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Outage performance of relay-assisted transmissions in cognitive full-duplex relay networks

机译:认知全双工中继网络中中继辅助传输的中断性能

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Relay cooperation can enhance coverage, throughput, and reliability of wireless communication systems, thus attracting intense research interest in the past decade. However, most of them focused on half-duplex relay systems, which encounter loss of resource efficiency. With the progress of self-interference cancellation technologies, full-duplex relay systems come into sight. In this paper, outage performances of the primary system and the secondary system in a cognitive full-duplex relay network are analyzed, under the adverse effect of self-interference caused by the signals at the transmitting and receiving antennas of the relay. The full-duplex decode-and-forward relay assists the transmissions of the primary system and the secondary system where there is no direct link between the secondary transmitter and the secondary receiver. Simulation results show that better outage performance of the primary system is achieved compared with the cognitive relay network adopting half-duplex relaying. Moreover, communication of the secondary system is realized on the condition that the secondary transmission link is non-ideal. Keywords Full-duplex Cognitive relay network Self-interference Outage probability
机译:中继合作可以提高无线通信系统的覆盖范围,吞吐量和可靠性,因此在过去十年中引起了广泛的研究兴趣。但是,它们大多数集中在半双工中继系统上,这会浪费资源效率。随着自干扰消除技术的进步,全双工中继系统出现了。本文分析了认知全双工中继网络中一次系统和二次系统的停电性能,该信号在继电器的发送和接收天线处的信号引起的自干扰的不利影响下进行。全双工解码转发中继在主发射机和副接收机之间没有直接链路的情况下辅助主系统和副系统的传输。仿真结果表明,与采用半双工中继的认知中继网络相比,主系统具有更好的中断性能。此外,在次级传输链路不理想的条件下实现次级系统的通信。关键词全双工认知中继网络自干扰中断概率

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