot meet the required specifications, leading to reduced user experience due to insufficient resources.
Innovation Solution
A method and device for network resource deployment that assesses and allocates necessary resources on-demand by determining the required air interface, user quantity, throughput, coverage, and other resource needs, and communicates these requirements between a first device and a second device to ensure successful deployment of network slices.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If network slice deployment uses existing network resources, then deployment complexity is reduced, but deployment success rate decreases when resources are insufficient
Solution Approach 1:
The patent performs preliminary assessment of network resources before deployment to determine if existing resources meet requirements. This advance evaluation prevents failed deployments and allows proactive resource provisioning, resolving the contradiction by maintaining simplicity while ensuring success through prior verification
Solution Approach 2:
The patent implements a feedback mechanism where deployment requirements are communicated back to the resource management system. This feedback loop enables the system to understand resource sufficiency and adjust provisioning accordingly, maintaining both simplicity and high success rate
2Speed
If network resources are pre-deployed in existing network, then resource allocation speed is fast, but resource utilization efficiency decreases when resources don't match requirements
Solution Approach 1:
The patent enables dynamic resource provisioning where resources are allocated based on actual deployment requirements rather than static pre-deployment. This dynamic approach ensures resources are deployed at the right time with appropriate specifications, achieving both fast allocation and high utilization efficiency
Solution Approach 2:
The patent changes resource parameters (type, quantity, specifications) based on specific deployment requirements. This parameter adaptation allows the system to optimize resource allocation for each deployment scenario, preventing waste while maintaining allocation speed through automated parameter matching
3Productivity
If network slice deployment is automated, then operational efficiency is improved, but deployment success rate decreases due to inability to handle resource insufficiency
Solution Approach 1:
The patent implements self-service automation where the system automatically assesses resource availability, determines provisioning needs, and executes deployment without manual intervention. This self-service capability maintains high operational efficiency while ensuring success through embedded resource verification and automated remediation
Solution Approach 2:
The patent introduces an intermediary assessment mechanism between automation and deployment execution. This intermediary layer verifies resource sufficiency and coordinates provisioning, allowing automation to proceed confidently with high success rate by mediating between automated decisions and resource reality
Data Source
AI summary
A network resource deployment method relate to the field of communications technologies. The network resource deployment method includes: A first device receives a target network management request; then determines requirement information of a to-be-deployed network resource required for managing a target network; and finally sends a network resource management request to a second device. After receiving the network resource management request, the second device deploys the to-be-deployed network resource. The target network management request includes target network requirement information. The requirement information of the to-be-deployed network resource includes at least one of air interface resource requirement information, user quantity requirement information, throughput requirement information, coverage requirement information, radio bearer RB requirement information, base station requirement information, network element device requirement information, and network function requirement information. The network resource management request includes the requirement information of the to-be-deployed network resource.


