An Efficient Interference-Aware Constrained Massive MIMO Beamforming for mm-Wave JSDM
Murat Bayraktar, Gokhan Muzaffer Guvensen

TL;DR
This paper presents a low-complexity, interference-aware beamforming method for mm-wave massive MIMO systems that improves spectral efficiency and channel estimation by combining statistical analog beamformers with digital LMMSE processing.
Contribution
It introduces a novel interference-aware constrained beamformer design with dynamic subarray algorithms and convergence analysis, enhancing performance over existing methods.
Findings
Improved spectral efficiency and outage capacity.
Effective interference suppression with low complexity.
Enhanced channel estimation accuracy.
Abstract
Low-complexity beamformer design with practical constraints is an attractive research area for hybrid analog/digital systems in mm-wave massive multiple-input multiple-output (MIMO). This paper investigates interference-aware pre-beamformer (analog beamformer) design for joint spatial division and multiplexing (JSDM) which is a user-grouping based two-stage beamforming method. Single-carrier frequency domain equalization (SC-FDE) is employed in uplink frequency-selective channels. First, unconstrained slowly changing statistical analog beamformer of each group, namely, generalized eigenbeamformer (GEB) which has strong interference suppression capability is designed where the mutual information in reduced dimension is maximized. Then, constant-modulus constrained approximations of unconstrained beamformer are obtained by utilizing alternating minimization algorithms for fully connected…
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