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Joint Beamforming Optimization and Power Control for Full-Duplex MIMO Two-Way Relay Channel

机译:全双工MIMO双向中继信道的联合波束成形优化和功率控制

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In this paper, we explore the use of full-duplex radio to improve the spectrum efficiency in a two-way relay channel where two sources exchange information through an multi-antenna relay, and all nodes work in the full-duplex mode. The full-duplex operation can reduce the overall communication to only one phase but suffers from the self-interference. Instead of purely suppressing the self-interference, we aim to maximize the end-to-end performance by jointly optimizing the beamforming matrix at the relay which uses the amplify-and-forward protocol as well as the power control at the sources. To be specific, we propose iterative algorithms and 1-D search to solve two problems: finding the achievable rate region and maximizing the sum rate. At each iteration, either the analytical solution or convex formulation is obtained. We compare the proposed full-duplex two-way relaying with the conventional half-duplex two-way relaying, a full-duplex one-way relaying and a performance upper bound. Numerical results show that the proposed full-duplex scheme significantly improves the achievable data rates over the conventional scheme.
机译:在本文中,我们探索了使用全双工无线电来提高双向中继信道中的频谱效率,其中两个源通过一个多天线中继交换信息,并且所有节点都以全双工模式工作。全双工操作可以将整个通信减少到仅一个阶段,但会遭受自干扰。我们的目标不是单纯地抑制自干扰,而是旨在通过在中继器处共同优化波束形成矩阵来最大化端到端性能,该中继器使用放大转发协议以及源处的功率控制。具体来说,我们提出了迭代算法和一维搜索来解决两个问题:找到可达到的速率区域和最大化总速率。在每次迭代中,要么获得解析解,要么获得凸公式。我们将建议的全双工双向中继与常规的半双工双向中继,全双工单向中继和性能上限进行了比较。数值结果表明,所提出的全双工方案比传统方案显着提高了可达到的数据速率。

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