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Secure Beamforming for Full-Duplex MIMO Two-Way Communication via Untrusted Relaying

机译:通过不可信中继实现全双工MIMO双向通信的安全波束成形

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Full-duplex (FD) technique is very promising to support enormous data for 5G networks since it can greatly improve the spectrum efficiency. However, the secrecy performance of FD communication systems still remains largely unknown. As an initial step towards this end, this paper studies the physical layer security-based beamforming design in a FD two-way amplify-and-forward relay system, where two source nodes exchange messages with the assistance of an untrusted relay. The untrusted relay is willing to forward the messages and may also work as an eavesdropper to intercept the confidential messages. Our objective is to optimize the source and relay beamformers for maximizing the secrecy sum rate of the two-way communications with imperfect self-interference cancellation. For a specific system configuration, we first derive the expression of secrecy sum rate. By utilizing signal alignment technique and gradient method, we then propose two iterative algorithms to find the optimal source and relay beamforming matrices, respectively. Simulation results demonstrate that when the number of antennas at the relay is appropriate and the interference-to-noise ratio is in a low region the proposed FD scheme significantly improves the secrecy sum rate over conventional schemes.
机译:全双工(FD)技术非常有希望为5G网络支持大量数据,因为它可以大大提高频谱效率。但是,FD通信系统的保密性能仍然很大程度上未知。作为实现此目标的第一步,本文研究了FD双向放大转发中继系统中基于物理层安全性的波束成形设计,该系统中两个源节点在不受信任的中继的帮助下交换消息。不受信任的中继愿意转发消息,还可以充当窃听者来拦截机密消息。我们的目标是优化源和中继波束成形器,以在不完美的自干扰消除的情况下最大化双向通信的保密和速率。对于特定的系统配置,我们首先导出保密和率的表达式。通过利用信号对准技术和梯度方法,我们提出了两种迭代算法来分别找到最优的源和中继波束成形矩阵。仿真结果表明,当中继站的天线数量合适且干扰噪声比处于较低区域时,与常规方案相比,所提出的FD方案显着提高了保密和率。

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