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Noise Reduction in Side Channel Attack Using Fourth-Order Cumulant

机译:使用四阶累积量减少边信道攻击中的噪声

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Side channel attacks exploit physical information leaked during the operation of a cryptographic device (e.g., a smart card). The confidential data, which can be leaked from side channels, are timing of operations, power consumption, and electromagnetic emanation. In this paper, we propose a preprocessing method based on the fourth-order cumulant, which aims to improve the performance of side channel attacks. It takes advantages of the Gaussian and nonGaussian properties, that respectively characterize the noise and the signal, to remove the effects due to Gaussian noise coupled into side channel signals. The proposed method is then applied to analyze the electromagnetic signals of a synthesized application-specific integrated circuit during a data encryption standard operation. The theoretical and experimental results show that our method significantly reduces the number of side channel signals needed to detect the encryption key.
机译:边信道攻击利用在加密设备(例如,智能卡)操作期间泄漏的物理信息。机密数据可能会从侧边通道泄漏,包括操作时间,功耗和电磁辐射。本文提出了一种基于四阶累积量的预处理方法,旨在提高侧信道攻击的性能。利用分别表征噪声和信号的高斯和非高斯特性的优势,消除了由于高斯噪声耦合到副声道信号而产生的影响。然后将所提出的方法应用于在数据加密标准操作期间分析合成的专用集成电路的电磁信号。理论和实验结果表明,我们的方法显着减少了检测加密密钥所需的辅助信道信号的数量。

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