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Hybrid Transceiver Design for Beamspace MIMO-NOMA in Code-Domain for MmWave Communication Using Lens Antenna Array

机译:用于MMWAVE通信的CodeDave中的光束空间MIMO-NOMA的混合收发器设计使用镜头天线阵列

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摘要

As a hybrid MIMO architecture, beamspace multiple input multiple output (MIMO) can significantly reduce the number of required radio frequency (RF) chains in millimeter wave (mmWave) massive MIMO systems without obvious performance loss, in which, however, the number of users supported cannot be larger than that of RF chains. To break this fundamental limit, we introduce the concept of code-domain non-orthogonal multiple access (NOMA) into beamspace MIMO. A beam selection scheme is proposed first to maximize the sum-rate by utilizing the quasi-orthogonality of the beamspace channel. Furthermore, a low-complexity detection algorithm is developed to realize the transceiver design in mmWave communications using lens antennas. Finally, numerical results of the decoding complexity at receiver side are analyzed. Simulation results show that the proposed beamspace MIMO-NOMA in code domain can achieve higher spectrum and energy efficiency compared with the existing beamspace MIMO.
机译:作为混合MIMO架构,Beamspace多输入多输出(MIMO)可以显着减少毫米波(MMWAVE)大量MIMO系统中所需的射频(RF)链的数量,而无明显的性能损失,但是,用户数量支持不能大于射频链。要打破这种基本限制,我们将代码域非正交多址(NOMA)的概念介绍到Beamspace MIMO中。首先提出光束选择方案来利用BeamSpace信道的准正交性来最大化所述和速率。此外,开发出低复杂性检测算法以使用镜头天线实现MMWAVE通信中的收发器设计。最后,分析了接收机侧解码复杂度的数值结果。仿真结果表明,与现有的Beamspace MIMO相比,拟议的Code域MIMO-NOMA可以实现更高的频谱和能效。

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