Dynamic Wireless Resource Allocation Management
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Solution Overview
Problem
Current methods for managing resource allocation between multiple wireless access technologies operating on a common range of frequencies are inefficient, leading to suboptimal bandwidth use and increased latency due to fixed allocations or real-time adjustments based on current traffic load.
Innovation Solution
A dynamic resource allocation management system that analyzes historical and real-time data to determine an optimized resource allocation between wireless access technologies, allowing for adjustments based on usage patterns, user preferences, and other factors, thereby improving bandwidth efficiency and user experience.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If fixed resource allocation is used between wireless access technologies, then device complexity is reduced and ease of operation is improved, but bandwidth efficiency deteriorates and productivity decreases
Solution Approach 1:
The patent implements dynamic resource allocation that adjusts resource distribution between wireless access technologies based on real-time traffic load conditions. The system transitions from static fixed allocation to dynamic allocation where resource portions are continuously adapted to current network demands, thereby improving bandwidth efficiency while maintaining manageable complexity through automated control mechanisms.
Solution Approach 2:
The system employs feedback mechanisms by monitoring traffic load conditions and using this information to adjust resource allocation decisions. The network controller receives feedback about current traffic patterns and resource utilization, then modifies allocation accordingly to optimize bandwidth efficiency while maintaining operational simplicity through rule-based or intelligent control algorithms.
2Productivity
If real-time resource allocation adjustment based on current traffic load is implemented, then bandwidth efficiency is improved, but latency increases due to coordination overhead between wireless access technologies
Solution Approach 1:
The patent applies preliminary action by pre-configuring resource allocation strategies and thresholds before traffic conditions change. The system establishes predetermined rules and parameters for resource allocation that can be quickly applied without requiring complex real-time calculations, thereby reducing coordination overhead and latency while still achieving adaptive resource distribution based on traffic load patterns.
Solution Approach 2:
The system implements periodic resource allocation reviews at optimized intervals rather than continuous real-time adjustments. By updating resource allocation at strategically chosen periods or thresholds, the system maintains bandwidth efficiency while minimizing the frequency of coordination events, thereby reducing overall latency and overhead associated with frequent real-time reconfiguration.
3Productivity
If additional bandwidth is purchased to serve multiple wireless access technologies, then productivity and bandwidth availability are improved, but loss of energy and operational costs increase
Solution Approach 1:
The patent changes the allocation parameters of existing bandwidth resources rather than increasing total bandwidth capacity. By adjusting the distribution ratios and allocation rules for existing spectrum resources between different wireless access technologies, the system optimizes bandwidth availability and utilization without requiring additional bandwidth purchases, thereby avoiding associated costs and energy consumption.
Data Source
AI summary
Resources allocated and/or requested for use associated with two or more wireless access technologies during a first time period in a first geographic area serve as the basis for a determination of an optimized resource allocation during the first time period in the first geographic area. The resource allocation between the two or more wireless access technologies is modified to the determined optimized resource allocation during a second time period in the first geographic area, the second time period being subsequent to the first time period.


