Random fault attacks against Advanced Encryption Standard (AES) hardware implementation are widely researched. In the previous fault analysis, 6 rounds of attacks arc required to recover the correct round-key, which is not efficient enough for extensive analysis. In this paper. a more efficient fault model is proposed. Based on the analysis of theoretical key candidate number, the proposed attack method can complete the analysis as few as 3 rounds. Experiment results shows that nearly 90% of the attacks recover the correct round-key with 3 rounds and in average only 3.125 rounds are required with our proposed attack method.CPCI-S(ISTP)cuixx@pku.edu.cn; cuixl@pkusz.edu.c
International audienceIn 2011, Li presented clockwise collision analysis on nonprotected Advanced En...
Setup time variation fault attacks that aim straightly at the FPGA devices have become hot spots now...
International audienceIn 2011, Li presented clockwise collision analysis on nonprotected Advanced En...
Random fault attacks against Advanced Encryption Standard (AES) hardware implementation are widely r...
A high-efficient fault attack on AES S-box is proposed in this paper. Faults are introduced in the e...
Differential fault analysis (DFA) aiming at the advanced encryption standard (AES) hardware implemen...
International audienceSince the early work of Piret and Quisquater on fault attacks against AES at C...
International audienceSince the early work of Piret and Quisquater on fault attacks against AES at C...
Abstract: This research presents the survey, analysis, comparisons and implementation of the most th...
A high-efficient fault attack on AES S-box is proposed in this paper. Faults are introduced in the e...
Setup time variation fault attacks that aim straightly at the FPGA devices have become hot spots now...
Part 7: Security Attacks and Measures (Short Papers)International audienceIn this paper we present a...
In this paper we describe two differential fault attack techniques against Advanced Encryption Stand...
Since the first demonstration of fault attacks by Boneh et al. on RSA, a multitude of fault attack t...
Since the first demonstration of fault attacks by Boneh et al. on RSA, a multitude of fault attack t...
International audienceIn 2011, Li presented clockwise collision analysis on nonprotected Advanced En...
Setup time variation fault attacks that aim straightly at the FPGA devices have become hot spots now...
International audienceIn 2011, Li presented clockwise collision analysis on nonprotected Advanced En...
Random fault attacks against Advanced Encryption Standard (AES) hardware implementation are widely r...
A high-efficient fault attack on AES S-box is proposed in this paper. Faults are introduced in the e...
Differential fault analysis (DFA) aiming at the advanced encryption standard (AES) hardware implemen...
International audienceSince the early work of Piret and Quisquater on fault attacks against AES at C...
International audienceSince the early work of Piret and Quisquater on fault attacks against AES at C...
Abstract: This research presents the survey, analysis, comparisons and implementation of the most th...
A high-efficient fault attack on AES S-box is proposed in this paper. Faults are introduced in the e...
Setup time variation fault attacks that aim straightly at the FPGA devices have become hot spots now...
Part 7: Security Attacks and Measures (Short Papers)International audienceIn this paper we present a...
In this paper we describe two differential fault attack techniques against Advanced Encryption Stand...
Since the first demonstration of fault attacks by Boneh et al. on RSA, a multitude of fault attack t...
Since the first demonstration of fault attacks by Boneh et al. on RSA, a multitude of fault attack t...
International audienceIn 2011, Li presented clockwise collision analysis on nonprotected Advanced En...
Setup time variation fault attacks that aim straightly at the FPGA devices have become hot spots now...
International audienceIn 2011, Li presented clockwise collision analysis on nonprotected Advanced En...