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Secure Communication in Relay-Assisted Massive MIMO Downlink With Active Pilot Attacks

机译:具有主动导频攻击的中继辅助大规模MIMO下行链路中的安全通信

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摘要

In this paper, the achievable secrecy rate of a relay-assisted massive multiple-input multiple-output (MIMO) downlink is investigated in the presence of a multi-antenna active/passive eavesdropper. The excess degrees-of-freedom offered by a massive MIMO base-station (BS) are exploited for sending artificial noise (AN) via random and null-space precoders. An active eavesdropper contaminates the uplink channel estimates by sending pilot sequences identical to those of the legitimate users/relay. This active pilot contamination makes the massive MIMO BS implicitly beamform the confidential signals toward the active eavesdropper during two-hop downlink transmissions. The achievable secrecy rates are derived by taking the detrimental effects of actively contaminated channel state information with estimation errors and spatially correlated fading at the multiple-antenna terminals into account. The secrecy rate lass incurred by active pilot attacks over passive eavesdropping is investigated, and the secrecy rate gap between random and null-space-based AN is compared. A novel transmit power control policy is designed to efficiently allocate transmit power at the BS/relay for payload data and AN sequences for maximizing the achievable secrecy rate. Our results reveal that active pilot contamination attacks significantly degrade the achievable secrecy rate in dual-hop transmissions, and the corresponding detrimental effects cannot be asymptotically mitigated in the infinite BS antenna regime.
机译:本文研究了存在多天线有源/无源窃听器的情况下,中继辅助大规模多输入多输出(MIMO)下行链路的可达到的保密率。大规模MIMO基站(BS)提供的多余自由度被用于通过随机和零空间预编码器发送人工噪声(AN)。主动窃听者通过发送与合法用户/中继相同的导频序列来污染上行链路信道估计。这种主动导频污染使得大规模MIMO BS在两跳下行链路传输期间向主动窃听者隐式地将机密信号波束形成波束。通过考虑有源污染的信道状态信息的有害影响(带有估计误差)和多天线终端在空间上相关的衰落,来得出可达到的保密率。研究了主动飞行员因被动窃听而遭受的秘密率损失,并比较了随机和基于空空间的AN之间的秘密率差距。一种新颖的发射功率控制策略被设计为有效载荷数据和AN序列在BS /中继上有效地分配发射功率,以使可达到的保密率最大化。我们的研究结果表明,主动飞行员污染攻击会大大降低双跳传输中可达到的保密率,并且在无限的BS天线范围内无法渐近减轻相应的有害影响。

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