Cooperative Jamming and Relay Beamforming Design for Physical Layer Secure Two-Way Relaying

Zonghao Ma, Yanhui Lu, Lingfeng Shen, Yili Liu, Ning Wang
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引用次数: 3

Abstract

In this work, physical layer secure transmission of a cooperative wireless communication system over a three-phase amplify-and-forward (AF) two-way relaying channels is studied. A cooperative jamming and multi-antenna relay beamforming scheme that improves physical layer security of the system is proposed. Specifically, it is suggested that in the first and second timeslots when the legitimate users transmit alternatively, a jamming signal can be transmitted by the legitimate party that is not transmitting information-bearing signals This scheme, compared with the approach using a dedicated jammer, achieves a similar jamming effect with reduced complexity. In the third time slot of the protocol, the relay uses two beamforming matrices to process the bidirectional information signals. The jamming signal components at the relay are projected onto the null space of the legitimate relay-destination channels such that they do not affect legitimate communications. Through joint optimization, the sum throughput of the legitimate communication is maximized. In the numerical examples, the proposed scheme is shown to improve the system's secrecy transmission performance.
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物理层安全双向中继的协同干扰与中继波束形成设计
在本工作中,研究了在三相放大转发(AF)双向中继信道上协作无线通信系统的物理层安全传输。提出了一种协同干扰和多天线中继波束形成方案,提高了系统物理层的安全性。具体来说,建议在合法用户交替传输的第一和第二时隙中,由不传输含信息信号的合法方传输干扰信号。与使用专用干扰机的方法相比,该方案达到了相似的干扰效果,但降低了复杂性。在协议的第三时隙,中继使用两个波束形成矩阵来处理双向信息信号。中继上的干扰信号分量被投射到合法中继目的地信道的零空间上,这样它们就不会影响合法通信。通过联合优化,使合法通信的总吞吐量达到最大。数值算例表明,该方案可以提高系统的保密传输性能。
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