Title :
Double-Edge Transformation for Optimized Power Analysis Suppression Countermeasures
Author :
Mansouri, S.S. ; Dubrova, Elena
Author_Institution :
Dept. of Electron. Syst., KTH - R. Inst. of Technol., Stockholm, Sweden
Abstract :
We introduce a power optimization technique for suppression countermeasures against Power Analysis attacks that can potentially be applied to any type of crypto-system implemented as a synchronous digital system. Since the power consumption of systems protected by suppression countermeasures is proportional to current peaks, we propose a simple transformation to move some of the switching activity of the crypto-system from the rising edge to the falling edge of the clock, so that current peaks are reduced. The transformation is easy to apply, requires only standard cell logic gates, has a low area overhead but can reduce the maximal working frequency of a system by at most a factor 2. We prove our method on an ASIC implementation of the Grain-80 stream cipher using SPICE-level simulation, obtaining 50% power savings compared to the non-optimized suppression countermeasure.
Keywords :
SPICE; application specific integrated circuits; circuit simulation; cryptography; logic gates; power aware computing; ASIC implementation; Grain-80 stream cipher; SPICE-level simulation; cryptosystem; double-edge transformation; maximal working frequency; nonoptimized suppression countermeasure; optimized power analysis suppression countermeasures; power analysis attacks; power consumption; power optimization technique; standard cell logic gates; switching activity; synchronous digital system; Ciphers; Clocks; Power demand; Propagation delay; Switches; Synchronization; FSR based stream cipher; Grain; Power Analysis attack; countermeasure;
Conference_Titel :
Digital System Design (DSD), 2013 Euromicro Conference on
Conference_Location :
Los Alamitos, CA
DOI :
10.1109/DSD.2013.45