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Lattice-Based Signatures: Optimization and Implementation on Reconfigurable Hardware.

Authors :
Guneysu, Tim
Lyubashevsky, Vadim
Poppelmann, Thomas
Source :
IEEE Transactions on Computers. Jul2015, Vol. 64 Issue 7, p1954-1967. 14p.
Publication Year :
2015

Abstract

Nearly all of the currently used signature schemes, such as RSA or DSA, are based either on the factoring assumption or the presumed intractability of the discrete logarithm problem. As a consequence, the appearance of quantum computers or algorithmic advances on these problems may lead to the unpleasant situation that a large number of today’s schemes will most likely need to be replaced with more secure alternatives. In this work we present such an alternative—an efficient signature scheme whose security is derived from the hardness of lattice problems. It is based on recent theoretical advances in lattice-based cryptography and is highly optimized for practicability and use in embedded systems. The public and secret keys are roughly $1.5$ <alternatives><inline-graphic xlink:type="simple" xlink:href="poeppelmann-ieq1-2346177.gif"/></alternatives>  kB and $0.3$<alternatives> <inline-graphic xlink:type="simple" xlink:href="poeppelmann-ieq2-2346177.gif"/></alternatives> kB long, while the signature size is approximately $1.1$<alternatives> <inline-graphic xlink:type="simple" xlink:href="poeppelmann-ieq3-2346177.gif"/></alternatives> kB for a security level of around $80$<alternatives> <inline-graphic xlink:type="simple" xlink:href="poeppelmann-ieq4-2346177.gif"/></alternatives> bits. We provide implementation results on reconfigurable hardware (Spartan/Virtex-6) and demonstrate that the scheme is scalable, has low area consumption, and even outperforms classical schemes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00189340
Volume :
64
Issue :
7
Database :
Academic Search Index
Journal :
IEEE Transactions on Computers
Publication Type :
Academic Journal
Accession number :
103139028
Full Text :
https://doi.org/10.1109/TC.2014.2346177