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Correlation-Aware Adaptive Element Grouping for Discrete-Phase RIS in High-Mobility Scenarios
Y
S
K
Y
江
DOI:10.1109/lcomm.2026.3714493.png)
Abstract
En 中文
This letter proposes an adaptive element grouping method for discrete-phase reconfigurable intelligent surfaces (RISs) serving a high-mobility user equipment (UE) to maximize the average net spectral efficiency. A drift-aware channel state information (CSI) aging model is derived for the RIS-to-UE link, enabling pilot refreshing, CSI prediction, and error covariance characterization. With pilot-training and RIS-reconfiguration overhead included, a two-timescale design is developed: slow-timescale grouping exploits spatial correlation, whereas fast-timescale beamforming and discrete-phase optimization use predicted CSI while retaining residual inter-group coupling. Simulations show higher net spectral efficiency than existing grouping schemes, especially under high mobility and large-scale RISs.
Keywords:
Reconfigurable intelligent surface
element grouping
spatial correlation
discrete phase shift
high mobility
Journal
IF:
4.4
Papers:
1.2W
Citations:
2.2W
