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Transmit beamforming aided amplify-and-forward MIMO full-duplex relaying with limited dynamic range

机译:具有有限动态范围的发射波束成形辅助放大转发MIMO全双工中继

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In this paper we address the design of a relay-assisted communication system where two half-duplex (HD) users communicate with each other via the help of an amplify-and-forward (AF) and full-duplex (FD) relay node. We design joint user beamforming and relay transmit strategies to deal with the self-interference signal at the FD relay node. Our approach is to maximize the system sum rate via linear transmit strategies by exploiting multiple antennas at all the involved nodes. Convex optimization based sub-optimal and optimal solutions are developed. More specifically, an alternating optimization for self-interference aware FD relaying (AO) is devised when the transmission of multiple streams is considered. Moreover, a unified approach via gradient projections is proposed as a benchmark. It can be applied regardless of the number of antennas at each node but has a significantly higher computational complexity than the AO algorithm. Simulation results show that the proposed algorithms can achieve a good performance compared to the benchmark algorithm. Moreover, a significant FD gain is achieved in terms of the sum rate when the residual self-interference power is smaller than the noise.
机译:在本文中,我们介绍了一种中继辅助通信系统的设计,其中两个半双工(HD)用户通过放大转发(AF)和全双工(FD)中继节点相互通信。我们设计了联合用户波束成形和中继传输策略,以处理FD中继节点处的自干扰信号。我们的方法是通过在所有涉及的节点上利用多个天线,通过线性传输策略来最大化系统总速率。提出了基于凸优化的次优解和最优解。更具体地,当考虑多个流的传输时,设计了针对自干扰的FD中继(AO)的交替优化。此外,提出了一种通过梯度投影的统一方法作为基准。可以不考虑每个节点上的天线数量而应用它,但是它的计算复杂度比AO算法高得多。仿真结果表明,与基准算法相比,该算法具有良好的性能。此外,当残余自干扰功率小于噪声时,就总速率而言,可获得显着的FD增益。

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