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Physical Layer Authentication Utilizing Carrier Frequency Offset in Dynamic MIMO Systems.

, and . NaNA, page 16-21. IEEE, (2020)

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Lightweight Tag-Based PHY-Layer Authentication for IoT Devices in Smart Cities., , , , and . IEEE Internet Things J., 7 (5): 3977-3990 (2020)Exploiting Carrier Frequency Offset and Phase Noise for Physical Layer Authentication in UAV-Aided Communication Systems., , , , and . IEEE Trans. Commun., 72 (8): 4708-4724 (August 2024)On the Applicability of Multi-Characteristics for the Continuous Authentication in IIoT Scenarios., , and . NaNA, page 200-205. IEEE, (2021)Physical layer authentication in MIMO systems: a carrier frequency offset approach., , , , and . Wirel. Networks, 28 (5): 1909-1921 (2022)PEPEC: Precomputed ECC Points Embedded in Certificates and Verified by CT Log Servers., , , , , and . ACNS Workshops, volume 13285 of Lecture Notes in Computer Science, page 447-460. Springer, (2022)Enhancing PHY-Layer Authentication in RIS-Assisted IoT Systems With Cascaded Channel Features., , , and . IEEE Internet Things J., 11 (14): 24984-24997 (July 2024)PHY-Layer Authentication with Hardware Impairments in UAV-Aided Communication Systems., , , and . NaNA, page 18-22. IEEE, (2023)Physical Layer Authentication Using MmWave Channel State Information., , and . NaNA, page 30-33. IEEE, (2021)Physical Layer Authentication Utilizing Carrier Frequency Offset in Dynamic MIMO Systems., and . NaNA, page 16-21. IEEE, (2020)On the Applicability of Users' Operation-action Characteristics for the Continuous Authentication in IIoT Scenarios., , and . NaNA, page 124-129. IEEE, (2020)