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Spectrum and Energy-Efficient Beamspace MIMO-NOMA for Millimeter-Wave Communications Using Lens Antenna Array

机译:使用透镜天线阵列进行毫米波通信的频谱和高能效波束空间MIMO-NOMA

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摘要

The recent concept of 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. However, the fundamental limit of existing beamspace MIMO is that the number of supported users cannot be larger than the number of RF chains at the same time-frequency resources. To break this fundamental limit, in this paper, we propose a new spectrum and energy-efficient mmWave transmission scheme that integrates the concept of non-orthogonal multiple access (NOMA) with beamspace MIMO, i.e., beamspace MIMO-NOMA. By using NOMA in beamspace MIMO systems, the number of supported users can be larger than the number of RF chains at the same time-frequency resources. In particular, the achievable sum rate of the proposed beamspace MIMO-NOMA in a typical mmWave channel model is analyzed, which shows an obvious performance gain compared with the existing beamspace MIMO. Then, a precoding scheme based on the principle of zero forcing is designed to reduce the inter-beam interferences in the beamspace MIMO-NOMA system. Furthermore, to maximize the achievable sum rate, a dynamic power allocation is proposed by solving the joint power optimization problem, which not only includes the intra-beam power optimization, but also considers the inter-beam power optimization. Finally, an iterative optimization algorithm with low complexity is developed to realize the dynamic power allocation. Simulation results show that the proposed beamspace MIMO-NOMA can achieve higher spectrum and energy efficiency compared with the existing beamspace MIMO.
机译:波束空间多输入多输出(MIMO)的最新概念可以显着减少毫米波(mmWave)大规模MIMO系统中所需的射频(RF)链数,而不会造成明显的性能损失。但是,现有波束空间MIMO的基本限制是,在相同的时频资源下,支持的用户数量不能大于RF链的数量。为了打破这一基本限制,本文提出了一种新的频谱和高能效mmWave传输方案,该方案将非正交多址(NOMA)概念与波束空间MIMO(即波束空间MIMO-NOMA)相集成。通过在波束空间MIMO系统中使用NOMA,受支持的用户数量可以大于相同时频资源下的RF链数量。尤其是,分析了典型毫米波信道模型中所提出的波束空间MIMO-NOMA的可实现总和率,与现有的波束空间MIMO相比,它具有明显的性能增益。然后,设计了一种基于零强迫原理的预编码方案,以减少波束空间MIMO-NOMA系统中的波束间干扰。此外,为了最大程度地提高可实现的总和率,通过解决联合功率优化问题提出了一种动态功率分配方法,该方法不仅包括波束内功率优化,还考虑了波束间功率优化。最后,开发了一种低复杂度的迭代优化算法来实现动态功率分配。仿真结果表明,与现有的波束空间MIMO相比,本文提出的波束空间MIMO-NOMA具有更高的频谱利用率和能效。

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