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Physical-layer fingerprinting of LoRa devices using supervised and zero-shot learning.

, , , , , and . WISEC, page 58-63. ACM, (2017)

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FuzzyKey: Comparing Fuzzy Cryptographic Primitives on Resource-Constrained Devices., , , and . CARDIS, volume 13173 of Lecture Notes in Computer Science, page 289-309. Springer, (2021)Symbolon: Enabling Flexible Multi-device-based User Authentication., , , , and . DSC, page 1-12. IEEE, (2022)Ambusher: Exploring the Security of Distributed SDN Controllers Through Protocol State Fuzzing., , , , , and . IEEE Trans. Inf. Forensics Secur., (2024)Dynamic Frequency-Based Fingerprinting Attacks against Modern Sandbox Environments., , , , and . EuroS&P, page 327-344. IEEE, (2024)A Review of Deep Reinforcement Learning in Serverless Computing: Function Scheduling and Resource Auto-Scaling., and . CoRR, (2023)Heimdallr: Fingerprinting SD-WAN Control-Plane Architecture via Encrypted Control Traffic., , , , , , , and . ACSAC, page 949-963. ACM, (2022)A Tale of Two Worlds: Assessing the Vulnerability of Enclave Shielding Runtimes., , , , , and . CCS, page 1741-1758. ACM, (2019)On the Difficulty of Using Patient's Physiological Signals in Cryptographic Protocols., , , and . SACMAT, page 113-122. ACM, (2019)Physical-layer fingerprinting of LoRa devices using supervised and zero-shot learning., , , , , and . WISEC, page 58-63. ACM, (2017)OOBKey: Key Exchange with Implantable Medical Devices Using Out-Of-Band Channels., , , , , , and . ARES, page 191:1-191:13. ACM, (2024)