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Energy-Efficient Beamforming for Beamspace HAP-NOMA Systems

机译:用于光束空间HAP-NOMA系统的节能波束成形

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摘要

In this letter, we study an energy-efficient algorithm for beamspace high altitude platform with non-orthogonal multiple access (HAP-NOMA) systems over Rician fading channels. We first derive the non-line-of-sight (NLOS) theorem of beamspace HAP channel in large scale array regime according to the asymptotic property of the Toeplitz matrix. Then, we propose the beamspace HAP-NOMA scheme based on the derived NLOS theorem, which can be partitioned into two stages, i.e. user grouping scheme and power optimization scheme. The statistical channel state information (CSI) is only required in the proposed algorithm, which avoids acquiring instantaneous CSI. NOMA can serve users in each beam simultaneously to compensate for the loss of spectral efficiency due to the beamspace HAP. The digital precoder can be obtained by zero forcing (ZF) based on the equivalent channel. Numerical results show the performance enhancement of the proposed beamspace HAP-NOMA algorithm.
机译:在这封信中,我们研究了在Rician衰落通道上具有非正交多通道(HAP-NOMA)系统的Bearspace高海拔平台节能算法。 根据Toeplitz矩阵的渐近特性,我们首先在大规模阵列制度中获得了Beamspace HAP信道的非视线(NLOS)定理。 然后,我们提出了基于派生NLOS定理的BeaCSpace HAP-NOMM方案,其可以分为两个阶段,即用户分组方案和功率优化方案。 统计信道状态信息(CSI)仅在所提出的算法中需要,该算法避免了瞬时CSI。 NOMA可以同时为每个光束提供用户,以补偿因子空间HAP引起的频谱效率的损失。 基于等效信道,可以通过零强制(ZF)获得数字预编码器。 数值结果表明了所提出的波束空间HAP-NOMA算法的性能增强。

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