Optimal Energy-Aware Service Management in Future Networks with a Gamified Incentives Mechanism
Konstantinos Varsos, Adamantia Stamou, George D. Stamoulis, Vasillios A. Siris

TL;DR
This paper presents a gamified incentive mechanism for energy-efficient service management in future networks, combining behavioral modeling and game theory to enhance user participation and reduce energy consumption.
Contribution
It introduces a novel gamified approach with a Stackelberg game model to optimize incentives and improve energy savings while maintaining user satisfaction.
Findings
Gamification significantly increases user participation in energy-saving behaviors.
Optimally tuned incentives lead to substantial network energy and traffic reductions.
The proposed model balances energy efficiency with user satisfaction.
Abstract
As energy demands surge across ICT infrastructures, service providers must engage users in sustainable practices while maintaining the Quality of Experience (QoE) at acceptable levels. In this paper, we introduce such an approach, leveraging gamified incentives and a model for user's acceptance on incentives, thus encouraging energy-efficient behaviors such as adaptive bitrate streaming. Each user is characterized by an environmental sensitivity factor and a private incentive threshold, shaping probabilistic responses to energy-saving offers. A serious-game mechanism based on positive behavioral reinforcement and rewards of the users, due to their inclusion in top-K and bottom-M rankings, fosters peer comparison and competition, thus transforming passive acceptance into active engagement. Moreover, within a Stackelberg game formulation, the video streaming service provider--acting as…
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Taxonomy
TopicsGreen IT and Sustainability · Image and Video Quality Assessment · IoT and Edge/Fog Computing
