Semi-Blind Channel Estimation and Hybrid Receiver Beamforming in the Tera-Hertz Multi-User Massive MIMO Uplink
Abhisha Garg, Suraj Srivastava, Varsha Dubey, Aditya Jagannatham, Lajos Hanzo

TL;DR
This paper introduces a semi-blind channel estimation method and a hybrid receiver design for multi-user massive MIMO systems operating in the THz band, addressing unique propagation challenges and reducing training overhead.
Contribution
It proposes a novel semi-blind CSI acquisition technique and a hybrid receiver framework tailored for THz MU-MIMO, improving accuracy and efficiency over existing methods.
Findings
The semi-blind scheme reduces training overhead significantly.
The hybrid receiver enhances interference mitigation and spectral efficiency.
Simulation results show improved NMSE, BER, and SE compared to conventional methods.
Abstract
We develop a pragmatic multi-user (MU) massive multiple-input multiple-output (MIMO) channel model tailored to the THz band, encompassing factors such as molecular absorption, reflection losses and multipath diffused ray components. Next, we propose a novel semi-blind based channel state information (CSI) acquisition technique i.e. MU whitening decorrelation semi-blind (MU-WD-SB) that exploits the second order statistics corresponding to the unknown data symbols along with pilot vectors. A constrained Cramer-Rao Lower Bound (C-CRLB) is derived to bound the normalized mean square error (NMSE) performance of the proposed semi-blind learning technique. Our proposed scheme efficiently reduces the training overheads while enhancing the overall accuracy of the channel learning process. Furthermore, a novel hybrid receiver combiner framework is devised for MU THz massive MIMO systems,…
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Taxonomy
TopicsMillimeter-Wave Propagation and Modeling · Advanced MIMO Systems Optimization · Advanced Wireless Communication Technologies
