Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6882732 | Computer Networks | 2018 | 13 Pages |
Abstract
We consider in this paper a dynamic resource allocation scheme between several Mobile Virtual Network Operators (MVNOs), sharing common radio resources at a Cloud-based Radio Access Network (C-RAN) run by a central operator. We specifically propose a two-level coupled auction so as to enhance resource utilization and maximize the revenues both for the central operator and the MVNOs: at the lower level, end users belonging to a given MVNO bid for resources and, at the higher-level, MVNOs compete for resources at the central operator based on the output of the lower-level auction. We show fundamental economic properties of our proposal: truthfulness and individual rationality, and propose a greedy algorithm to enhance its computational efficiency. We prove the existence of Nash equilibrium for the global auction and its uniqueness in a typical duopoly scenario. Further numerical results illustrate the performance of our proposal in various network settings.
Related Topics
Physical Sciences and Engineering
Computer Science
Computer Networks and Communications
Authors
Mira Morcos, Tijani Chahed, Lin Chen, Jocelyne Elias, Fabio Martignon,