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Secure Transmit Antenna Selection Protocol for MIMO NOMA Networks Over Nakagami-m Channels

机译:在NAKAGAMI-M频道上的MIMO NOMA网络安全发射天线选择协议

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摘要

In this paper, we consider a multi-input multioutput (MIMO) nonorthogonal multiple access (NOMA) network consisting of one source and two legitimate users (LUs), so-called near and far users according to their distances to the source, and one passive eavesdropper, over Nakagami-m fading channels. Specifically, we investigate the cases where the signals of the far user might or might not be successfully decoded at the eavesdropper and the near user. Thus, we aim to design a transmit antenna selection (TAS) secure communication protocol for the network; where, two TAS solutions, namely Solutions I and II, are proposed. Specifically, Solutions I and II focus on maximizing the received signal power between the source and the near user, and between the source and the far user, respectively. Accordingly, exact and asymptotic closed-form expressions for the secrecy outage probability of the LUs and the overall system are derived. Our analytical results corroborated by the Monte Carlo simulation indicate that the secrecy performance could be significantly improved by properly selecting the power allocation coefficients and increasing the number of antennas at the source and the LUs. Interestingly, solution II is shown to provide a better overall secrecy performance over solution I.
机译:在本文中,我们考虑由一个源和两个合法用户(LUS)组成的多输入多输出(MIMO)非正交多址(NOMA)网络,所谓的近和远用户根据它们的距离,以及一个被动窃听者,在Nakagami-M褪色渠道。具体地,我们研究了远离用户的信号或可能不在窃听器和近用户处成功解码的情况。因此,我们的目的是为网络设计发射天线选择(TAS)安全通信协议;提出了两个TAS解决方案,即解决方案I和II。具体而言,解决方案I和II专注于最大化源和近用户之间的接收信号功率,以及源和远用户之间的接收信号功率。因此,导出了LUS和整个系统的保密性中断概率的精确和渐近闭合表达。 Our analytical results corroborated by the Monte Carlo simulation indicate that the secrecy performance could be significantly improved by properly selecting the power allocation coefficients and increasing the number of antennas at the source and the LUs.有趣的是,解决方案II显示在解决方案中提供更好的整体保密性能。

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