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A Compact Architecture for Montgomery Elliptic Curve Scalar Multiplication Processor.

Authors :
Hutchison, David
Kanade, Takeo
Kittler, Josef
Kleinberg, Jon M.
Mattern, Friedemann
Mitchell, John C.
Naor, Moni
Nierstrasz, Oscar
Pandu Rangan, C.
Steffen, Bernhard
Sudan, Madhu
Terzopoulos, Demetri
Tygar, Doug
Vardi, Moshe Y.
Weikum, Gerhard
Sehun Kim
Yung, Moti
Hyung-Woo Lee
Yong Ki Lee
Verbauwhede, Ingrid
Source :
Information Security Applications (978-3-540-77534-8); 2008, p115-127, 13p
Publication Year :
2008

Abstract

We propose a compact architecture of a Montgomery elliptic curve scalar multiplier in a projective coordinate system over GF(2m). To minimize the gate area of the architecture, we use the common Z projective coordinate system where a common Z value is kept for two elliptic curve points during the calculations, which results in one register reduction. In addition, by reusing the registers we are able to reduce two more registers. Therefore, we reduce the number of registers required for elliptic curve processor from 9 to 6 (a 33%). Moreover, a unidirectional circular shift register file reduces the complexity of the register file, resulting in a further 17% reduction of total gate area in our design. As a result, the total gate area is 13.2k gates with 314k cycles which is the smallest compared to the previous works. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISBNs :
9783540775348
Database :
Complementary Index
Journal :
Information Security Applications (978-3-540-77534-8)
Publication Type :
Book
Accession number :
34229121
Full Text :
https://doi.org/10.1007/978-3-540-77535-5_9