MIMO-Aided Nonlinear Hybrid Transceiver Design for Multiuser mmWave Systems Relying on Tomlinson-Harashima Precoding
Kaidi Xu, Yunlong Cai, Minjian Zhao, Yong Niu, and Lajos Hanzo

TL;DR
This paper introduces a nonlinear hybrid transceiver design for multiuser mmWave MIMO systems using Tomlinson-Harashima precoding, optimizing for MSE under practical constraints and reducing CSI overhead.
Contribution
It proposes a novel nonlinear joint hybrid transceiver design with a two-timescale algorithm, extending existing methods to improve performance and efficiency in mmWave systems.
Findings
Significant performance improvement over linear hybrid transceivers
Approaches fully-digital transceiver performance at lower cost
Reduces CSI signaling overhead and outdated CSI effects
Abstract
Hybrid analog-digital (A/D) transceivers designed for millimeter wave (mmWave) systems have received substantial research attention, as a benefit of their lower cost and modest energy consumption compared to their fully-digital counterparts. We further improve their performance by conceiving a Tomlinson-Harashima precoding (THP) based nonlinear joint design for the downlink of multiuser multiple-input multiple-output (MIMO) mmWave systems. Our optimization criterion is that of minimizing the mean square error (MSE) of the system under channel uncertainties subject both to realistic transmit power constraint and to the unit modulus constraint imposed on the elements of the analog beamforming (BF) matrices governing the BF operation in the radio frequency domain. We transform this optimization problem into a more tractable form and develop an efficient block coordinate descent (BCD) based…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Advanced MIMO Systems Optimization · Microwave Engineering and Waveguides
