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Distortion-loop-aware amplify-and-forward full-duplex relaying with multiple antennas

机译:具有多个天线的失真环路感知放大转发全双工中继

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In this work we study the behavior of a full-duplex (FD) and amplify-and-forward (AF) relay with multiple antennas, where hardware impairments of the FD transceivers are taken into account. Due to the inter-dependency of the transmit relay power on each antenna and the residual self-interference intensity in an AF-FD relay, we observe a distortion loop which degrades the system performance. An optimization problem is formulated to maximize the end-to-end communication rate, under relay and source transmit power constraints. Due to the resulting problem complexity, we propose a gradient-projection-based algorithm to approach an optimum solution. An iterative relay transmit covariance shaping algorithm is also proposed, following the quadratic approximation of the relay function in each iteration. The aforementioned algorithm provides a convex optimization framework to approach an optimal solution with small number of optimization iterations. The performance of the proposed designs are then compared to a similar setup with a decode-and-forward (DF) process, where the distortion loop effect is eliminated due to decoding, via numerical simulations.
机译:在这项工作中,我们研究了具有多个天线的全双工(FD)和放大转发(AF)中继的行为,其中考虑了FD收发器的硬件损坏。由于每个天线上发射中继功率的相互依赖性以及AF-FD中继中的残余自干扰强度,我们观察到一个失真环路,该环路会降低系统性能。在中继和源发射功率约束下,制定了一个优化问题以最大化端到端通信速率。由于由此产生的问题的复杂性,我们提出了一种基于梯度投影的算法来寻求最佳解决方案。在每次迭代中中继函数的二次逼近之后,还提出了一种迭代中继发射协方差整形算法。前面提到的算法提供了一个凸优化框架,以较少的优化迭代次数来逼近最优解。然后,将所提出的设计的性能与具有解码转发(DF)过程的类似设置进行比较,该过程通过数值模拟消除了由于解码导致的失真环路效应。

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