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Massive-MIMO Hybrid Precoder Design Using Few-Bit DACs for 2D Antenna Array Structures

机译:MASSIVE-MIMO混合预编码器设计使用几位DAC用于2D天线阵列结构

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This paper investigates the performance of different antenna array structures for hybrid massive-MIMO precoding schemes using few-bit DACs. Particularly, the proposed hybrid scheme includes two precoding stages: the RF-beamforming stage is designed via the slowly time-varying channel second-order correlation matrix, while the baseband multi-user (MU) precoding stage is constructed via the regularized zero-forcing (RZF) technique to mitigating the MU-interference. For the same system cost and complexity, we examine the achieved sum-rate and energy efficiency of various 2D antenna array structures, namely, uniform linear array (ULA), uniform rectangular array (URA), uniform circular array (UCA), and concentric circular array (CCA), in serving multiple users at different angular locations. The Monte Carlo simulation results indicate the higher achievable rate and energy efficiency of CCA by using low-resolution DACs as compared to various 2D array structures. We also show that only (3-5)-bit DACs are sufficient to provide comparable spectral and energy efficiencies.
机译:本文研究了使用几位DAC的不同天线阵列结构对混合MASIVE-MIMO预编码方案的性能。特别地,所提出的混合方案包括两个预编码阶段:RF波束成形级通过缓慢时变信道二阶相关矩阵设计,而基带多用户(MU)预编码阶段是通过正则化零强制构造的(RZF)减轻MU干扰的技术。为了相同的系统成本和复杂性,我们研究了各种2D天线阵列结构的实现和能效,即均匀的线性阵列(ULA),均匀的矩形阵列(URA),均匀的圆形阵列(UCA)和同心圆形阵列(CCA),在不同角度位置提供多个用户。与各种2D阵列结构相比,蒙特卡罗模拟结果通过使用低分辨率DAC表示CCA的可实现速率和能量效率。我们还表明,只有(3-5)贝比特的DAC足以提供可比的光谱和能量效率。

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