Millimeter Wave Systems for Wireless Cellular Communications
Lou Zhao

TL;DR
This thesis advances mmWave massive MIMO systems by proposing efficient channel estimation and beamforming schemes, demonstrating improved data rates and interference mitigation in multi-cell scenarios with theoretical and simulation validation.
Contribution
Introduces a tone-based linear search for angle-of-arrivals, a low-complexity hybrid channel estimation scheme, and extends these to multi-cell networks with analytical performance analysis.
Findings
Proposed MRT achieves higher data rates than conventional methods.
The hybrid scheme attains rates comparable to fully digital systems.
Increasing antennas reduces estimation errors and interference effects.
Abstract
This thesis considers channel estimation and multiuser (MU) data transmission for massive MIMO systems with fully digital/hybrid structures in mmWave channels. It contains three main contributions. In this thesis, we first propose a tone-based linear search algorithm to facilitate the estimation of angle-of-arrivals of the strongest components as well as scattering components of the users at the base station (BS) with fully digital structure. Our results show that the proposed maximum-ratio transmission (MRT) based on the strongest components can achieve a higher data rate than that of the conventional MRT, under the same mean squared errors (MSE). Second, we develop a low-complexity channel estimation and beamformer/precoder design scheme for hybrid mmWave systems. In addition, the proposed scheme applies to both non-sparse and sparse mmWave channel environments. We then leverage the…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Advanced MIMO Systems Optimization · Microwave Engineering and Waveguides
