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Power control algorithm of cognitive radio based on non-cooperative game theory

机译:基于非合作博弈的认知无线电功率控制算法

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摘要

This paper addresses the power control problems of Cognitive Radio (CR) under transmission power and interference temperature constraints. First, we propose the interference constraint which ensures that the Quality of Service (QoS) standards for primary users is considered and a non-cooperative game power control model. Based on the proposed model, we developed a logical utility function based on the Signal-to-Interference-Noise Ratio (SINR) and a novel algorithm that is suitable for CR network power control. Then, the existence and uniqueness of the Nash Equilibrium (NE) in our utility function are proved by the principle of game theory and the corresponding optimizations. Compared to traditional algorithms, the proposed one could converge to an NE in 3–5 iterative operations by setting an appropriate pricing factor. Finally, simulation results verified the stability and superiority of the novel algorithm in flat-fading channel environments.
机译:本文讨论了在发射功率和干扰温度约束下认知无线电(CR)的功率控制问题。首先,我们提出了干扰约束条件,该约束条件可确保考虑主要用户的服务质量(QoS)标准和非合作式游戏功率控制模型。在此模型的基础上,我们开发了一种基于信噪比(SINR)的逻辑效用函数和一种适用于CR网络功率控制的新颖算法。然后,通过博弈论的原理和相应的优化,证明了纳什均衡在我们效用函数中的存在性和唯一性。与传统算法相比,通过设置适当的定价因子,提出的算法可以通过3-5次迭代操作收敛到NE。最后,仿真结果验证了该算法在平坦衰落信道环境下的稳定性和优越性。

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