Cellular Resource Control for Localized Network Congestion
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Solution Overview
Problem
Cellular wireless communication systems, including private networks, often struggle to maintain high communication performance due to uneven distribution of communication demands, particularly in specific areas like stadiums during events, leading to challenges in providing stable communication quality, low delay, high reliability, and high throughput.
Innovation Solution
An information processor with a detection unit that identifies when a predetermined condition is met in a cellular network, triggering an execution unit to enhance communication functions, such as allocating new frequency or computation resources, to improve communication performance in affected areas.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Area of stationary object
If cellular wireless communication systems are used to provide communication services in specific areas, then communication coverage is achieved, but communication performance deteriorates due to uneven distribution of communication demands
Solution Approach 1:
The patent applies local quality by detecting communication demand conditions in specific local areas and providing enhanced communication services only where needed. The system identifies areas with high communication demands (such as stadiums during events) and allocates additional frequency resources or computation resources specifically to those locations, rather than uniformly across the entire network. This allows the system to maintain high communication performance in high-demand areas while avoiding unnecessary resource allocation in low-demand areas.
2Productivity
If communication resources are allocated to meet high communication demands, then communication throughput is improved, but resource allocation complexity increases
Solution Approach 1:
The patent implements dynamics by making the resource allocation system adaptive and responsive to changing communication demands. The detection unit continuously monitors communication demand conditions, and the system dynamically adjusts resource allocation based on real-time conditions. When high communication demands are detected, the system allocates additional frequency resources or computation resources; when demands are low, allocation is reduced. This dynamic approach allows the system to optimize throughput while managing complexity through automated, condition-based decision-making.
Solution Approach 2:
The patent applies feedback by using the detection unit to continuously monitor communication demand conditions and use this information to adjust resource allocation. The system creates a closed-loop control mechanism where communication performance metrics are detected, analyzed, and used to inform subsequent resource allocation decisions. This feedback mechanism enables the system to automatically respond to changing conditions without requiring complex manual intervention, thereby improving throughput while keeping allocation complexity manageable.
3Reliability
If private networks are installed in specific areas to handle local communication demands, then communication reliability is improved, but adaptability to varying demand patterns deteriorates
Solution Approach 1:
The patent applies universality by designing a resource allocation system that can serve multiple functions and adapt to various communication demand patterns. The same detection and resource allocation mechanism can handle different types of events (sports events, concerts, conferences), different types of communication demands (data traffic, voice traffic, video streaming), and different network configurations (private networks, public networks, hybrid networks). This multi-functional approach allows the system to maintain high reliability across different scenarios while being highly adaptable to varying demand patterns.
Data Source
AI summary
An information processor includes a detection unit that detects that a predetermined condition regarding communication using a predetermined cellular network is satisfied in at least a part of a providing area of the predetermined cellular network, and an execution unit that executes, when it is detected that the predetermined condition is satisfied, processing for enhancing a communication function related to the communication performed in an area where it is detected that the predetermined condition is satisfied.


