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Spectrum sharing in RF-powered cognitive radio networks using game theory

机译:利用博弈论分析射频供电的认知无线电网络中的频谱共享

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We investigate the spectrum sharing problem of a radio frequency (RF)-powered cognitive radio network, where a multi-antenna secondary user (SU) harvests energy from RF signals radiated by a primary user (PU) to boost its available energy before information transmission. In this paper, we consider that both the PU and SU are rational and self-interested. Based on whether the SU helps forward the PU's information, we develop two different operation modes for the considered network, termed as non-cooperative and cooperative modes. In the non-cooperative mode, the SU harvests energy from the PU and then use its available energy to transmit its own information without generating any interference to the primary link. In the cooperative mode, the PU employs the SU to relay its information by providing monetary incentives and the SU splits its energy for forwarding the PU's information as well as transmitting its own information. Optimization problems are respectively formulated for both operation modes, which constitute a Stackelberg game with the PU as a leader and the SU as a follower. We analyze the Stackelberg game by deriving solutions to the optimization problems and the Stackelberg Equilibrium (SE) is subsequently obtained. Simulation results show that the performance of the Stackelberg game can approach that of the centralized optimization scheme when the distance between the SU and its receiver is large enough.
机译:我们研究了由射频(RF)驱动的认知无线电网络的频谱共享问题,在该问题中,多天线辅助用户(SU)从主要用户(PU)辐射的RF信号中收集能量以提高其可用能量,然后再进行信息传输。在本文中,我们认为PU和SU都是理性的和自私的。根据SU是否有助于转发PU的信息,我们针对所考虑的网络开发了两种不同的操作模式,称为非合作和合作模式。在非合作模式下,SU从PU收集能量,然后使用其可用能量来传输自己的信息,而不会对主链路产生任何干扰。在合作模式下,PU通过提供金钱激励来利用SU来中继其信息,而SU则将其精力分配给转发PU的信息以及传输其自身的信息。分别针对这两种操作模式提出了优化问题,这两种操作模式构成了一个以PU为首,SU为跟随者的Stackelberg游戏。我们通过推导优化问题的解决方案来分析Stackelberg博弈,随后获得Stackelberg均衡(SE)。仿真结果表明,当SU与接收器之间的距离足够大时,Stackelberg游戏的性能可以接近集中优化方案的性能。

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