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On the Optimization of the Secondary Transmitter's Strategy in Cognitive Radio Channels with Secrecy

机译:具有保密性的认知无线电信道中次级发射机策略的优化

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This paper investigates cooperation for secrecy in cognitive radio networks. In particular, we consider a four-node cognitive scenario where the secondary receiver is treated as a potential eavesdropper with respect to the primary transmission. The cognitive transmitter can help the primary transmission, and it should also ensure that the primary message is not leaked to the secondary user. We consider two cognitive scenarios depending on whether the secondary transmitter knows the primary message or not. In the first case, the secondary transmitter is unaware of the primary transmitter's message and acts as a helping interferer to enhance the secrecy of the primary transmission, whereas in the second case, relaying of the primary message is also within its capabilities. First, we find achievable rate regions for these two scenarios in the case of AWGN channels. We then investigate three different optimization problems: the maximization of the primary rate, the maximization of the secondary rate and the minimization of the secondary transmit power. For these optimization problems, we find closed-form expressions in important special cases. Furthermore, we analyze the cooperation between the primary and secondary transmitters from a game-theoretic perspective. We model their interaction as a Stackelberg game, for which we define and find the Stackelberg equilibrium. Finally, we use numerical examples to illustrate the rate regions, the three optimizations, and the impact of the Stackelberg game on the achievable rates and on the transmission strategies of the secondary transmitter.
机译:本文研究了认知无线电网络中的保密合作。特别是,我们考虑了一个四节点的认知场景,其中相对于主要传输,次要接收器被视为潜在的窃听者。认知发送器可以帮助主要传输,并且还应确保主要消息不会泄漏给次要用户。我们考虑两个认知场景,这取决于辅助发送器是否知道主要消息。在第一种情况下,辅助发送器不知道主要发送器的消息,并且充当帮助干扰者来增强主要发送的保密性,而在第二种情况下,主要消息的中继也在其能力范围内。首先,在AWGN频道的情况下,我们找到了这两种情况可实现的速率区域。然后,我们研究了三个不同的优化问题:主要速率的最大化,次要速率的最大化和次要发射功率的最小化。对于这些优化问题,我们在重要的特殊情况下找到了封闭形式的表达式。此外,我们从博弈论的角度分析了主发射机和副发射机之间的合作。我们将它们的相互作用建模为Stackelberg博弈,为此我们定义并找到了Stackelberg平衡。最后,我们使用数值示例来说明速率区域,三个优化以及Stackelberg游戏对可达到的速率和对次要发射器的传输策略的影响。

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