DocumentCode
1756349
Title
Efficient Evaluation of EM Radiation Associated With Information Leakage From Cryptographic Devices
Author
Hayashi, Yasuhiro ; Homma, Noriyasu ; Mizuki, Takaaki ; Shimada, Hiroki ; Aoki, Toyohiro ; Sone, Hidekazu ; Sauvage, L. ; Danger, J.L.
Author_Institution
Dept. of Electr. & Commun. Eng., Tohoku Univ., Sendai, Japan
Volume
55
Issue
3
fYear
2013
fDate
41426
Firstpage
555
Lastpage
563
Abstract
This paper presents an efficient map generation technique for evaluating the intensity of electromagnetic (EM) radiation associated with information leakage for cryptographic devices at the printed circuit board level. First, we investigate the relation between the intensity of the overall EM radiation and the intensity of EM information leakage on a cryptographic device. For this purpose, we prepare a map of the magnetic field on the device by using an EM scanning system, after which we perform correlation electromagnetic analysis (CEMA) at all measurement points on the device, including points above the cryptographic module. The examined device is a standard evaluation board for cryptographic modules (side-channel attack standard evaluation board), where a cryptographic circuit is implemented on one of the field-programmable gate arrays on the board. With this experiment, we demonstrate that both an EM radiation map and an information leakage map can be generated simultaneously by scanning the board only once. We also confirm that the generated map is in good agreement with the corresponding map obtained from exhaustive CEMAs.
Keywords
cryptography; electromagnetic devices; electromagnetic waves; field programmable gate arrays; printed circuits; CEMA; EM radiation evaluation; EM scanning system; correlation electromagnetic analysis; cryptographic device; efficient map generation technique; electromagnetic radiation evaluation; field-programmable gate array; information leakage; printed circuit board level; side-channel attack standard evaluation board; standard evaluation board; Correlation; Cryptography; Electromagnetic compatibility; Frequency domain analysis; Magnetic domains; Noise; Cryptographic modules; electromagnetic (EM) information leakage; hardware attacks; signal analysis; system security;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/TEMC.2012.2222890
Filename
6378448
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