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Performance Analysis of Fluid Reconfigurable Intelligent Surface Over Covert Communications

  • University of Granada
  • University College London

Tutkimustuotos: Artikkeli kirjassa/konferenssijulkaisussaConference article in proceedingsScientificvertaisarvioitu

2 Sitaatiot (Scopus)

Abstrakti

This paper investigates the impact of the recently proposed concept of fluid reconfigurable intelligent surfaces (FRIS) on covert communications. Specifically, we consider a communication scenario where a legitimate transmitter aims to covertly deliver information to its intended receiver through a planar FRIS, while an adversary attempts to detect whether any transmission is occurring. In this context, we analyze the false alarm (FA) and missed detection (MD) probabilities, and derive a closed-form expression for the covertness outage probability (COP). Furthermore, the success probability is characterized under the optimal detection threshold, providing new insights into the trade-off between covertness and reliable transmission. Numerical results reveal that FRIS provides a clear advantage over fixed-position RIS at low-to-moderate transmit powers by improving reliability and enhancing covertness, while at very high power levels, fixed-position RIS may sustain slightly higher success probability due to reduced leakage toward the adversary.

AlkuperäiskieliEnglanti
OtsikkoProceedings of the 4th International Conference on 6G Networking, 6GNet 2025
ToimittajatDinh-Thuy Phan-Hui, Rui L. Aguiar, Emmanuel Dotaro, Toktam Mahmoodi, Stefano Secci
KustantajaIEEE
Sivut82-86
Sivumäärä5
ISBN (elektroninen)979-8-3315-5141-4
DOI - pysyväislinkit
TilaJulkaistu - 2025
OKM-julkaisutyyppiA4 Artikkeli konferenssijulkaisussa
TapahtumaInternational Conference on 6G Networking - Paris, Ranska
Kesto: 17 jouluk. 202519 jouluk. 2025

Julkaisusarja

NimiProceedings of the 4th International Conference on 6G Networking, 6GNet 2025

Conference

ConferenceInternational Conference on 6G Networking
Lyhennettä6GNet
Maa/AlueRanska
KaupunkiParis
Ajanjakso17/12/202519/12/2025

Rahoitus

The work of F. Rostami Ghadi is supported by the European Union s Horizon 2022 Research and Innovation Programme under Marie Sklodowska-Curie Grant No. 101107993. The work of K. K. Wong is supported by the Engineering and Physical Sciences Research Council (EPSRC) under grant EP/W026813/1. The work of M. Kaveh and R. Jantti has received funding from the SNS JU un-der the EU s Horizon Europe Research and Innovation Programme under Grant Agreement No. 101192113 (Ambient-6G). The work of F.J. Lopez-Martinez is supported by grant PID2023-149975OB-I00 (COSTUME) funded by MICIU/AEI/10.13039/501100011033 and FEDER/UE.

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