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Hybrid Beamforming with Fixed Phase Shifters for Uplink Cell-Free Millimetre-Wave Massive MIMO Systems

机译:具有固定相移器的混合波束形成,用于上行链路电池无毫米波大规模MIMO系统

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Several innovative ideas are being proposed by researchers to lay a foundation for future generations of wireless communications due to anticipated explosive demand for throughput, ultra-low latency, ultra-high reliability and ubiquitous coverage. However, these demands will consume huge amount of resources, especially for cell-free (CF) millimetre-wave (mm-Wave) massive multiple input multiple output systems (MIMO), which is the promising direction for the coming wireless generations. In this paper, we present hybrid beamforming scheme based on alternating minimization and a few number of fixed phase shifters to maximize energy efficiency in the uplink CF mmWave massive MIMO systems. Simulation results illustrate that our proposed scheme with much fewer fixed phase shifters, e.g., 10 phase shifters, achieves up to approximately 20% and 50% energy efficiency improvement compared to adaptive radio frequency (RF) chains activation/deactivation and antenna selection schemes.
机译:由于预期对吞吐量,超低延迟,超高可靠性和普遍存在的覆盖率,研究人员提出了几种创新思想,为后代的无线通信奠定了基础。 然而,这些需求将消耗大量资源,特别是对于无细胞(CF)毫米波(MM波)大量多输入多输出系统(MIMO),这是未来无线世代的有希望的方向。 在本文中,我们基于交替最小化和几数量的固定相移器呈现混合波束形成方案,以最大化上行链路CF MMWAVE MASIVE MIMO系统中的能量效率。 仿真结果表明,与固定相移器,例如10相移器,例如10个相移器,与自适应射频(RF)链激活/去激活和天线选择方案相比,能够实现高度约20%和50%的能效改善。

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