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Secure Multiuser Scheduling in Downlink Dual-hop Regenerative Relay Networks over Nakagami-m Fading Channels

机译:Nakagami-m衰落信道上的下行双跳再生中继网络中的安全多用户调度

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摘要

In this paper, we investigate the secrecy performance of multiuser dual-hop relay networks where a base station (BS) communicates with multiple legitimate users via the assistance of a trustful regenerative relay in the presence of multiple eavesdroppers. Particularly, the maximal ratio transmission (MRT) scheme is exploited at the BS and a threshold-based multiuser scheduling scheme is employed over the legitimate users, while concerning the imperfect decoding at the regenerative relay. To evaluate the secrecy performance of the considered system, two practical situations are addressed based on the availability of eavesdropper’s channel state information (CSI), i.e., Scenario I, where the eavesdropper’s CSI is not available at the relay, and Scenario II, where the eavesdropper’s CSI is available at the relay. For both scenarios, we further consider two eavesdropping modes, i.e., colluding eavesdropping and non-colluding eavesdropping. For Scenario I, new exact and asymptotic closed-form expressions of the secrecy outage probability (SOP) are derived. For Scenario II, we derive new exact and asymptotic closedform expressions of ergodic secrecy rate (ESR). The asymptotic SOPs demonstrate that the secrecy diversity order is independent of the number of legitimate users NB and eavesdroppers NE, the number of antennas equipped at eavesdroppers AE as well as fading factor of the wiretap channel mE. Furthermore, we also determine the secrecy multiplexing gain and the power cost to explicitly quantify the impact of the legitimate channel and wiretap channel on ergodic secrecy rate. Our findings demonstrate that increasing the switching threshold, the number of antennas at the BS, and the number of legitimate users have a positive impact on secrecy performance.
机译:在本文中,我们研究了多用户双跳中继网络的保密性能,其中基站(BS)在存在多个窃听者的情况下,通过可信赖的再生中继与多个合法用户进行通信。特别地,最大速率传输(MRT)方案在BS处被利用,并且在合法用户上采用基于阈值的多用户调度方案,同时涉及再生中继处的不完美解码。为了评估所考虑系统的保密性能,根据窃听者的信道状态信息(CSI)的可用性,解决了两种实际情况,即方案I,其中中继器不提供窃听者的CSI,以及方案II,其中窃听者的CSI在中继处可用。对于这两种情况,我们进一步考虑两种窃听模式,即共谋窃听和非共谋窃听。对于方案I,导出了保密中断概率(SOP)的新的精确和渐近闭式表达式。对于方案II,我们得出了遍历保密率(ESR)的新的精确且渐近的闭式表达式。渐近SOP证明,保密分集顺序与合法用户NB和窃听器NE的数量,在窃听器AE上配备的天线的数量以及窃听信道mE的衰落因子无关。此外,我们还确定了保密复用增益和功耗,以明确量化合法信道和窃听信道对遍历保密率的影响。我们的研究结果表明,提高切换阈值,增加基站的天线数量以及合法用户的数量会对保密性能产生积极影响。

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