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Secrecy Performance of Cooperative Cognitive Radio Networks Under Joint Secrecy Outage and Primary User Interference Constraints

机译:合作认知无线电网络在联合保密中的中断和主要用户干扰约束下的保密性能

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摘要

In this paper, we investigate the secrecy performance of a Cooperative Cognitive Radio Network (CCRN) in the presence of an eavesdropper (EAV). The secondary users (SUs) are subject to three constraints which include peak transmit power level and interference limitation with respect to the primary user (PU) as well as secrecy outage constraints due to the EAV. Secrecy outage is achieved when the EAV cannot decode the targeted signal, but communications in the secondary network is still possible (non-zero capacity exists). Approximation expressions of the secrecy outage probability and the probability of non-zero secrecy capacity are derived to evaluate the secrecy performance. Monte Carlo simulations are provided to examine the accuracy of the derived approximation expressions. Based on this, power allocation policies for the SUs are derived, satisfying all the constraints while maximizing the secrecy performance as well as the quality of service performance of the secondary network. It can be concluded that with knowledge of the channel state information (CSI) of the EAV it is possible to calculate the optimal value for the secrecy outage threshold of the secondary user (SU) which in turn allows maximizing the secrecy performance. Most interestingly, our numerical results illustrate that the secrecy performance of the system is much improved when the parameters obtained using the CSI of the EAV are calculated optimally. Thence, the system can adjust the power allocation so that no eavesdropping occurs even without reducing quality of service (QoS) performance compared to a network without any EAV.
机译:在本文中,我们在窃听者(EAV)的存在下调查合作认知无线电网络(CCRN)的保密性能。辅助用户(SUS)受三个约束,其包括峰值发射功率电平和关于主用户(PU)的干扰限制以及由于EAV引起的保密中的中断约束。当EAV无法解码目标信号时,实现了保密性中断,但次要网络中的通信仍然可以(非零容量存在)。近似表达秘密中断概率和非零保密容量的概率来评估保密性能。提供蒙特卡罗模拟以检查导出的近似表达式的准确性。基于此,派生SU的功率分配策略,满足所有约束,同时最大化保密性能以及辅助网络的服务性能的质量。可以得出结论,知识EAV的信道状态信息(CSI),可以计算辅助用户(SU)的保密中断阈值的最佳值,这又允许最大化保密性能。最有趣的是,我们的数值结果表明,当使用EAV的CSI获得的参数最佳地计算时系统的保密性能大大。因此,系统可以调整电力分配,使得即使没有任何EAV的网络相比,也不会发生窃听而不会降低服务质量(QoS)性能。

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