Paper
18 October 2024 Joint beamforming design for reconfigurable intelligent surface-assisted high-speed railway communication systems with per-antenna power constraints
Yangyang Xu, Cuiran Li
Author Affiliations +
Proceedings Volume 13277, Sixth International Conference on Wireless Communications and Smart Grid (ICWCSG 2024); 132770A (2024) https://doi.org/10.1117/12.3049471
Event: 2024 6th International Conference on Wireless Communications and Smart Grid, 2024, Sipsongpanna, China
Abstract
To satisfy the high data transmission rate requirements of high-speed railway (HSR) wireless communication systems, this paper proposes a reconfigurable intelligent surface (RIS) assisted joint beamforming design algorithm. The algorithm aims to maximize the achievable rate for the HSR communication system while complying with per-antenna power constraints (PAPC) at the base station (BS) and uni-modular constraints on the reflection phase shifts at the RIS. Considering the nonconvex nature of the optimization problem, an alternating optimization (AO) algorithm is employed, decomposing it into two sub-problems: at the BS, an accelerated subgradient (AS) algorithm based on gaussian distribution is proposed to determine the closed-form optimal solution of the transmit covariance matrix; at the RIS, an accelerated minorizationmaximization (AMM) algorithm based on square iteration method is proposed to approximate the optimal solution of the reflection phase shift matrix. Simulation results show that the proposed joint beamforming algorithm effectively addresses the beamforming design challenges in large-scale multiple-input multiple-output (MIMO) HSR communication systems, significantly enhancing the system's achievable rate.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Yangyang Xu and Cuiran Li "Joint beamforming design for reconfigurable intelligent surface-assisted high-speed railway communication systems with per-antenna power constraints", Proc. SPIE 13277, Sixth International Conference on Wireless Communications and Smart Grid (ICWCSG 2024), 132770A (18 October 2024); https://doi.org/10.1117/12.3049471
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KEYWORDS
Spatial filtering

Design

Telecommunications

Multiple input multiple output

Covariance matrices

Antennas

Reflection

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