Wireless Resource Allocation via Behavior Pattern Analysis
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Solution Overview
Problem
In heterogeneous radio access networks, existing technologies face challenges in efficiently managing resource allocation among multiple communication systems, particularly in ensuring high priority systems are protected and maintaining Quality of Service (QoS) while optimizing resource utilization.
Innovation Solution
An electronic device and method that determine and allocate wireless resources based on resource utilization behavior patterns of resource management objects within specific time and space ranges, using processing circuitry to measure and analyze patterns, and generate measurement requests to optimize resource allocation and reduce system reconfiguration costs.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If resource allocation is optimized based on behavior patterns, then resource utilization efficiency is improved, but system complexity increases due to pattern measurement and analysis requirements
Solution Approach 1:
The system enables resource management objects to autonomously measure and report their own resource utilization behavior patterns to the resource management apparatus. This self-service mechanism reduces the need for complex external monitoring infrastructure while improving resource allocation efficiency through pattern-based decision making
Solution Approach 2:
The system implements a feedback loop where resource utilization behavior patterns are measured, analyzed, and used to optimize subsequent resource allocation decisions. The resource management apparatus receives behavior pattern information from objects and adjusts resource allocation accordingly, creating a continuous improvement cycle that enhances efficiency while managing system complexity
2Reliability
If high priority systems are protected through interference control, then reliability of high priority systems is improved, but resource allocation flexibility is reduced
Solution Approach 1:
The system applies different resource allocation strategies to different priority levels. High priority systems receive protected resource allocation with strict interference control, while lower priority systems operate with more flexible allocation. This local differentiation maintains reliability for critical systems while preserving overall resource allocation flexibility
Solution Approach 2:
The system dynamically adjusts resource allocation parameters based on measured behavior patterns and priority levels. By changing allocation parameters such as resource blocks, time slots, and power levels according to system priority and observed behavior, the system maintains protection for high priority systems while adapting resource distribution to current network conditions
3Measurement precision
If resource allocation is based on behavior patterns within specific time and space ranges, then allocation precision is improved, but measurement and data processing complexity increases
Solution Approach 1:
The system segments the measurement and analysis process into distinct components: resource management objects measure their own behavior patterns within specific time and space ranges, then report this segmented data to the resource management apparatus. This segmentation reduces the complexity burden on any single component while maintaining high allocation precision through detailed pattern analysis
Data Source
AI summary
Disclosed in the present disclosure are an electronic device and method for use in a resource management device, an electronic device and method for use in a resource management database, and an electronic device and method for use in a resource management object. The electronic device for use in a resource management device comprises a processing circuit, which is configured to: determine a resource usage behavior pattern of a resource management object within a specific time range and a specific space range; allocate a wireless resource to the resource management object according to the resource usage behavior pattern.


