Profile Page Prof. Dr. Katerina Mitrokotsa

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Name Katerina Mitrokotsa
Title Prof. Dr.
Function
Institute/School SCS - School of Computer Science
Address School of Computer Science
Office 33-501
Rosenbergstrasse 51
9000 St. Gallen
Schweiz
Email address katerina.mitrokotsa@unisg.ch
Phone +41 71 224 78 61
Homepage https://cybersecurity.unisg.ch
Twitter https://twitter.com/mitrokat
Google Scholar https://scholar.google.com/citations?user=tvBxAZQAAAAJ&hl=en&oi=ao
Main Focuses The aim of our group is to safeguard communication technologies in order to improve their reliability and performance and thus our quality of life. Our research interests lie mostly in the area of applied cryptography, provable security as well as network and information security. More specifically, we are interested in the design of provably secure cryptographic protocols that can be employed for reliable authentication and cloud-assisted computing, while providing strong privacy guarantees. We are particularly focusing on resource-constrained devices (Internet of Things), RFID systems and wireless sensor networks as well as in intrusion detection and response mechanisms in wired and wireless networks.
Teaching Activities
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Latest Additions (all)

  1. Project Mitrokotsa, Prof. Dr. Aikaterini; Ernst, MSc. Johannes & Pasquereau, MSc. Adrien Training in Secure and Privacy-preserving biometrics - Early Training Networks [fundamental research project] Official URL .
  2. Item Liang, Bei; Banegas, Gustavo & Mitrokotsa, Aikaterini (2020) Statically Aggregate Verifiable Random Functions and Application to E-Lottery. Cryptography, 4 (4). 37. [img]
  3. Item Ledwaba, Lehlogonolo; Hancke, Gerhard P.; Mitrokotsa, Aikaterini & Isaac, Sherrin J.: A Delegated Proof of Proximity Scheme for Industrial Internet of Things Consensus. 2020. - The 46th Annual Conference of the {IEEE} Industrial Electronics Society, {IECON} 2020. - Singapore. [img]
  4. Item Tsaloli, Georgia; Banegas, Gustavo & Mitrokotsa, Katerina (2020) Practical and Provably Secure Distributed Aggregation: Verifiable Additive Homomorphic Secret Sharing. Cryptography, 4 (3). 25-47. [img]
  5. Item Fiore, Dario; Mitrokotsa, Katerina; Nizzardo, Luca & Pagnin, Elena (2019) Multi-key homomorphic authenticators. IET Information Security, 13 (6). 618-638. [img]
  6. Item Liang, Bei & Mitrokotsa, Katerina (2019) Decentralised Functional Signatures. Mobile Networks and Applications, 24 934-946. [img]
  7. Item Tsaloli, Georgia & Mitrokotsa, Aikaterini: Differential Privacy meets Verifiable Computation: Achieving Strong Privacy and Integrity Guarantees. 2019. - Proceedings of the 16th International Joint Conference on e-Business and Telecommunications, ICETE 2019 - Volume 2: SECRYPT, Prague, Czech Republic, July 26-28, 2019. [img]
  8. Item Tsaloli, Georgia & Mitrokotsa, Aikaterini: Sum It Up: Verifiable Additive Homomorphic Secret Sharing. 2019. - Information Security and Cryptology - ICISC 2019 - 22nd International Conference, Seoul, South Korea, December 4-6, 2019, Revised Selected Papers. [img]
  9. Item Brunetta, Carlo; Liang, Bei & Mitrokotsa, Aikaterini (2018) Lattice-Based Simulatable VRFs: Challenges and Future Directions. Journal of Internet Services and Information Security (JISIS), 8 (4). 57-69. [img]
  10. Item Hu, Qiao; Zhang, Jingyi; Mitrokotsa, Aikaterini & Hancke, Gerhard (2018) Tangible security: Survey of methods supporting secure ad-hoc connects of edge devices with physical context. Computers & Security, 78 281-300. [img]
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