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Low-complexity hybrid precoding for multi-user massive MIMO systems: a hybrid EGT/ZF approach

机译:适用于多用户大规模MIMO系统的低复杂度混合预编码:混合EGT / ZF方法

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Massive multiple-input multiple-output (MIMO) systems bring manifold improvements in the system spectral efficiency but result in high hardware and processing complexity at the base station. Employing hybrid precoding at the base station can reduce such complexity. In this study, unlike most existing work on hybrid precoding design, the authors consider a sub-connected analogue combining structure to reduce the complexity. Starting from an important observation on the effect of sequentially designed analogue phased arrays on users' sum rate, the authors develop three low-complexity hybrid precoding schemes for a multi-user massive MIMO system. The proposed schemes apply equal gain transmission (EGT) based analogue beamforming to reap the diversity benefit of an analogue phased array and employ zero-forcing (ZF) beamforming for nullifying inter-user interference. The authors carry out an extensive computational complexity analysis and simulation study on the proposed schemes. The proposed singular-value decomposition based EGT scheme outperforms all others but incurs the highest computational burden. On the other hand, the sequential-EGT scheme is the least computationally intensive scheme but shows the worse performance amongst them.
机译:大规模多输入多输出(MIMO)系统带来了系统频谱效率的多方面改善,但导致基站的硬件和处理复杂性很高。在基站处采用混合预编码可以降低这种复杂性。在这项研究中,与大多数有关混合预编码设计的现有工作不同,作者考虑了子连接的模拟组合结构以降低复杂性。从对顺序设计的模拟相控阵对用户总速率的影响的重要观察开始,作者为多用户大规模MIMO系统开发了三种低复杂度的混合预编码方案。提出的方案应用基于等增益传输(EGT)的模拟波束成形来获得模拟相控阵的分集优势,并采用零强迫(ZF)波束成形来消除用户间干扰。作者对提出的方案进行了广泛的计算复杂性分析和仿真研究。所提出的基于奇异值分解的EGT方案性能优于所有其他方案,但产生了最高的计算负担。另一方面,顺序EGT方案是计算量最少的方案,但是在其中表现较差。

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