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Millimeter-wave/terahertz massive MIMO BDMA transmission with per-beam synchronization

机译:带有每波束同步的毫米波/太赫兹大规模MIMO BDMA传输

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We propose beam division multiple access (BDMA) with per-beam synchronization (PBS) in time and frequency for wideband massive multiple-input multiple-output (MIMO) transmission over millimeter-wave (mmW)/Terahertz (THz) channels. Based on a physically motivated beam domain channel model, we first show that the envelopes of the beam domain channel elements tend to be independent of time and frequency when both the numbers of antennas at base station and user terminals (UTs) tend to infinity. Motivated by this, we then propose PBS for massive MIMO. We show that both the effective delay and Doppler frequency spreads of massive MIMO channels with PBS are reduced by a factor of the number of UT antennas compared with the conventional synchronization approaches. Subsequently, we apply PBS to BDMA and investigate beam scheduling to maximize the achievable ergodic rates for BDMA. Simulation results verify the effectiveness of BDMA with PBS for mmW/THz massive MIMO in typical mobility scenarios.
机译:我们提出了在时间和频率上采用每束同步(PBS)的波束划分多址(BDMA),用于毫米波(mmW)/太赫兹(THz)信道上的宽带大规模多输入多输出(MIMO)传输。基于物理激励的波束域信道模型,我们首先表明,当基站和用户终端(UT)的天线数量都趋于无穷大时,波束域信道元素的包络往往与时间和频率无关。因此,我们提出了用于大规模MIMO的PBS。我们显示,与传统的同步方法相比,具有PBS的大规模MIMO信道的有效延迟和多普勒频率扩展都减少了UT天线的数量。随后,我们将PBS应用于BDMA,并研究波束调度以最大程度地实现BDMA的遍历速率。仿真结果验证了在典型的移动场景下,带PBS的BDMA对于mmW / THz大规模MIMO的有效性。

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