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Two-Step Hybrid Multiuser Equalizer for Sub-Connected mmWave Massive MIMO SC-FDMA Systems

机译:子连接的毫米波大规模MIMO SC-FDMA系统的两步式混合多用户均衡器

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Most of the works consider hybrid fully connected architectures to overcome the constraints of millimeter wave massive MIMO systems. However, these schemes require a one-to-one connection between the RF chains and antennas. In this paper we propose a two-step broadband multiuser equalizer for hybrid sub-connected architectures, which is a more realistic approach for practical systems. The low-complexity user-terminals employ only analog precoders computed from the knowledge of the average angle of departure of each cluster, which is constant over the bandwidth. At the receiver side, we design a hybrid multi-user equalizer by minimizing the average bit-error-rate. A two-step approach is considered, where the analog part is constant over the iterations due to hardware constraints and the digital part is iterative. The analog part is also constant over all subcarriers while the digital part is computed on a per subcarrier basis. The proposed sub-connected based equalizer is compared with the fully connected counterpart. The results show that the performance of the proposed scheme is close to the fully connected one after just a few iterations performed at the digital domain.
机译:大多数工作考虑混合完全连接架构,以克服毫米波大规模MIMO系统的局限性。但是,这些方案需要在RF链和天线之间进行一对一连接。在本文中,我们提出了一种用于混合子连接架构的两步式宽带多用户均衡器,这对于实际系统而言是一种更为现实的方法。低复杂度用户终端仅使用根据每个集群的平均离开角度的知识计算出的模拟预编码器,该平均离开角度在带宽上是恒定的。在接收器端,我们通过最小化平均误码率来设计混合多用户均衡器。考虑了两步法,其中由于硬件限制,模拟部分在迭代过程中是恒定的,而数字部分是迭代的。模拟部分在所有子载波上也是恒定的,而数字部分是在每个子载波的基础上计算的。将拟议的基于子连接的均衡器与完全连接的均衡器进行比较。结果表明,仅在数字域执行几次迭代后,该方案的性能就接近于完全连接的方案。

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