arXiv · 2608.27837
Enabling Secure Wireless Communications for FARIS-Aided Systems
Abstract
This paper investigates secure downlink transmission assisted by a fluid active reconfigurable intelligent surface (FARIS), which enables both active reflection and dynamic port selection, offering enhanced flexibility for physical-layer security. We formulate a secrecy rate maximization problem that jointly optimizes the transmit beamformer, active reflection coefficients, and fluid port configuration under practical power constraints. To efficiently handle the resulting highly nonconvex problem, we develop a tailored alternating optimization (AO) framework that decomposes the original joint design into tractable subproblems, where each admits an efficient solution while preserving the system constraints, enabling an effective joint optimization of beamforming and FARIS reconfiguration. Numerical results demonstrate that the proposed FARIS-assisted design consistently outperforms the benchmarks. The results further highlight the robustness of FARIS against unfavorable eavesdropping geometries, confirming its potential as a powerful enabler for secure communications in challenging environments.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Hong-Bae Jeon, Yonghwi Kim, Hyung-Joo Moon, Kai-Kit Wong. 2026-08-28. Enabling Secure Wireless Communications for FARIS-Aided Systems. https://arxiv.org/abs/2608.27837
Cite the original work for its findings. Save a collection to share your selection of sources.