Methodologies for Analyzing Equilibria in Wireless Games
arXiv:0906.0447 · doi:10.1109/MSP.2009.933496
Abstract
Under certain assumptions in terms of information and models, equilibria correspond to possible stable outcomes in conflicting or cooperative scenarios where rational entities interact. For wireless engineers, it is of paramount importance to be able to predict and even ensure such states at which the network will effectively operate. In this article, we provide non-exhaustive methodologies for characterizing equilibria in wireless games in terms of existence, uniqueness, selection, and efficiency.
To appear in IEEE Signal Processing Magazine, Sep. 2009
Cited by in corpus (20)
- Distributed Power Splitting for SWIPT in Relay Interference Channels using Game Theory
- Learning Equilibria with Partial Information in Decentralized Wireless Networks
- A Comprehensive Survey of Potential Game Approaches to Wireless Networks
- Distributed Inertial Best-Response Dynamics
- An Energy-Efficient Framework for the Analysis of MIMO Slow Fading Channels
- Crawford-Sobel meet Lloyd-Max on the grid
- Green Power Control in Cognitive Wireless Networks
- An Achievable Rate Region for the Broadcast Wiretap Channel with Asymmetric Side Information
- A Packet Dropping Mechanism for Efficient Operation of M/M/1 Queues with Selfish Users
- Coalitional Games for Transmitter Cooperation in MIMO Multiple Access Channels
- Charging Games in Networks of Electrical Vehicles
- Adaptive Multi-objective Optimization for Energy Efficient Interference Coordination in Multi-Cell Networks
- Structural Solutions For Additively Coupled Sum Constrained Games
- Cross-layer distributed power control: A repeated games formulation to improve the sum energy-efficiency
- Distributed Multi-User Wireless Charging Power Allocation
- Distributed Learning Policies for Power Allocation in Multiple Access Channels
- Satisfaction Equilibrium: A General Framework for QoS Provisioning in Self-Configuring Networks
- Energy-Efficient Power Control for Contention-Based Synchronization in OFDMA Systems with Discrete Powers and Limited Feedback
- Energy-Efficient Spectrum Sharing in Relay-Assisted Cognitive Radio Systems
- On the Base Station Selection and Base Station Sharing in Self-Configuring Networks