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mmWave Amplify-and-Forward MIMO Relay Networks With Hybrid Precoding/Combining Design

机译:具有混合预编码/组合设计的mmWave放大转发MIMO中继网络

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摘要

In this paper, we consider the amplify-and-forward relay networks in mmWave systems and propose a hybrid precoder/combiner design approach. The phase-only RF precoding/combining matrices are first designed to support multi-stream transmission, where we compensate the phase for the eigenmodes of the channel. Then, the baseband precoders/combiners are performed to achieve the maximum mutual information. Based on the data processing inequality for the mutual information, we first jointly design the baseband source and relay nodes to maximize the mutual information before the destination baseband receiver. The proposed low-complexity iterative algorithm for the source and relay nodes is based on the equivalence between the mutual information maximization and the weighted MMSE. After we obtain the optimal precoder and combiner for the source and relay nodes, we implement the MMSE-SIC filter at the baseband receiver to keep the mutual information unchanged, thus obtaining the optimal mutual information for the whole relay system. Simulation results show that our algorithm achieves better performance with lower complexity compared with other algorithms in the literature. In addition, we also propose a robust joint transceiver design for imperfect channel state information.
机译:在本文中,我们考虑了毫米波系统中的放大转发中继网络,并提出了一种混合预编码器/组合器设计方法。仅相位RF预编码/组合矩阵首先被设计为支持多流传输,在此我们为信道的本征模补偿相位。然后,执行基带预编码器/组合器以实现最大互信息。基于互信息的数据处理不等式,我们首先共同设计基带源和中继节点,以在目标基带接收器之前最大化互信息。针对源节点和中继节点提出的低复杂度迭代算法是基于互信息最大化和加权MMSE之间的等价关系。在获得源节点和中继节点的最佳预编码器和组合器之后,我们在基带接收器处实现MMSE-SIC滤波器,以使互信息保持不变,从而获得整个中继系统的最佳互信息。仿真结果表明,与文献中的其他算法相比,我们的算法具有更好的性能和更低的复杂度。此外,我们还针对不完美的信道状态信息提出了一种健壮的联合收发器设计。

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