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Beamspace MIMO-NOMA for Millimeter-Wave Communications Using Lens Antenna Arrays

机译:利用镜头天线阵列的毫米波通信光束空间MIMO-NOMA

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The recent concept of beamspace multiple-input multiple-output (MIMO) is capable of significantly reducing the number of radio-frequency (RF) chains required by millimeter-wave (mmWave) massive MIMO systems. However, the fundamental limit of the existing beamspace MIMO is that, the number of supported users cannot be higher than the number of RF chains using the same time-frequency resources. To break this limit, beamspace MIMO is integrated with non-orthogonal multiple access (NOMA) in the proposed MIMO-NOMA system in this paper, where the number of supported users can be higher than the number of RF chains. To reduce the inter-beam interference, a transmit precoding (TPC) scheme based on the principle of zero-forcing (ZF) is designed. Furthermore, a dynamic power allocation scheme is proposed for maximizing the achievable sum rate. Moreover, a low-complexity iterative optimization algorithm is conceived for dynamic power allocation. Simulation results show that the proposed beamspace MIMO-NOMA achieves a higher spectrum and energy efficiency than the existing beamspace MIMO for mmWave communications.
机译:最近的BeamSpace概念多输入多输出(MIMO)能够显着降低毫米波(MMWAVE)大规模MIMO系统所需的射频(RF)链的数量。然而,现有的BeamSpace MIMO的基本限制是,支持的用户的数量不能高于使用相同的时间频率资源的RF链的数量。为了打破这个限制,在本文中,BeAGSpace MIMO与所提出的MIMO-NOMM系统中的非正交多址(NOMA)集成在其中,所支持的用户的数量可以高于RF链的数量。为了减少束间干扰,设计了基于零强制(ZF)原理的发射预编码(TPC)方案。此外,提出了一种动态功率分配方案,用于最大化可实现的总和率。此外,对动态功率分配构思了低复杂性迭代优化算法。仿真结果表明,所提出的BeamSpace MIMO-NOMA比MMWAVE通信的现有光束空间MIMO实现更高的频谱和能量效率。

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