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Protecting Legitimate SEI Security Approaches from Phase-Based Obfuscation Attacks.

, , , and . ICC, page 1425-1431. IEEE, (2023)

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An Analysis of Signal Energy Impacts and Threats to Deep Learning Based SEI., , , and . ICC, page 2077-2083. IEEE, (2022)RF Fingerprint-based Identity Verification in the Presence of an SEI Mimicking Adversary., , , , and . WiMob, page 438-444. IEEE, (2023)Protecting Legitimate SEI Security Approaches from Phase-Based Obfuscation Attacks., , , and . ICC, page 1425-1431. IEEE, (2023)Identification of OFDM-Based Radios Under Rayleigh Fading Using RF-DNA and Deep Learning., , and . IEEE Access, (2021)CNN-based Emitter ID-Verification and Rogue Emitter Rejection for IoT Networks using Entropy-Informed RF-DNA Fingerprints., , , , , and . MILCOM, page 377-384. IEEE, (2023)An Assessment of Entropy-Based Data Reduction for SEI Within IoT Applications., , , , and . MILCOM, page 385-392. IEEE, (2022)Assessing the Presence of Intentional Waveform Structure In Preamble-based SEI., , , and . GLOBECOM, page 4129-4135. IEEE, (2022)Assessing Time Offset and Classifier Impacts on Preamble-based Cross-Collection SEI., , , and . CCNC, page 180-187. IEEE, (2024)RF-DNA Fingerprint Classification of OFDM Signals Using a Rayleigh Fading Channel Model., , , and . WCNC, page 1-7. IEEE, (2019)Enhancing internet of things security using entropy-informed RF-DNA fingerprint learning from Gabor-based images., , , , and . EURASIP J. Inf. Secur., 2024 (1): 27 (December 2024)