Sensing-enabled Secure Rotatable Array System Enhanced by Multi-Layer Transmitting RIS

Fuente: arXiv
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Auteurs principaux: Li, Maolin, Shu, Feng, Chen, Minghao, Pan, Cunhua, Zhou, Fuhui, Wu, Yongpeng, Yang, Liang
Format: Preprint
Publié: 2025
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author Li, Maolin
Shu, Feng
Chen, Minghao
Pan, Cunhua
Zhou, Fuhui
Wu, Yongpeng
Yang, Liang
author_facet Li, Maolin
Shu, Feng
Chen, Minghao
Pan, Cunhua
Zhou, Fuhui
Wu, Yongpeng
Yang, Liang
contents Programmable metasurfaces and adjustable antennas are promising technologies. The security of a rotatable array system is investigated in this paper. A dual-base-station (BS) architecture is adopted, in which the BSs collaboratively perform integrated sensing of the eavesdropper (the target) and communication tasks. To address the security challenge when the sensing target is located on the main communication link, the problem of maximizing the secrecy rate (SR) under sensing signal-to-interference-plus-noise ratio requirements and discrete constraints is formulated. This problem involves the joint optimization of the array pose, the antenna distribution on the array surface, the multi-layer transmitting RIS phase matrices, and the beamforming matrices, which is non-convex. To solve this challenge, an two-stage online algorithm based on the generalized Rayleigh quotient and an offline algorithm based on the Multi-Agent Deep Deterministic Policy Gradient are proposed. Simulation results validate the effectiveness of the proposed algorithms. Compared to conventional schemes without array pose adjustment, the proposed approach achieves approximately 22\% improvement in SR. Furthermore, array rotation provides higher performance gains than position changes.
format Preprint
id arxiv_https___arxiv_org_abs_2511_13336
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Sensing-enabled Secure Rotatable Array System Enhanced by Multi-Layer Transmitting RIS
Li, Maolin
Shu, Feng
Chen, Minghao
Pan, Cunhua
Zhou, Fuhui
Wu, Yongpeng
Yang, Liang
Signal Processing
Programmable metasurfaces and adjustable antennas are promising technologies. The security of a rotatable array system is investigated in this paper. A dual-base-station (BS) architecture is adopted, in which the BSs collaboratively perform integrated sensing of the eavesdropper (the target) and communication tasks. To address the security challenge when the sensing target is located on the main communication link, the problem of maximizing the secrecy rate (SR) under sensing signal-to-interference-plus-noise ratio requirements and discrete constraints is formulated. This problem involves the joint optimization of the array pose, the antenna distribution on the array surface, the multi-layer transmitting RIS phase matrices, and the beamforming matrices, which is non-convex. To solve this challenge, an two-stage online algorithm based on the generalized Rayleigh quotient and an offline algorithm based on the Multi-Agent Deep Deterministic Policy Gradient are proposed. Simulation results validate the effectiveness of the proposed algorithms. Compared to conventional schemes without array pose adjustment, the proposed approach achieves approximately 22\% improvement in SR. Furthermore, array rotation provides higher performance gains than position changes.
title Sensing-enabled Secure Rotatable Array System Enhanced by Multi-Layer Transmitting RIS
topic Signal Processing
url https://arxiv.org/abs/2511.13336