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Maximizing privacy and security of collaborative indoor positioning using zero-knowledge proofs.

, , , and . Internet Things, (July 2023)

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Real-world Deployment of Privacy-Enhancing Authentication System using Attribute-based Credentials., , and . ARES, page 141:1-141:9. ACM, (2022)Maximizing privacy and security of collaborative indoor positioning using zero-knowledge proofs., , , and . Internet Things, (July 2023)Implementation of Revocable Keyed-Verification Anonymous Credentials on Java Card., , and . ARES, page 140:1-140:8. ACM, (2022)Threshold Signature for Privacy-Preserving Blockchain., , , and . BPM (Blockchain and RPA Forum), volume 459 of Lecture Notes in Business Information Processing, page 100-115. Springer, (2022)Privacy-Enhancing Technologies and Privacy-Enhancing Cryptography for Wearables.. Brno University of Technology, Czech Republic, (2024)base-search.net (ftunivtbrno:oai:https://dspace.vut.cz:11012/245330).Secret Sharing-based Authenticated Key Agreement Protocol., , , , and . ARES, page 152:1-152:10. ACM, (2021)Anonymous Attribute-based Credentials in Collaborative Indoor Positioning Systems., , , and . SECRYPT, page 791-797. SCITEPRESS, (2021)Cryptographic Protocols for Confidentiality, Authenticity and Privacy on Constrained Devices., , , and . ICUMT, page 87-92. IEEE, (2020)Privacy ABCs: Now Ready for Your Wallets!, , , and . PerCom Workshops, page 686-691. IEEE, (2021)