TY - GEN
T1 - Secrecy Analysis of Pinching-Antenna Systems
AU - Badarneh, Osamah S.
AU - Silva, Hugerles S.
AU - Ghanbari, Meysam
AU - Al-Badarneh, Yazan H.
AU - Khattab, Tamer M.
AU - Hasna, Mazen O.
AU - Qaraqe, Khalid A.
N1 - Publisher Copyright:
© 2026 IEEE.
PY - 2026
Y1 - 2026
N2 - In this paper, we investigate the performance of physical-layer security of a pinching-antenna system on a lossless dielectric waveguide. In particular, the system uses a single pinching-antenna to convey confidential information from a base station to a legitimate destination equipped with a single antenna, while an eavesdropper, also equipped with a single antenna, attempts to decode the transmitted information. As such, the performance of the pinching-antenna system is evaluated in terms of average secrecy capacity, strictly positive secrecy capacity, and secrecy outage probability. To this end, accurate mathematical expressions for the aforementioned performance metrics are provided. To validate the analysis, the analytical results are numerically evaluated and further validated through MonteCarlo simulations. The results demonstrate that secrecy capacity between the base station and the legitimate destination improves when the height of the pinching-antenna placed closer to the destination. Additionally, the performance can be improved when the eavesdropper's location over a rectangular area increases.
AB - In this paper, we investigate the performance of physical-layer security of a pinching-antenna system on a lossless dielectric waveguide. In particular, the system uses a single pinching-antenna to convey confidential information from a base station to a legitimate destination equipped with a single antenna, while an eavesdropper, also equipped with a single antenna, attempts to decode the transmitted information. As such, the performance of the pinching-antenna system is evaluated in terms of average secrecy capacity, strictly positive secrecy capacity, and secrecy outage probability. To this end, accurate mathematical expressions for the aforementioned performance metrics are provided. To validate the analysis, the analytical results are numerically evaluated and further validated through MonteCarlo simulations. The results demonstrate that secrecy capacity between the base station and the legitimate destination improves when the height of the pinching-antenna placed closer to the destination. Additionally, the performance can be improved when the eavesdropper's location over a rectangular area increases.
KW - 6G communications
KW - Dielectric waveguide
KW - flexible-antenna
KW - physicallayer security
UR - https://www.scopus.com/pages/publications/105041783764
U2 - 10.1109/MENACOMM69507.2026.11532869
DO - 10.1109/MENACOMM69507.2026.11532869
M3 - Conference contribution
AN - SCOPUS:105041783764
T3 - 2026 Middle East and North Africa Communications Conference, MENACOMM 2026
BT - 2026 Middle East and North Africa Communications Conference, MENACOMM 2026
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 6th Middle East and North Africa Communications Conference, MENACOMM 2026
Y2 - 12 May 2026 through 14 May 2026
ER -