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Physical Layer Security in Cognitive Radio Networks for IoT Using UAV With Reconfigurable Intelligent Surfaces

机译:使用UV与可重新配置智能曲面的IAT认知无线电网络中的物理层安全性

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In this paper, the secrecy performance of a cognitive radio networks (CRN) for Internet of Things (IoT) in the presence of an eavesdropper (EAV) is investigated. In particular, a primary transmitter (PT) communicates with multiple primary IoT device (ID) receivers (i.e., PRs) at the licensed frequency. Meanwhile a secondary transmitter (ST) uses the same licensed frequency of the primary network to send the confidential signal to an unmanned aerial vehicle (UAV) that is equipped with the reconfiguration intelligent surfaces (RIS) (called UAV-RIS) as a relay. The UAV-RIS then forwards this confidential signal to multiple secondary ID receivers (i.e., SRs). Furthermore, an EAV is located near the multiple SRs and can eavesdrop the confidential signal from the UAV-RIS. Accordingly, we propose the ST’s transmit power policy to not cause harmful interference to the primary network. In addition, the physical layer security (PLS) in terms of the secrecy outage probability (SOP) of the considered CRN is analyzed. The numerical results show that the secrecy performance of the secondary network is improved as the numbers of the RIS cells increase.
机译:在本文中,研究了在窃听者(EAV)存在中的认知无线电网络(CRN)的认知无线电网络(CRN)的保密性能。特别地,主发射器(PT)以许可频率与多个主物联网设备(ID)接收器(即PRS)通信。同时,二次发射器(ST)使用主要网络的相同许可频率,将机密信号发送到无人驾驶的空中车辆(UAV),该车辆(UAV)配备有重新配置智能表面(RIS)(RIS)(称为UAV-RIS)作为继电器。然后,UAV-RIS将该机密信号转发到多个辅助ID接收器(即,SRS)。此外,EAV位于多个SRS附近,可以从UAV-RIS窃听机密信号。因此,我们提出了ST的传输功率策略,不会对主要网络造成有害干扰。另外,分析了所考虑的CRN的保密性中断概率(SOP)的物理层安全性(PL)。数值结果表明,随着RIS细胞的数量增加,次要网络的密度性能得到改善。

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