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Power allocation policy and performance analysis of secure and reliable communication in cognitive radio networks

机译:认知无线电网络中安全可靠的通信的功率分配策略和性能分析

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This paper investigates the problem of secure and reliable communications for cognitive radio networks. More specifically, we consider a single input multiple output cognitive model where the secondary user (SU) faces an eavesdropping attack while being subject to the normal interference constraint imposed by the primary user (PU). Thus, the SU must have a suitable power allocation policy which does not only satisfy the constraints of the PU but also the security constraints such that it obtains a reasonable performance for the SU, without exposing information to the eavesdropper. We derive four power allocation policies for different scenarios corresponding to whether or not the channel state information of the PU and the eavesdropper are available at the SU. Further, we introduce the concept secure and reliable communication probability (SRCP) as a performance metric to evaluate the considered system, as well as the efficiency of the four power allocation policies. Finally, we present numerical examples to illustrate the power allocation polices, and the impact of these policies on the SRCP of the SU.
机译:本文研究了认知无线电网络中安全可靠的通信问题。更具体地说,我们考虑一个单输入多输出认知模型,其中次要用户(SU)受到窃听攻击,同时受到主要用户(PU)施加的正常干扰约束。因此,SU必须具有适当的功率分配策略,该策略不仅满足PU的约束,而且还满足安全性约束,以使其获得SU的合理性能,而不会将信息暴露给窃听者。我们推导了针对不同场景的四种功率分配策略,分别对应于PU和窃听者的信道状态信息在SU上是否可用。此外,我们引入了安全可靠的通信概率(SRCP)概念作为评估所考虑系统的性能指标,以及四种功率分配策略的效率。最后,我们通过数值示例来说明功率分配策略以及这些策略对SU SRCP的影响。

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