Side Channel Attack Resistant AES Design Based on Finite Field Construction Variation

P. Shvartsman, Xinmiao Zhang
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引用次数: 3

Abstract

The Advanced Encryption Standard (AES) is the current standard for symmetric key cipher and is algorithmically secure. Side channel attacks that target power consumption can reveal the secret key in AES implementations. Masking data with random variables is one of the main methods used to thwart power analysis attacks. Data can be masked with multiple random variables to prevent higher-order attacks at the cost of a large increase in area. A novel masking scheme for AES resistant to second-order attacks is proposed. Instead of using an additional mask, variation in finite field construction is exploited to increase resistance to second-order attacks. As a result, the area requirement is reduced. For an example AES encryptor, the proposed design is 12% smaller compared to the previous best design, with a very small drop in achievable security level.
基于有限域结构变化的抗侧信道攻击AES设计
高级加密标准AES (Advanced Encryption Standard)是目前对称密钥密码的标准,具有算法安全性。以功耗为目标的侧信道攻击可以泄露AES实现中的密钥。用随机变量屏蔽数据是用来阻止功率分析攻击的主要方法之一。数据可以用多个随机变量来掩盖,以防止高阶攻击,代价是面积的大幅增加。提出了一种新的AES抗二阶攻击掩蔽方案。而不是使用一个额外的掩码,在有限域结构的变化被利用来增加抵抗二阶攻击。因此,减少了对面积的要求。以AES加密器为例,提议的设计比以前的最佳设计小12%,可实现的安全级别下降很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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