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Secrecy Capacity in CRN With Malicious Energy Harvester Using Game Theoretic Techniques

机译:基于博弈论技术的恶意能量收集器在CRN中的保密能力

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In this paper, an underlay-based cognitive radio network (CRN) consisting of a secondary transmitter (ST), a secondary receiver (SR), an energy harvesting node (EHN), and a primary transmitter-receiver pair, is considered. The EHN is an energy constrained node and is thereby, assumed to have a power splitter at its receiver to decode information and harvest energy simultaneously from the received RF signal. The EHN behaves maliciously and decodes ST’s messages when it is granted with a permission to (only) harvest energy from the received RF signal, thereby reducing the secrecy capacity of the ST-SR link. Since both ST and EHN are selfish with conflicting interests, we model the interaction between them as a Stackelberg game (SG). Further, we analyze the behavior of the nodes in a non-cooperative game (NCG) theoretic framework and prove the existence of a unique Nash equilibrium (NE) strategy. Simulation results show that the SG framework performs better than the NCG framework, in terms of the achievable secrecy capacity of the ST-SR link. Thereby the proposed SG model is applied to the considered CRN with multiple STs and a unique equilibrium is found. In case the STs possess limited channel state information (CSI), we model the competition among the STs as a Bayesian game and found its equilibrium solution, known as Bayesian NE (BNE). Simulation results demonstrate that BNE performs better than the NE when the STs possess limited CSI.
机译:在本文中,考虑了基于底层的认知无线电网络(CRN),该网络由辅助发射器(ST),辅助接收器(SR),能量收集节点(EHN)和主要发射器-接收器对组成。 EHN是一个受能量限制的节点,因此被假定为在其接收器处具有功率分配器,以对信息进行解码并同时从接收到的RF信号中收集能量。当EHN被授予(仅)从接收到的RF信号中获取能量的许可时,EHN会恶意行为并解码ST的消息,从而降低ST-SR链路的保密能力。由于ST和EHN都是自私的,并且利益冲突,因此我们将它们之间的交互建模为Stackelberg游戏(SG)。此外,我们分析了非合作博弈(NCG)理论框架中节点的行为,并证明了独特的纳什均衡(NE)策略的存在。仿真结果表明,就可实现ST-SR链路的保密能力而言,SG框架的性能优于NCG框架。因此,所提出的SG模型被应用于具有多个ST的所考虑的CRN,并且找到了唯一的平衡。如果ST拥有有限的信道状态信息(CSI),我们将其间的竞争建模为贝叶斯博弈,并找到其均衡解,称为贝叶斯NE(BNE)。仿真结果表明,当ST拥有有限的CSI时,BNE的性能要优于NE。

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