Mobile Network Controller Dynamic Location Tracking

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Solution Overview

Problem

Current location tracking in mobile networks is limited to static data, leading to outdated location information, which can result in non-compliance with local regulations and inaccurate broadcasting of information as the network moves into new territories.

Innovation Solution

Implementing a system that dynamically updates location data using validated sources like GNSS satellites, allowing network controllers to adapt radio behavior and provide accurate location information to client devices, even in mobile environments.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Reliability

If static location data is used for tracking, then device complexity is reduced, but location information becomes outdated and unreliable for mobile networks

Engineering Contradiction:
Improvelocation information accuracyVSAvoidlocation tracking system complexity
Core Design Contradiction:
ReliabilityVSDevice complexity

Solution Approach 1:

The patent implements dynamic location tracking by transitioning from static location data to continuously updated location information. The system periodically receives location data from GPS receivers or network location servers, ensuring location information remains current as mobile networks move. This dynamic approach resolves the contradiction by making the system adaptable to changing positions while maintaining reliability.

Inventive Principle:
Principle #15Dynamics

Solution Approach 2:

The system establishes a feedback loop where location data is continuously received, processed, and used to update network operations. The location information is fed back into the system to adjust frequency allocations and regulatory compliance in real-time, ensuring accurate location tracking without requiring overly complex manual intervention.

Inventive Principle:
Principle #23Feedback

2Adaptability or versatility

If location data is updated dynamically, then compliance with local regulations is maintained, but information processing requirements increase

Engineering Contradiction:
Improveregulation compliance adaptabilityVSAvoidinformation processing complexity
Core Design Contradiction:
Adaptability or versatilityVSDevice complexity

Solution Approach 1:

The system implements self-service by automatically receiving, processing, and applying location data without requiring manual intervention. The mobile network system autonomously updates its location information and adjusts its operations to comply with local regulations based on current location data, reducing the need for complex manual processing while maintaining high adaptability.

Inventive Principle:
Principle #25Self-service

Solution Approach 2:

The system performs preliminary actions by pre-configuring regulatory compliance rules and frequency allocations for different geographic regions. When location data is received, the system can quickly apply the appropriate pre-determined regulations, reducing real-time processing complexity while maintaining compliance adaptability.

Inventive Principle:
Principle #10Preliminary action

3Reliability

If static frequency allocations are used, then system complexity is reduced, but network performance deteriorates when entering new territories with different regulatory requirements

Engineering Contradiction:
Improvenetwork performanceVSAvoidfrequency management complexity
Core Design Contradiction:
ReliabilityVSDevice complexity

Solution Approach 1:

The patent implements dynamic frequency management by transitioning from static frequency allocations to dynamically adjusted frequency assignments. The system receives location data and automatically adjusts frequency allocations based on the current geographic location and applicable regulatory requirements. This dynamic approach ensures optimal network performance across different territories while managing complexity through automated processes.

Inventive Principle:
Principle #15Dynamics

4Loss of information

If manual location updates are performed, then device complexity is minimized, but location information becomes outdated quickly in mobile environments

Engineering Contradiction:
Improvelocation information currencyVSAvoidlocation update system complexity
Core Design Contradiction:
Loss of informationVSDevice complexity

Solution Approach 1:

The system implements continuous location updating by periodically receiving location data from GPS receivers or network location servers. Rather than relying on manual updates, the system maintains continuous location awareness through automated periodic updates, ensuring location information remains current without requiring excessive manual intervention or overly complex systems.

Inventive Principle:
Principle #20Continuity of useful action

Applied Scientific Principles

This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.

Function Achieved in This Case

Ensures compliance with changing radio regulations, enhances navigation and tracking, and improves network robustness and performance by providing real-time location updates and frequency management.

Implementation Method 1

a controller 110 of a network may obtain up-to-date location data from an external source or receiver such as a satellite 208 in a GNSS satellite system

Methodology Applied
Scientific EffectElectromagnetic radiation: Electromagnetic Induction

Data Source

PatentUS11910368B2Dynamically capturing location at networks in motion
Publication Date: 2024.02.20 HEWLETT PACKARD ENTERPRISE DEV LP
  • US11910368B2 patent drawing
  • US11910368B2 patent drawing
  • US11910368B2 patent drawing

AI summary

Systems and methods of controlling a mobile network include processors and memory storing instructions that cause the processors to perform receiving, from an external source or receiver, dynamically updated location data of a controller of the mobile network; determining, based on the dynamically updated location data, one or more permitted radiofrequency (RF) channels through which RF signals are transmitted from a mobile access point associated with the mobile network and traffic data corresponding to the permitted radiofrequency channels; and adjusting a frequency behavior of the mobile access point based on the permitted RF channels and the traffic data.