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PNC-Aided Robust Secure Beamforming Design for Two-Way Relay Networks with Artificial Noise

机译:具有人工噪声的双向中继网络的PNC辅助鲁棒安全波束成形设计

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In this paper, we study a two-way relay network (TWRN), in which eavesdroppers' channel state information is imperfect, and all the eavesdroppers collude to form joint receive beamforming for enhanced receptions. To ensure the robustness of the TWRN, we design the transmit beamforming and establish two secure beamforming design formulations, which combines the physical layer network coding with artificial noise technique at the relay. One secure beamforming design formulation is to minimize the total transmit power in the TWRN, and the other one is to guarantee a maximum secrecy sum rate (SSR) in the worst-case. With the help of approximation techniques, the former optimization problem is converted into a convex problem, whose semidefinite relaxation solution is rank-one. However, due to the maximum available power limit of the system, the power optimization problem may be infeasible. To overcome this problem, the SSR optimization formulation is presented, and the optimization problem is decoupled into two subproblems that can be transformed into the convex forms. Finally, it is verified by the numerical results that the proposed schemes are effective.
机译:在本文中,我们研究了双向中继网络(TWRN),其中窃听者的信道状态信息不完善,所有窃听者串通以形成联合接收波束成形以增强接收效果。为了确保TWRN的鲁棒性,我们设计了发射波束成形并建立了两个安全的波束成形设计公式,该公式将物理层网络编码与中继处的人工噪声技术相结合。一种安全的波束成形设计公式是使TWRN中的总发射功率最小化,另一种方法是在最坏的情况下保证最大保密总速率(SSR)。借助逼近技术,将先前的优化问题转换为凸问题,其半确定松弛解为秩一。但是,由于系统的最大可用功率限制,功率优化问题可能不可行。为了解决这个问题,提出了SSR优化公式,并将优化问题分解为两个子问题,这些子问题可以转换为凸形式。最后,通过数值结果验证了所提方案的有效性。

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