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Energy Efficient Multi-User Millimeter Wave MIMO Systems Using Tree Search Hybrid Precoding and Few-Bit ADCs

机译:使用树搜索混合预编码和少量ADC的高能效多用户毫米波MIMO系统

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Millimeter wave (mmWave) communication is an emerging technique to provide large bandwidth in cellular systems. However, mmWave signals experience more pathloss than the microwave signals adopted in current wireless communications. Therefore, a mmWave system tends to adopt a large number of antennas to combat pathloss with high beamforming gain. In conventional multi-antenna systems, both beamforming and precoding are done digitally in baseband. The high cost and power consumption of certain components in mmWave systems render conventional architecture infeasible. In this paper, we consider low complexity hybrid analog/digital precoding and low-resolution analog-digital converters (ADCs) (1–3 bits) in downlink multiuser mmWave MIMO systems. We propose a new transmission scheme involving rationale of beamspace MIMO communications and beam selection. We also develop a low complexity beam selection algorithm and evaluate adaptive selection on the RF configuration for energy efficiency (EE) optimization. Our analysis and simulation results show that the proposed scheme can significantly reduce system complexity and achieve good performance on energy efficiency and detection.
机译:毫米波(mmWave)通信是在蜂窝系统中提供大带宽的新兴技术。但是,毫米波信号比当前无线通信中采用的微波信号遭受更大的路径损耗。因此,毫米波系统倾向于采用大量天线以高波束成形增益来应对路径损耗。在常规的多天线系统中,波束形成和预编码都在基带中以数字方式完成。 mmWave系统中某些组件的高成本和功耗使常规架构变得不可行。在本文中,我们考虑了下行链路多用户mmWave MIMO系统中的低复杂度混合模拟/数字预编码和低分辨率模拟/数字转换器(ADC)(1-3位)。我们提出了一种新的传输方案,其中涉及波束空间MIMO通信的原理和波束选择。我们还开发了一种低复杂度的波束选择算法,并针对RF配置评估了自适应选择,以实现能源效率(EE)优化。我们的分析和仿真结果表明,该方案可以显着降低系统复杂度,并在能源效率和检测方面取得良好的性能。

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