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Power Allocation in Gaussian Interference Relay Channels via Game Theory

机译:通过游戏理论在高斯干扰中继信道中的功率分配

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We address the power allocation problem for interference relay channels. Due to the competitive nature of the multi-user environment, we model the problem as a strategic non-cooperative game and show that this game always has a unique Nash Equilibrium (NE), for any system profile. Two iterative algorithms, based on sequential and simultaneous updating, are proposed to achieve the unique NE in a distributed manner. We shall also prove that both algorithms always converge to the unique NE, from an arbitrary starting point. More importantly, the global optimality in terms of the sum information rate is achieved by the NE, when the interference is relatively low.
机译:我们解决了干扰中继通道的功率分配问题。由于多用户环境的竞争性,我们将问题模拟为战略性非合作游戏,并表明该游戏总是具有唯一的纳什均衡(NE),适用于任何系统配置文件。提出了两个基于顺序和同时更新的迭代算法,以分布式方式实现唯一的NE。我们还可以证明这两个算法始终从任意起点汇集到唯一的NE。更重要的是,当干扰相对较低时,NE通过NE实现总和信息率的全局最优性。

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