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Performance Investigation of Phase-over-Sampler based Hybrid Beamformer for mmWave Massive MIMO Systems

机译:基于相移的混合波束形成器的性能研究MMWAVE大规模MIMO系统

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Millimeter-Wave (mmWave) technology performs a significant role in satisfying the rising data traffic demand in 5G wireless communications. Nowadays, hybrid beamforming is a buzzword in massive MIMO systems performing at the frequency range of mmWave. Hybrid beamforming is the combination of analog and digital beamforming. The traditional fully-connected phase shifters (FCPSs) based hybrid beamforming systems consume high power due to a large number of phase shifters (PSs) in its analog part and its configuration complexity. High RF losses occur in the conventional phase shifters with switch (SW) based hybrid beamformer and the overall performance of this beamformer is decreased due to high RF losses. A 3-bit resolution phase-over-samplers (POSs) with SW based hybrid beamformer with less number of POSs is proposed in this paper to minimize the power consumption and RF losses of existing hybrid beamforming system. The proposed phase-over-sampler with SW (POS-SW) based hybrid beamformer provides higher spectral efficiency (SE) and energy efficiency (EE) compared with existing FCPSs and PS-SW based hybrid beamforming schemes. The performance of the proposed POS-SW based hybrid beamformer is also compared with the existing fully-digital beamformer and found that the EE of proposed POS-SW based hybrid beamformer is better than existing fully digital beamformer. Some numerical examples are shown to analyze the performance of the proposed hybrid beamformer.
机译:毫米波(MMWAVE)技术在满足5G无线通信中满足上升的数据流量需求方面具有重要作用。如今,混合波束成形是在MMWAVE的频率范围内执行的大规模MIMO系统中的流行字。混合波束形成是模拟和数字波束形成的组合。传统的全连接相移(FCPS)的混合波束形成系统由于其模拟部分中的大量相移器(PSS)及其配置复杂性而消耗了高功率。在具有开关(SW)的混合波束形成器的传统移相器中发生高RF损耗,并且由于高RF损耗,该波束形成器的整体性能降低。在本文中提出了一种3位分辨率的相位输​​出器(POSS),具有较少数量的具有较少数量的POSS,以最大限度地减少现有混合波束形成系统的功耗和RF损耗。与现有的FCPS和PS-SW基的混合波束形成方案相比,具有SW(POS-SW)的混合波束形成器的提出的相位输采样提供了更高的光谱效率(SE)和能量效率(EE)。所提出的POS-SW基混合波束形成器的性能也与现有的全数字波束形成器进行比较,发现所提出的POS-SW基混合波束形成器的EE优于现有的全数字波束形成器。示出了一些数值例子来分析所提出的混合波束形成器的性能。

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