DocumentCode :
2025128
Title :
Increasing resistance to differential power analysis attacks in reconfigurable systems
Author :
Papadopoulos, K. ; Brokalakis, A. ; Papaefstathiou, I.
Author_Institution :
Dept. of Electron. & Comput. Eng., Tech. Univ. of Crete, Chania, Greece
fYear :
2012
fDate :
25-28 March 2012
Firstpage :
115
Lastpage :
120
Abstract :
Nowadays, security is becoming the most critical factor in numerous application domains. At the same time, state-of-the-art FPGAs are frequently used in order to improve the performance of various embedded systems. In those systems the FPGAs usually execute, among others, certain encryption algorithms since it has been proved that they are very efficient when implementing such tasks. This paper presents a highly secure platform based on a common low-cost Xilinx FPGA. The security algorithm employed is AES-128 which is the most widely used such algorithm; one of the main drawbacks of this scheme is that it is vulnerable to a sophisticated family of attacks called differential power analysis (DPA) attacks. In order to heavily increase the resistance of our system to such attacks we propose a specific implementation methodology tailored to the characteristics of the FPGAs; as our real-world experiments clearly demonstrate our approach results to FPGA-based systems that are more than an order of magnitude more secure, when such attacks are considered, than the ordinary reconfigurable systems implementing the exact same encryption/decryption algorithm.
Keywords :
cryptography; embedded systems; field programmable gate arrays; AES-128; DPA; differential power analysis; embedded systems; encryption-decryption algorithm; low-cost Xilinx FPGA; reconfigurable systems; security algorithm; Encryption; Field programmable gate arrays; Logic gates; Power measurement; Throughput;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrotechnical Conference (MELECON), 2012 16th IEEE Mediterranean
Conference_Location :
Yasmine Hammamet
ISSN :
2158-8473
Print_ISBN :
978-1-4673-0782-6
Type :
conf
DOI :
10.1109/MELCON.2012.6196393
Filename :
6196393
Link To Document :
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