DocumentCode :
2034154
Title :
Power balanced circuits for leakage-power-attacks resilient design
Author :
Halak, Basel ; Murphy, Julian ; Yakovlev, Alex
Author_Institution :
ECS Group, School of Electric and Electronic Engineering, Southampton University, UK
fYear :
2015
fDate :
28-30 July 2015
Firstpage :
1178
Lastpage :
1183
Abstract :
The continuous rise of static power consumption in modern CMOS technologies has led to the creation of a novel class of security attacks on cryptographic systems. The latter exploits the correlation between leakage current and the input patterns to infer the secret key; it is called leakage power analysis (LPA). The use power-balanced (m-of-n) logic is a promising solution that provides an answer to this problem, such circuits are designed to consume constant amount of power regardless of data being processed. This work evaluates the security of cryptographic circuits designed with this technology against the newly developed LPA. Two forms of LPA are investigated, one is based on differential power analysis (LDPA) and the other based on Hamming weight analysis (LHPA). Simulations performed at 90nm CMOS technology reveal that (m-of-n) circuits are totally resilient to LHPA and have a higher security level against LDPA than standard logic circuits.
Keywords :
Cryptography; Hamming weight; Leakage currents; Log-periodic dipole antennas; Logic gates; Standards; Cryptography; Leakage Power; Security; Side Channel Attacks;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Science and Information Conference (SAI), 2015
Conference_Location :
London, United Kingdom
Type :
conf
DOI :
10.1109/SAI.2015.7237294
Filename :
7237294
Link To Document :
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