Paper
19 July 2024 Security analysis and simulation of hardware circuits based on advanced encryption standard algorithm of different bus structures
Mingyu Xu, Xiaoqiang Zhang, Xinxing Zheng, Zhang Xing
Author Affiliations +
Proceedings Volume 13181, Third International Conference on Electronic Information Engineering, Big Data, and Computer Technology (EIBDCT 2024); 131813Z (2024) https://doi.org/10.1117/12.3031284
Event: Third International Conference on Electronic Information Engineering, Big Data, and Computer Technology (EIBDCT 2024), 2024, Beijing, China
Abstract
In the current security analysis and research of AES cryptographic algorithm, most of them use energy attacks through computer simulation, microcontroller experiments and other means. This is not only very different from the actual power consumption generated by the AES hardware circuit used in practice, but also Moreover, there are obvious differences in the power consumption caused by different bus structures that appear in the actual use of AES. This paper analyzes the security of the hardware circuit implementation of an AES algorithm under different bit input data. It uses FPGA as the hardware circuit foundation, uses the mean difference method in DPA as the security analysis method, and uses the first round of The S-box is used as the attack point to attack, and the 128-bit source key can be derived in turn. Finally, the corresponding security is discussed.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Mingyu Xu, Xiaoqiang Zhang, Xinxing Zheng, and Zhang Xing "Security analysis and simulation of hardware circuits based on advanced encryption standard algorithm of different bus structures", Proc. SPIE 13181, Third International Conference on Electronic Information Engineering, Big Data, and Computer Technology (EIBDCT 2024), 131813Z (19 July 2024); https://doi.org/10.1117/12.3031284
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KEYWORDS
Power consumption

Field programmable gate arrays

Analytical research

Computer security

Computer simulations

Algorithm development

Oscilloscopes

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