Energy-efficient Edge Server Management for Edge Computing: A Game-theoretical Approach
Author:
Affiliation:
1. Swinburne University of Technology, Australia
2. The University of Adelaide, Australia
3. Deakin University, Australia
Funder
Australian Research Council Discovery Projects
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/3545008.3545079
Reference33 articles.
1. On Global Electricity Usage of Communication Technology: Trends to 2030
2. Mobile Edge Cloud Network Design Optimization
3. A Truthful and Near-Optimal Mechanism for Colocation Emergency Demand Response
4. EdgeDR: An Online Mechanism Design for Demand Response in Edge Clouds
5. An Online Market Mechanism for Edge Emergency Demand Response via Cloudlet Control
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