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Game theoretic power allocation for fading MIMO multiple access channels with imperfect CSIR

机译:CSIR不完美的MIMO多路接入信道衰落的博弈理论功率分配

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In this paper, we formulate the power allocation (PA) problem for uplink of MIMO fading multiple access channels using a game theoretic framework with channel estimation error at receiver side. We investigate the effect of the error on derived PA policy and on performance of the system. Furthermore, it is assumed that the CSI at transmitter side is imperfect i.e., each transmitter is informed with the statistics of the channels instead of the instantaneous channel states. We use lower bound of mutual information between each user and the base station to derive a utility function for the concave game, regarding the channel estimation error. Following the formulation of problem, existence and uniqueness of the game's equilibrium are investigated and it is proved that the proposed game has a unique Nash equilibrium (NE). Also a primal-dual subgradient based best-response algorithm is designed to find the NE. The algorithm updates the policy of each player regarding the given policy of other players, at each iteration. Finally, simulation results of the achieved PA policy are illustrated to investigate the effect of channel estimation error. In particular, simulations show that the overall system performance will be improved when channel estimation error in modeling the PA game is considered.
机译:在本文中,我们使用带有接收方信道估计误差的博弈理论框架,为MIMO衰落多路访问信道的上行链路制定了功率分配(PA)问题。我们调查错误对派生的PA策略和系统性能的影响。此外,假定发射机侧的CSI不完善,即,向每个发射机通知信道的统计信息,而不是瞬时信道状态。关于信道估计误差,我们使用每个用户和基站之间的相互信息的下限来得出凹面游戏的效用函数。通过提出问题,研究了博弈均衡的存在性和唯一性,并证明了所提出的博弈具有唯一的纳什均衡(NE)。还设计了一种基于原始对偶次梯度的最佳响应算法来查找NE。该算法会在每次迭代时针对其他玩家的给定策略更新每个玩家的策略。最后,说明了所获得的功率放大器策略的仿真结果,以研究信道估计误差的影响。特别是,仿真表明,在模拟PA游戏时考虑信道估计误差时,整体系统性能将得到改善。

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