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Nils Wisiol
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2020 – today
- 2024
- [i12]Peter Thomassen, Nils Wisiol:
Automatic DNSSEC Bootstrapping Using Authenticated Signals from the Zone's Operator. RFC 9615: 1-12 (2024) - 2023
- [b2]Nils Wisiol:
Modeling Attack Security of Physical Unclonable Functions based on Arbiter PUFs. Springer 2023, ISBN 978-3-031-29206-4, pp. 1-98 - 2022
- [b1]Nils Wisiol:
Modeling attack security of physical unclonable functions based on arbiter PUFs. Technical University of Berlin, Germany, 2022 - [j4]Nils Wisiol, Bipana Thapaliya, Khalid T. Mursi, Jean-Pierre Seifert, Yu Zhuang:
Neural Network Modeling Attacks on Arbiter-PUF-Based Designs. IEEE Trans. Inf. Forensics Secur. 17: 2719-2731 (2022) - [c12]Soundes Marzougui, Nils Wisiol, Patrick Gersch, Juliane Krämer, Jean-Pierre Seifert:
Machine-Learning Side-Channel Attacks on the GALACTICS Constant-Time Implementation of BLISS. ARES 2022: 34:1-34:11 - [c11]Sebastian Neef, Nils Wisiol:
Oh SSH-it, What's My Fingerprint? A Large-Scale Analysis of SSH Host Key Fingerprint Verification Records in the DNS. CANS 2022: 71-88 - [c10]Nils Wisiol, Patrick Gersch, Jean-Pierre Seifert:
Cycle-Accurate Power Side-Channel Analysis Using the ChipWhisperer: A Case Study on Gaussian Sampling. CARDIS 2022: 205-224 - [c9]Nils Wisiol:
Towards Attack Resilient Delay-Based Strong PUFs. HOST 2022: 5-8 - [c8]Anita Aghaie, Amir Moradi, Johannes Tobisch, Nils Wisiol:
Security Analysis of Delay-Based Strong PUFs with Multiple Delay Lines. HOST 2022: 125-128 - [i11]Sebastian Neef, Nils Wisiol:
Oh SSH-it, what's my fingerprint? A Large-Scale Analysis of SSH Host Key Fingerprint Verification Records in the DNS. CoRR abs/2208.08846 (2022) - [i10]Nils Wisiol, Patrick Gersch, Jean-Pierre Seifert:
Cycle-Accurate Power Side-Channel Analysis Using the ChipWhisperer: a Case Study on Gaussian Sampling. IACR Cryptol. ePrint Arch. 2022: 903 (2022) - [i9]Anita Aghaie, Amir Moradi, Johannes Tobisch, Nils Wisiol:
Security Analysis of Delay-Based Strong PUFs with Multiple Delay Lines. IACR Cryptol. ePrint Arch. 2022: 1574 (2022) - 2021
- [c7]Elias Heftrig, Jean-Pierre Seifert, Haya Schulmann, Michael Waidner, Nils Wisiol:
Predictive Cipher-Suite Negotiation for Boosting Deployment of New Ciphers. CCS 2021: 2423-2425 - [i8]Soundes Marzougui, Nils Wisiol, Patrick Gersch, Juliane Krämer, Jean-Pierre Seifert:
Machine-Learning Side-Channel Attacks on the GALACTICS Constant-Time Implementation of BLISS. CoRR abs/2109.09461 (2021) - [i7]Nils Wisiol, Khalid T. Mursi, Jean-Pierre Seifert, Yu Zhuang:
Neural-Network-Based Modeling Attacks on XOR Arbiter PUFs Revisited. IACR Cryptol. ePrint Arch. 2021: 555 (2021) - [i6]Nils Wisiol:
Towards Attack Resilient Arbiter PUF-Based Strong PUFs. IACR Cryptol. ePrint Arch. 2021: 1004 (2021) - 2020
- [j3]Nils Wisiol, Christopher Mühl, Niklas Pirnay, Phuong Ha Nguyen, Marian Margraf, Jean-Pierre Seifert, Marten van Dijk, Ulrich Rührmair:
Splitting the Interpose PUF: A Novel Modeling Attack Strategy. IACR Trans. Cryptogr. Hardw. Embed. Syst. 2020(3): 97-120 (2020) - [c6]Nils Wisiol, Niklas Pirnay:
Short Paper: XOR Arbiter PUFs Have Systematic Response Bias. Financial Cryptography 2020: 50-57
2010 – 2019
- 2019
- [j2]Nils Wisiol, Marian Margraf:
Why attackers lose: design and security analysis of arbitrarily large XOR arbiter PUFs. J. Cryptogr. Eng. 9(3): 221-230 (2019) - [c5]Nils Wisiol, Georg T. Becker, Marian Margraf, Tudor A. A. Soroceanu, Johannes Tobisch, Benjamin Zengin:
Breaking the Lightweight Secure PUF: Understanding the Relation of Input Transformations and Machine Learning Resistance. CARDIS 2019: 40-54 - [c4]Nils Wisiol:
XOR Arbiter PUFs: an Empirical Approach to Input Transformations. Krypto-Tag 2019 - [c3]Nils Wisiol:
Towards Secure Strong PUFs. Krypto-Tag 2019 - [i5]Nils Wisiol, Georg T. Becker, Marian Margraf, Tudor A. A. Soroceanu, Johannes Tobisch, Benjamin Zengin:
Breaking the Lightweight Secure PUF: Understanding the Relation of Input Transformations and Machine Learning Resistance. IACR Cryptol. ePrint Arch. 2019: 799 (2019) - [i4]Nils Wisiol, Niklas Pirnay:
Short Paper: XOR Arbiter PUFs have Systematic Response Bias. IACR Cryptol. ePrint Arch. 2019: 1091 (2019) - [i3]Nils Wisiol, Christopher Mühl, Niklas Pirnay, Phuong Ha Nguyen, Marian Margraf, Jean-Pierre Seifert, Marten van Dijk, Ulrich Rührmair:
Splitting the Interpose PUF: A Novel Modeling Attack Strategy. IACR Cryptol. ePrint Arch. 2019: 1473 (2019) - 2018
- [c2]Nils Wisiol, Marian Margraf:
Attacking RO-PUFs with Enhanced Challenge-Response Pairs. SEC 2018: 122-126 - [i2]Nils Wisiol, Marian Margraf:
Attacking RO-PUFs with Enhanced Challenge-Response Pairs. IACR Cryptol. ePrint Arch. 2018: 862 (2018) - 2017
- [c1]Nils Wisiol, Christoph Graebnitz, Marian Margraf, Manuel Oswald, Tudor A. A. Soroceanu, Benjamin Zengin:
Why Attackers Lose: Design and Security Analysis of Arbitrarily Large XOR Arbiter PUFs. PROOFS 2017: 68-83 - [i1]Nils Wisiol, Christoph Graebnitz, Marian Margraf, Manuel Oswald, Tudor A. A. Soroceanu, Benjamin Zengin:
Why Attackers Lose: Design and Security Analysis of Arbitrarily Large XOR Arbiter PUFs. IACR Cryptol. ePrint Arch. 2017: 932 (2017) - 2014
- [j1]Christian Glaßer, Andrew Hughes, Alan L. Selman, Nils Wisiol:
Disjoint NP-Pairs and Propositional Proof Systems. SIGACT News 45(4): 59-75 (2014)
Coauthor Index
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