Title :
Robust protection against fault-injection attacks on smart cards implementing the advanced encryption standard
Author :
Karpovsky, Mark ; Kulikowski, Konrad J. ; Taubin, Alexander
Author_Institution :
Dept. of Electr. & Comput. Eng., Boston Univ., MA, USA
fDate :
28 June-1 July 2004
Abstract :
We present a method of protecting a hardware implementation of the advanced encryption standard (AES) against a side-channel attack known as differential fault analysis attack. The method uses systematic nonlinear (cubic) robust error detecting codes. Error-detecting capabilities of these codes depend not just on error patterns (as in the case of linear codes) but also on data at the output of the device which is protected by the code and this data is unknown to the attacker since it depends on the secret key. In addition to this, the proposed nonlinear (n,k)-codes reduce the fraction of undetectable errors from 2-r to 2-2r as compared to the corresponding (n,k) linear code (where n - k = r and k >= r). We also present results on a FPGA implementation of the proposed protection scheme for AES as well as simulation results on efficiency of the robust codes.
Keywords :
cryptography; error detection codes; field programmable gate arrays; nonlinear codes; security of data; smart cards; FPGA; advanced encryption standard; differential fault analysis attack; error detecting codes; error patterns; fault-injection attacks; nonlinear codes; side-channel attack; smart cards; Circuit faults; Costs; Cryptography; Doped fiber amplifiers; Hardware; Information security; Linear code; Protection; Robustness; Smart cards;
Conference_Titel :
Dependable Systems and Networks, 2004 International Conference on
Print_ISBN :
0-7695-2052-9
DOI :
10.1109/DSN.2004.1311880