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A Novel Chaos Based Cost Function for Power Control of Cognitive Radio Networks

机译:用于认知无线电网络功率控制的基于混沌的新型成本函数

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摘要

The game theoretic approach has been recently considered as potential solutions for power control in cognitive radio network (CRNs). It is well known that a critical issue in applying game theory is the selection of its proper cost function. In this letter, we introduce a new chaos based cost function to design power control algorithm and analyse the dynamic spectrum sharing issue in the uplink of cellular CRNs. Particularly, for secondary users as the game players in underlay scenarios, we define utility/cost functions taking into account the interference from and the interference tolerance of the primary users. We prove the existence of the Nash equilibrium in this power control game, leading to significantly lower power consumption and relatively fast convergence rate when compared to the other existing game algorithms.
机译:博弈论方法最近被认为是认知无线电网络(CRN)中功率控制的潜在解决方案。众所周知,应用博弈论的关键问题是选择适当的成本函数。在这封信中,我们介绍了一种新的基于混沌的成本函数来设计功率控制算法,并分析了蜂窝CRN上行链路中的动态频谱共享问题。特别是,对于在底层场景中作为游戏玩家的次要用户,我们在考虑到主要用户的干扰和干扰容忍度的情况下定义效用/成本函数。我们证明了此功率控制游戏中存在纳什均衡,与其他现有游戏算法相比,可显着降低功耗并提高收敛速度。

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