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Iterative Analog–Digital Multi-User Equalizer for Wideband Millimeter Wave Massive MIMO Systems

机译:宽带毫米波大规模MIMO系统的迭代模拟-数字多用户均衡器

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摘要

Most of the previous work on hybrid transmit and receive beamforming focused on narrowband channels. Because the millimeter wave channels are expected to be wideband, it is crucial to propose efficient solutions for frequency-selective channels. In this regard, this paper proposes an iterative analog–digital multi-user equalizer scheme for the uplink of wideband millimeter-wave massive multiple-input-multiple-output (MIMO) systems. By iterative equalizer we mean that both analog and digital parts are updated using as input the estimates obtained at the previous iteration. The proposed iterative analog–digital multi-user equalizer is designed by minimizing the sum of the mean square error of the data estimates over the subcarriers. We assume that the analog part is fixed for all subcarriers while the digital part is computed on a per subcarrier basis. Due to the complexity of the resulting optimization problem, a sequential approach is proposed to compute the analog phase shifters values for each radio frequency (RF) chain. We also derive an accurate, semi-analytical approach for obtaining the bit error rate (BER) of the proposed hybrid system. The proposed solution is compared with other hybrid equalizer schemes, recently designed for wideband millimeter-wave (mmWave) massive MIMO systems. The simulation results show that the performance of the developed analog–digital multi-user equalizer is close to full-digital counterpart and outperforms the previous hybrid approach.
机译:以前有关混合发送和接收波束成形的大多数工作都集中在窄带信道上。由于毫米波信道有望实现宽带化,因此为频率选择信道提出有效的解决方案至关重要。在这方面,本文提出了一种针对宽带毫米波大规模多输入多输出(MIMO)系统的上行链路的迭代模拟数字多用户均衡器方案。通过迭代均衡器,我们的意思是模拟和数字部分都使用上一次迭代获得的估计值作为输入进行更新。通过最小化子载波上数据估计的均方误差之和来设计拟议的迭代模拟-数字多用户均衡器。我们假设模拟部分对于所有子载波都是固定的,而数字部分是在每个子载波的基础上计算的。由于产生的优化问题的复杂性,提出了一种顺序方法来计算每个射频(RF)链的模拟移相器值。我们还推导了一种精确的半分析方法来获取所提出的混合系统的误码率(BER)。所提出的解决方案与最近为宽带毫米波(mmWave)大规模MIMO系统设计的其他混合均衡器方案进行了比较。仿真结果表明,所开发的模拟数字多用户均衡器的性能接近全数字均衡器,并且优于以前的混合方法。

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