Johannes Götzfried



Organisationseinheit


Lehrstuhl für Informatik 1 (IT-Sicherheitsinfrastrukturen)
Sonderforschungsbereich/Transregio 89 Invasives Rechnen


Mitarbeit in Forschungsprojekten


(Invasives Rechnen):
SFB/TRR 89: Security in Invasive Computing Systems
Prof. Dr.-Ing. Felix Freiling
(01.07.2014 - 30.06.2018)


Publikationen (Download BibTeX)

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Palutke, R., Neubaum, A., & Götzfried, J. (2019). SEVGuard: Protecting User Mode Applications using Secure Encrypted Virtualization. In SecureComm 2019 Proceedings. Orlando, US: New York City, United States of America: Springer.
Maene, P., Götzfried, J., Müller, T., de Clercq, R., Freiling, F., & Verbauwhede, I. (2018). Atlas: Application Confidentiality in Compromised Embedded Systems. IEEE Transactions on Dependable and Secure Computing. https://dx.doi.org/10.1109/TDSC.2018.2858257
Götzfried, J. (2018). RAM-Schranke: RAM-Verschlüsselung bei AMD und Intel. Hannover: Heise Medien GmbH & Co. KG.
Übler, D., Götzfried, J., & Müller, T. (2018). Secure Remote Computation using Intel SGX. In Sicherheit 2018 (pp. 195-205). Konstanz: Bonn: Köllen Druck+Verlag GmbH.
Lazard, T., Götzfried, J., Müller, T., Santinelli, G., & Lefebvre, V. (2018). TEEshift: Protecting Code Confidentiality by Selectively Shifting Functions into TEEs. In 3rd Workshop on System Software for Trusted Execution. Toronto, ON, Canada: ACM.
Götzfried, J. (2018). Trusted Systems in Untrusted Environments: Protecting against Strong Attackers (Dissertation).
Lefebvre, V., Santinelli, G., Müller, T., & Götzfried, J. (2018). Universal Trusted Execution Environments for Securing SDN/NFV Operations. In SBA Research (Eds.), ARES 2018: International Conference on Availability, Reliability and Security. Hamburg, Germany: Hamburg: ACM.
Götzfried, J., Eckert, M., Schinzel, S., & Müller, T. (2017). Cache Attacks on Intel SGX. In Proceedings of the Tenth European Workshop on System Security. Belgrade, Serbia.
Maene, P., Götzfried, J., de Clercq, R., Müller, T., Freiling, F., & Verbauwhede, I. (2017). Hardware-Based Trusted Computing Architectures for Isolation and Attestation. IEEE Transactions on Computers, 99. https://dx.doi.org/10.1109/TC.2017.2647955
Noorman, J., Van Bulck, J., Muhlberg, J.T., Piessens, F., Maene, P., Preneel, B.,... Freiling, F. (2017). Sancus 2.0: A Low-Cost Security Architecture for IoT Devices. ACM Transactions on Privacy and Security, 20(3). https://dx.doi.org/10.1145/3079763

Zuletzt aktualisiert 2019-01-08 um 23:51