Publication: Energy-efficient encoding by measurement-based power consumption model for RIS-assisted communication systems
Program
KU-Authors
KU Authors
Co-Authors
Sang, J.
Li, X.
Tang, W.
Jin, S.
Editor & Affiliation
Compiler & Affiliation
Translator
Other Contributor
Date
Language
eng
Embargo Status
N/A
Journal Title
Journal ISSN
Volume Title
Alternative Title
Abstract
Reconfigurable intelligent surfaces (RISs) with the capability of nearly passive beamforming, have recently sparked considerable interests. This paper presents an energy-efficient discrete phase encoding method for RIS-assisted communications, which utilizes a measurement-based RIS power consumption model and considers a trade-off between the power consumption and beamforming gain. Firstly, based on the beamforming gain and power consumption models, an energy-efficient encoding optimization problem under a quality-of-service constraint is formulated for RIS-assisted systems. Subsequently, inspired by the uniform phase quantization (UPQ), the non-uniform phase quantization (NUPQ) is proposed and explained. Following the guideline of NUPQ, a phase encoding method is proposed with a linear complexity, to effectively improve the RIS energy efficiency. Simulation results verify the more favorable performance of the proposed method in terms of the RIS power consumption and energy efficiency. Furthermore, a field trial at 35 GHz validates the application performance of the proposed method in reality.
Source
Publisher
IEEE
Subject
Physical sciences, Engineering, Electrical and electronic engineering, Media technology
Citation
Has Part
Source
2025 19Th European Conference on Antennas and Propagation (Eucap)
Book Series Title
Edition
DOI
10.23919/eucap63536.2025.10999386
item.page.datauri
Link
Rights
N/A
Copyrights Note
Creative Commons license
Except where otherwised noted, this item's license is described as N/A
