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Meilof Veeningen
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2010 – 2019
- 2018
- [c13]Peter Sebastian Nordholt, Meilof Veeningen:
Minimising Communication in Honest-Majority MPC by Batchwise Multiplication Verification. ACNS 2018: 321-339 - [c12]Meilof Veeningen, Supriyo Chatterjea, Anna Zsófia Horváth, Gerald Spindler, Eric Boersma, Peter J. van der Spek, Onno van der Galiën, Job Gutteling, Wessel Kraaij, Thijs Veugen:
Enabling Analytics on Sensitive Medical Data with Secure Multi-Party Computation. MIE 2018: 76-80 - [i6]Peter Sebastian Nordholt, Meilof Veeningen:
Minimising Communication in Honest-Majority MPC by Batchwise Multiplication Verification. IACR Cryptol. ePrint Arch. 2018: 474 (2018) - 2017
- [c11]Meilof Veeningen:
Pinocchio-Based Adaptive zk-SNARKs and Secure/Correct Adaptive Function Evaluation. AFRICACRYPT 2017: 21-39 - [i5]Meilof Veeningen:
Pinocchio-Based Adaptive zk-SNARKs and Secure/Correct Adaptive Function Evaluation. IACR Cryptol. ePrint Arch. 2017: 13 (2017) - 2016
- [c10]Berry Schoenmakers, Meilof Veeningen, Niels de Vreede:
Trinocchio: Privacy-Preserving Outsourcing by Distributed Verifiable Computation. ACNS 2016: 346-366 - [c9]Sebastiaan de Hoogh, Berry Schoenmakers, Meilof Veeningen:
Certificate Validation in Secure Computation and Its Use in Verifiable Linear Programming. AFRICACRYPT 2016: 265-284 - 2015
- [c8]Berry Schoenmakers, Meilof Veeningen:
Universally Verifiable Multiparty Computation from Threshold Homomorphic Cryptosystems. ACNS 2015: 3-22 - [c7]Daniel Pletea, Saeed Sedghi, Meilof Veeningen, Milan Petkovic:
Secure distributed key generation in attribute based encryption systems. ICITST 2015: 103-107 - [i4]Berry Schoenmakers, Meilof Veeningen:
Universally Verifiable Multiparty Computation from Threshold Homomorphic Cryptosystems. IACR Cryptol. ePrint Arch. 2015: 58 (2015) - [i3]Berry Schoenmakers, Meilof Veeningen:
Guaranteeing Correctness in Privacy-Friendly Outsourcing by Certificate Validation. IACR Cryptol. ePrint Arch. 2015: 339 (2015) - [i2]Berry Schoenmakers, Meilof Veeningen, Niels de Vreede:
Trinocchio: Privacy-Friendly Outsourcing by Distributed Verifiable Computation. IACR Cryptol. ePrint Arch. 2015: 480 (2015) - 2014
- [j1]Meilof Veeningen, Benne de Weger, Nicola Zannone:
Data minimisation in communication protocols: a formal analysis framework and application to identity management. Int. J. Inf. Sec. 13(6): 529-569 (2014) - 2013
- [c6]Meilof Veeningen, Mayla Brusò, Jerry den Hartog, Nicola Zannone:
TRIPLEX: verifying data minimisation in communication systems. CCS 2013: 1415-1418 - [c5]Meilof Veeningen, Antonio Piepoli, Nicola Zannone:
Are On-Line Personae Really Unlinkable? DPM/SETOP 2013: 369-379 - [c4]Meilof Veeningen, Benne de Weger, Nicola Zannone:
Symbolic Privacy Analysis through Linkability and Detectability. IFIPTM 2013: 1-16 - 2012
- [c3]Meilof Veeningen, Benne de Weger, Nicola Zannone:
Formal Modelling of (De)Pseudonymisation: A Case Study in Health Care Privacy. STM 2012: 145-160 - [i1]Meilof Veeningen, Benne de Weger, Nicola Zannone:
Data Minimisation in Communication Protocols: A Formal Analysis Framework and Application to Identity Management. CoRR abs/1206.7111 (2012) - 2011
- [c2]Meilof Veeningen, Benne de Weger, Nicola Zannone:
Formal Privacy Analysis of Communication Protocols for Identity Management. ICISS 2011: 235-249 - 2010
- [c1]Meilof Veeningen, Benne de Weger, Nicola Zannone:
Modeling Identity-Related Properties and Their Privacy Strength. Formal Aspects in Security and Trust 2010: 126-140
Coauthor Index
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