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Location-enhanced authentication using the IoT: because you cannot be in two places at once.

, , , , and . ACSAC, page 251-264. ACM, (2016)

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Location-enhanced authentication using the IoT: because you cannot be in two places at once., , , , and . ACSAC, page 251-264. ACM, (2016)Privacy-Preserving Location-Proximity for Mobile Apps., , , and . PDP, page 337-345. IEEE Computer Society, (2017)GlassTube: a lightweight approach to web application integrity., , and . PLAS, page 71-82. ACM, (2013)Location Proximity Attacks Against Mobile Targets: Analytical Bounds and Attacker Strategies., , , , , and . ESORICS (2), volume 11099 of Lecture Notes in Computer Science, page 373-392. Springer, (2018)SecProtobuf: Implicit Message Integrity Provision in Heterogeneous Vehicular Systems., , , , and . VNC, page 190-193. IEEE, (2021)MaxPace: Speed-constrained location queries., , and . CNS, page 136-144. IEEE, (2016)PrivatePool: Privacy-Preserving Ridesharing., , and . CSF, page 276-291. IEEE Computer Society, (2017)BetterTimes - Privacy-Assured Outsourced Multiplications for Additively Homomorphic Encryption on Finite Fields., , and . ProvSec, volume 9451 of Lecture Notes in Computer Science, page 291-309. Springer, (2015)InnerCircle: A parallelizable decentralized privacy-preserving location proximity protocol., , and . PST, page 1-6. IEEE Computer Society, (2015)Idea: Unwinding Based Model-Checking and Testing for Non-Interference on EFSMs., , , and . ESSoS, volume 8978 of Lecture Notes in Computer Science, page 34-42. Springer, (2015)