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Hybrid Iterative Space-Time Equalization for Multi-User mmW Massive MIMO Systems

机译:多用户mmW大规模MIMO系统的混合迭代时空均衡

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摘要

The combination of millimeter wave (mmW) with massive MIMO is a promising approach to achieve the multi Gb/s required by future wireless systems. Fully digital architectures are not feasible due to hardware limitations, and thus, the design of signal processing techniques for hybrid analog-digital architectures is of paramount importance. In this paper, we propose a new hybrid iterative block space-time receiver structure for multiuser mmW massive MIMO systems. We consider low-complexity user terminals employing analog-only random precoding and a single RF chain. At the base station, a hybrid analog-digital equalizer/detector is designed to efficiently remove the multiuser interference. The analog and digital parts of the equalizer are jointly optimized using as a metric the average bit-error-rate. The specificities of the analog domain impose several constraints in the joint optimization. To efficiently handle these constraints, the analog part is selected from a dictionary based on the array response vectors. We also propose a simple, yet an accurate semi-analytical approach for obtaining the performance of the proposed hybrid receiver structure. The results show that the performance of the hybrid iterative equalizer is close to the fully digital counterpart after only a few iterations. Moreover, it clearly outperforms the linear receivers recently considered for hybrid mmW massive MIMO architectures.
机译:毫米波(mmW)与大规模MIMO的结合是实现未来无线系统所需的Gb / s的有前途的方法。由于硬件限制,全数字架构是不可行的,因此,用于混合模数架构的信号处理技术的设计至关重要。在本文中,我们为多用户mmW大规模MIMO系统提出了一种新的混合迭代块时空接收机结构。我们考虑采用仅模拟随机预编码和单个RF链的低复杂度用户终端。在基站,混合模数均衡器/检测器设计用于有效消除多用户干扰。均衡器的模拟和数字部分使用平均误码率作为度量标准进行联合优化。模拟域的特殊性在联合优化中施加了一些约束。为了有效地处理这些约束,基于数组响应向量从字典中选择模拟部分。我们还提出了一种简单而又准确的半分析方法来获得所提出的混合接收器结构的性能。结果表明,仅经过几次迭代,混合迭代均衡器的性能就接近全数字均衡器。此外,它明显优于最近考虑用于混合毫米波大规模MIMO架构的线性接收器。

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