Mobile Network QoS Adjustment for Environmental Conservation
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Solution Overview
Problem
Current mobile communication networks lack effective solutions to achieve eco-friendly requirements, as they do not adequately consider the environmental impact of energy consumption and carbon emissions during data sessions.
Innovation Solution
The proposed solution involves an apparatus that determines whether an eco-friendly condition associated with a data session is met, and if so, modifies the Quality of Service (QoS) to align with eco-friendly requirements. This is achieved by assessing parameters such as energy consumption, carbon emissions, renewable energy usage, and eco-rating scores, and implementing enforcement handling such as adjusting packet delay budget, packet error rate, and flow bit rate.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Use of energy by moving object
If current network frameworks operate without eco-friendly considerations, then service quality and productivity are maintained, but energy consumption and carbon emissions increase significantly
Solution Approach 1:
The patent implements dynamic QoS adjustment mechanisms that adapt network service parameters in real-time based on eco-friendly conditions. The network dynamically modifies QoS parameters such as packet delay budget, packet error rate, and flow bit rate according to carbon intensity levels and renewable energy availability, transforming the static network operation into a dynamic system that responds to environmental conditions while maintaining service quality
Solution Approach 2:
The patent changes key operational parameters of the network system by introducing eco-rating scores and carbon intensity metrics as new control parameters. The system modifies QoS parameters (packet delay budget, packet error rate, flow bit rate) based on these environmental parameters, enabling the network to operate in an eco-friendly manner without sacrificing service quality through parameter optimization
2Object-affected harmful factors
If QoS parameters are strictly maintained for service quality, then user experience is preserved, but energy consumption and environmental impact worsen
Solution Approach 1:
The patent implements feedback mechanisms where the network continuously monitors QoS metrics (packet delay, packet error rate, flow bit rate) and eco-friendly conditions (carbon intensity, renewable energy availability). Based on this feedback, the system adjusts QoS parameters dynamically, creating a closed-loop control system that balances service reliability with environmental impact by learning from operational data and environmental conditions
3Loss of energy
If the network implements eco-friendly QoS adjustment, then energy consumption is reduced, but service quality may deteriorate
Solution Approach 1:
The patent applies local quality by implementing differentiated QoS adjustment strategies for different network conditions, user types, and service categories. Instead of uniform eco-friendly adjustments, the system applies localized optimizations based on specific environmental conditions, user preferences, and service requirements, ensuring that eco-friendly measures do not uniformly degrade service accessibility but rather target specific areas where energy waste occurs
Data Source
AI summary
Various solutions for enhancing quality of service (QoS) based on environmental conservation in mobile communications are described. An apparatus may determine whether an eco-friendly condition associated with a data session is met. Also, the apparatus may determine to modify a QoS associated with the data session in an event that the eco-friendly condition associated with the data session is met.


