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MMSE Filtering Performance of DH-AF Massive MIMO Relay Systems with Residual Transceiver Impairments

机译:DH-AF大型MIMO继电器系统具有剩余收发器损伤的MMSE滤波性能

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The emerging requirements of the fifth generation (5G) wireless communications are high spectral efficiency, low latency, and ubiquitous coverage. In this direction, Dual-Hop (DH) Amplify-and-Forward (AF) relaying has been widely investigated due to its simplicity, low implementation complexity and low transmission delay. However, most existing works assume ideal transceiver hardware which is impractical. In practice, a cost-efficient wireless transceiver has to combat the effects of several inevitable impairments such as high power amplifier nonlinearities, In-phase/Quadrature-phase (I/Q)-imbalance, and oscillator phase noise, which can be only partially compensated using calibration algorithms. In this direction, this paper analyzes the Minimum Mean Square Error (MMSE) filtering performance of a DH-AF Multiple-Input-Multiple-Output (MIMO) wireless system considering the effects of the residual additive impairments at the transmitter and receiver of both hops. Using free probability principles, the MMSE filtering performance of the considered system is studied and a tight lower bound is proposed by taking the effects of residual additive transceiver impairments into account. Our numerical results show that the MMSE filtering performance of the DH-AF massive MIMO relay system significantly degrades and results to saturation in the presence of residual additive transceiver impairments.
机译:第五代(5G)无线通信的新兴需求是高光谱效率,低延迟和覆盖范围。在这种方向上,由于其简单性,低实现复杂度和低传输延迟,双跳(DH)扩增和前进(AF)中继已被广泛研究。然而,大多数现有工程都假设理想的收发器硬件是不切实际的。在实践中,一种经济高效的无线收发器必须对诸如高功率放大器非线性,相位/正交相(I / Q) - 迁移和振荡​​器相位噪声等几个不可避免的损伤的影响,并且振荡器相位噪声可以仅部分使用校准算法补偿。在此方向上,考虑到两种跳跃的发射机和接收器的剩余添加剂损伤的影响,分析了DH-AF多输入多输出(MIMO)无线系统的最小均方误差(MMSE)过滤性能。 。使用自由概率原理,研究了所考虑的系统的MMSE滤波性能,并通过在考虑剩余添加剂收发器障碍的影响来提出紧密的下限。我们的数值结果表明,DH-AF大规模MIMO中继系统的MMSE滤波性能显着降低并导致残余添加剂收发器损伤存在饱和度。

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