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Preserving Incumbent Users' Privacy in Exclusion-Zone-Based Spectrum Access Systems.

, , , , , , and . ICDCS, page 2486-2493. IEEE Computer Society, (2017)

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Location spoofing attack and its countermeasures in database-driven cognitive radio networks., , and . CNS, page 202-210. IEEE, (2014)Stars Can Tell: A Robust Method to Defend against GPS Spoofing Attacks using Off-the-shelf Chipset., , , , , , , , and . USENIX Security Symposium, page 3935-3952. USENIX Association, (2021)MadeCR: Correlation-based malware detection for cognitive radio., , , and . INFOCOM, page 639-647. IEEE, (2015)Incentivizing spectrum sensing in database-driven dynamic spectrum sharing., , , , , , and . INFOCOM, page 1-9. IEEE, (2016)Preserving incumbent users' privacy in exclusion-zone-based spectrum access systems: poster., , , and . MobiCom, page 473-474. ACM, (2016)P2-SAS: preserving users' privacy in centralized dynamic spectrum access systems., , , , , , , and . MobiHoc, page 321-330. ACM, (2016)Location robustness in database-driven white spaces network., , and . DySPAN, page 354-357. IEEE, (2014)P2-SAS: Privacy-Preserving Centralized Dynamic Spectrum Access System., , , , , , and . IEEE J. Sel. Areas Commun., 35 (1): 173-187 (2017)Poster: Location Verification and Recovery for Mobile In-Vehicle Applications., , , and . MobiSys, page 497. ACM, (2015)Poster: Privacy-Preserving Server-Driven Dynamic Spectrum Access System., , and . MobiCom, page 218-220. ACM, (2015)