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Game Theoretic Distributed Power Control Algorithms for Uplink Wireless Data in Flat Fading Channels

机译:平坦衰落信道中上行无线数据的博弈论分布式功率控制算法

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In this paper we present a game-theoretic power control algorithms for wireless data in CDMA cellular systems under two realistic channels: (a1) Fast flat fading channel and (a2) Slow flat fading channel. The fading coefficients under both (a1) and (a2) are studied for three appropriate small scale channel models that are used in the CDMA cellular systems: Rayleigh channel, Rician channel and Nakagami channel. This work is inspired by the results presented by under non-fading channels. In other words, we study the impact of the realistic channel models on the findings in through the followings: we evaluate the average utility function, the average number of bits received correctly at the receiver per one Joule expended, for each channel model. Then, using the average utility function we study the existence, uniqueness of Nash equilibrium (NE) if it exists, and the social desirability of NE in the Pareto sense. Results show that in a non-cooperative game (NPG) the best policy for all users in the cell is to target a fixed signal-to-interference and noise ratio (SINR) similar to what was shown in for non-fading channel. The difference however is that the target SINR in fading channels is much higher than that in a non-fading channel. Also, for spreading gain less than or equal to 100, both NPG and non-cooperative power control game with pricing (NPGP) perform poorly, where all the terminals except the nearest one were not able to attain their corresponding minimum SINR even if sending at the maximum powers in their strategy spaces.
机译:在本文中,我们提出了在两种现实信道下CDMA蜂窝系统中无线数据的博弈论功率控制算法:(a1)快速平坦衰落信道和(a2)缓慢平坦衰落信道。针对在CDMA蜂窝系统中使用的三种适当的小规模信道模型,研究了(a1)和(a2)下的衰落系数:瑞利信道,里西亚信道和中上信道。这项工作的灵感来自不褪色渠道下呈现的结果。换句话说,我们通过以下方法研究了实际信道模型对发现的影响:对于每种信道模型,我们评估了平均效用函数,每一个焦耳在接收机处正确接收的平均位数。然后,使用平均效用函数,研究帕什托意义上的纳什均衡(NE)的存在,唯一性以及NE的社会需求。结果表明,在非合作游戏(NPG)中,针对小区中所有用户的最佳策略是针对固定的信噪比和噪声比(SINR),类似于在非衰落信道中显示的情况。但是,区别在于,衰落信道中的目标SINR远高于非衰落信道中的目标SINR。此外,对于小于或等于100的点差收益,NPG和带定价的非合作电源控制游戏(NPGP)均表现不佳,即使最近的终端,所有终端都无法达到其相应的最低SINR,即使在他们在策略空间中的最大力量。

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