2012•Unpublished venueRequires access

Implementation of CPA analysis against AES design on FPGA

Noura Benhadjyoussef, Hassen Mestiri, Mohsen Machhout, Rached Tourki

Open publisher page 26 citations

Abstract

Physical implementations of cryptographic algorithms may let relatively side channel information. By analyzing this information leakage, the confidential data, like the cryptographic keys, can be revealed. The correlation power analysis(CPA) is a well-known attack of the cryptographic device. This paper conduces a successful CPA of the Advanced Encryption Standard AES implemented on the Xilinx FPGA with the Side-channel Attack Standard Evaluation Board (SASEBO). The experimental results show that the choice of the power model and the number of power traces can further improve the performance of CPA attack in extracting the correct key.

About this research paper

What this paper is about

Physical implementations of cryptographic algorithms may let relatively side channel information. By analyzing this information leakage, the confidential data, like the cryptographic keys, can be revealed. The correlation power analysis(CPA) is a well-known attack of the cryptographic device. This paper conduces a successful CPA of the Advanced Encryption Standard AES implemented on the Xilinx FPGA with the Side-channel Attack Standard Evaluation Board (SASEBO). The experimental results show that the choice of the power model and the number of power traces can further improve the performance of CPA attack in extracting the correct key.

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OpenAlex reports 26 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Method / approach

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Available abstract

Physical implementations of cryptographic algorithms may let relatively side channel information. By analyzing this information leakage, the confidential data, like the cryptographic keys, can be revealed. The correlation power analysis(CPA) is a well-known attack of the cryptographic device. This paper conduces a successful CPA of the Advanced Encryption Standard AES implemented on the Xilinx FPGA with the Side-channel Attack Standard Evaluation Board (SASEBO). The experimental results show that the choice of the power model and the number of power traces can further improve the performance of CPA attack in extracting the correct key.

Key concepts: Power analysis, Advanced Encryption Standard, Cryptography, Field-programmable gate array, Computer science, Side channel attack, AES implementations, Encryption

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