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Antonio de la Piedra
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2020 – today
- 2023
- [c12]Antonio de la Piedra, Marloes Venema, Greg Alpár:
ACABELLA: Automated (Crypt)analysis of Attribute-Based Encryption Leveraging Linear Algebra. CCS 2023: 3269-3283 - [i8]Antonio de la Piedra, Marloes Venema, Greg Alpár:
ACABELLA: Automated (Crypt)analysis of Attribute-Based Encryption Leveraging Linear Algebra. IACR Cryptol. ePrint Arch. 2023: 1274 (2023) - 2022
- [j4]Antonio de la Piedra, Marloes Venema, Greg Alpár:
ABE Squared: Accurately Benchmarking Efficiency of Attribute-Based Encryption. IACR Trans. Cryptogr. Hardw. Embed. Syst. 2022(2): 192-239 (2022) - [i7]Antonio de la Piedra, Marloes Venema, Greg Alpár:
ABE Squared: Accurately Benchmarking Efficiency of Attribute-Based Encryption. IACR Cryptol. ePrint Arch. 2022: 38 (2022) - 2020
- [c11]Antonio de la Piedra, Raphaël Collado:
Protection Profile Bricks for Secure IoT Devices. IoTaIS 2020: 8-13
2010 – 2019
- 2016
- [c10]Wouter de Groot, Kostas Papagiannopoulos, Antonio de la Piedra, Erik Schneider, Lejla Batina:
Bitsliced Masking and ARM: Friends or Foes? LightSec 2016: 91-109 - [i6]Antonio de la Piedra:
Beyond the selective disclosure of ABCs on RAM-constrained devices. IACR Cryptol. ePrint Arch. 2016: 31 (2016) - [i5]Wouter de Groot, Kostas Papagiannopoulos, Antonio de la Piedra, Erik Schneider, Lejla Batina:
Bitsliced Masking and ARM: Friends or Foes? IACR Cryptol. ePrint Arch. 2016: 946 (2016) - 2015
- [c9]Antonio de la Piedra:
Efficient Implementation of AND, OR and NOT Operators for ABCs. INTRUST 2015: 183-199 - [i4]Antonio de la Piedra:
Efficient implementation of AND, OR and NOT operators for ABCs. IACR Cryptol. ePrint Arch. 2015: 1117 (2015) - 2014
- [c8]Antonio de la Piedra, Jaap-Henk Hoepman, Pim Vullers:
Towards a Full-Featured Implementation of Attribute Based Credentials on Smart Cards. CANS 2014: 270-289 - [c7]Lejla Batina, Domagoj Jakobovic, Nele Mentens, Stjepan Picek, Antonio de la Piedra, Dominik Sisejkovic:
S-box Pipelining Using Genetic Algorithms for High-Throughput AES Implementations: How Fast Can We Go? INDOCRYPT 2014: 322-337 - [i3]Antonio de la Piedra, Jaap-Henk Hoepman, Pim Vullers:
Towards a Full-Featured Implementation of Attribute Based Credentials on Smart Cards. IACR Cryptol. ePrint Arch. 2014: 684 (2014) - [i2]Antonio de la Piedra:
Integration of hardware tokens in the Idemix library. IACR Cryptol. ePrint Arch. 2014: 691 (2014) - [i1]Lejla Batina, Domagoj Jakobovic, Nele Mentens, Stjepan Picek, Antonio de la Piedra, Dominik Sisejkovic:
S-box pipelining using genetic algorithms for high-throughput AES implementations: How fast can we go? IACR Cryptol. ePrint Arch. 2014: 734 (2014) - 2013
- [j3]Antonio de la Piedra, An Braeken, Abdellah Touhafi, Karel Wouters:
Secure event logging in sensor networks. Comput. Math. Appl. 65(5): 762-773 (2013) - [j2]Antonio de la Piedra, An Braeken, Abdellah Touhafi:
Extending the IEEE 802.15.4 Security Suite with a Compact Implementation of the NIST P-192/B-163 Elliptic Curves. Sensors 13(8): 9704-9728 (2013) - [c6]Antonio de la Piedra, Francisco Benitez-Capistros, Federico Domínguez, Abdellah Touhafi:
Wireless sensor networks for environmental research: A survey on limitations and challenges. EUROCON 2013: 267-274 - [c5]Antonio de la Piedra, An Braeken, Abdellah Touhafi:
A performance comparison study of ECC and AES in commercial and research sensor nodes. EUROCON 2013: 347-354 - [c4]Antonio de la Piedra, Abdellah Touhafi, An Braeken:
Compact implementation of CCM and GCM modes of AES using DSP blocks. FPL 2013: 1-4 - [c3]Antonio de la Piedra, An Braeken, Abdellah Touhafi:
Leveraging the DSP48E1 block in lightweight cryptographic implementations. Healthcom 2013: 238-242 - 2012
- [j1]Antonio de la Piedra, An Braeken, Abdellah Touhafi:
Sensor Systems Based on FPGAs and Their Applications: A Survey. Sensors 12(9): 12235-12264 (2012) - 2011
- [c2]An Braeken, Antonio de la Piedra, Karel Wouters:
Secure Event Logging in Sensor Networks. EuroPKI 2011: 194-208 - [c1]Antonio de la Piedra, Abdellah Touhafi, Gianluca Cornetta:
Cryptographic accelerator for 802.15.4 transceivers with key agreement engine based on Montgomery arithmetic. SCVT 2011: 1-5
Coauthor Index
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