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2004 | OriginalPaper | Buchkapitel

Low-Power Elliptic Curve Cryptography Using Scaled Modular Arithmetic

verfasst von : E. Öztürk, B. Sunar, E. Savaş

Erschienen in: Cryptographic Hardware and Embedded Systems - CHES 2004

Verlag: Springer Berlin Heidelberg

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We introduce new modulus scaling techniques for transforming a class of primes into special forms which enables efficient arithmetic. The scaling technique may be used to improve multiplication and inversion in finite fields. We present an efficient inversion algorithm that utilizes the structure of scaled modulus. Our inversion algorithm exhibits superior performance to the Euclidean algorithm and lends itself to efficient hardware implementation due to its simplicity. Using the scaled modulus technique and our specialized inversion algorithm we develop an elliptic curve processor architecture. The resulting architecture successfully utilizes redundant representation of elements in GF(p) and provides a low-power, high speed, and small footprint specialized elliptic curve implementation.

Metadaten
Titel
Low-Power Elliptic Curve Cryptography Using Scaled Modular Arithmetic
verfasst von
E. Öztürk
B. Sunar
E. Savaş
Copyright-Jahr
2004
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-540-28632-5_7