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Hybrid Full-/Half-Duplex Relaying in Cognitive Networks

机译:密切网络中的混合全/半双工中继

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In cognitive radio full-duplex (FD) relay networks, self-interference (SI) generated from the relay and harmful interference from secondary user (SU) on primary user (PU) would jointly deteriorate the system performance. In this paper, we analyze the physical layer security issue of a cognitive relay network. Specially, a SU source transmits message to a SU receiver through multi-antenna relay under the interference constraints on PU. In practical, FD and half-duplex (HD) model have its own advantages. Thus, we employ the hybrid protocols that switch adaptively between FD and HD relaying models. The motivation for hybrid adaptive protocols selection comes from trade-off of spectral efficiency and SI suppression: The HD model avoids inherently the SI at the cost of halving the data rate while FD model is spectral efficiency that achieve full data rate, but it suffers from severe SI. We propose a combination of hybrid protocols selection and secure on-off transmission to enhance the system performance. Simulation results demonstrate that our hybrid strategy with secure on-off transmission outperforms the system design that utilizes either relay mode.
机译:在认知无线电全双工(FD)中继网络中,从继电器和来自主用户(PU)上的辅助用户(SU)的有害干扰产生的自干扰(SI)将共同劣化系统性能。在本文中,我们分析了认知继电器网络的物理层安全问题。特别地,SU源通过PU的干扰约束下通过多天线继电器将消息发送到SU接收器。实用,FD和半双工(HD)模型具有自身优势。因此,我们使用混合协议,在FD和HD中继模型之间自适应地切换。混合自适应协议选择的动机来自频谱效率的权衡和SI抑制:HD模型固有地避免了数据速率的成本,而FD模型是实现完整数据速率的频谱效率,但它受到了严重的si。我们提出了混合协议选择和安全开关传输的组合,以增强系统性能。仿真结果表明,具有安全开关传输的混合策略优于利用中继模式的系统设计。

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