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A Game Theoretic Framework of Distributed Power and Rate Control in IEEE 802.11 WLANs

机译:IEEE 802.11 WLAN中的分布式功率和速率控制的博弈论框架

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We present a game-theoretic study on the power and rate control problem in IEEE 802.11 WLANs where network participants choose appropriate transmission power and data rate to achieve maximum throughput with minimum energy consumption. In such game-theoretic study, the central issues are the existence, uniqueness of the Nash equilibrium (NE), the convergence to the NE and the system performance at the NE. We conduct our study for three specific games: the fixed-rate power control game G/sub NPC/, the fixed-power rate control game G/sub NRC/and the joint power rate control game G/sub NJPRC/. As main contributions, we establish the existence, uniqueness and convergence of the NE for the three games. In G/sub NRC/where the NE is inefficient, we provide pricing scheme to improve the efficiency. Based on our analysis on G/sub NJPRC/, we propose the joint power and rate control procedure to approach the NE which is proven to be social optimal. The procedure is distributed and simple to incorporate into the existing IEEE 802.11 MAC protocol.
机译:我们针对IEEE 802.11 WLAN中的功率和速率控制问题进行了博弈论研究,网络参与者选择了合适的传输功率和数据速率,以最小的能耗实现最大的吞吐量。在这种博弈论研究中,核心问题是纳什均衡(NE)的存在,唯一性,与NE的收敛性以及NE上的系统性能。我们针对三个特定的游戏进行研究:固定电价控制游戏G / sub NPC /,固定电价控制游戏G / sub NRC /和联合电价控制游戏G / sub NJPRC /。作为主要贡献,我们确定了三款游戏中NE的存在,唯一性和收敛性。在G / sub NRC /中,NE效率低下,我们提供定价方案以提高效率。基于对G / sub NJPRC /的分析,我们提出了联合功率和速率控制程序来接近NE,这被证明是社会最优的。该过程是分布式的,并且易于合并到现有的IEEE 802.11 MAC协议中。

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