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A new key rank estimation method to investigate dependent key lists of side channel attacks

机译:研究侧信道攻击的相关密钥列表的新密钥等级估计方法

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Rank estimation algorithm (REA) is a useful post-analysis tool to evaluate key recovery threat of real side-channel attacks. The existing rank estimation algorithms only consider the score lists of independent subkeys. This paper looks at dependent score lists, which correspond to the result of the key-recovery attack and the key-difference recovery attack, e.g. k0, k1and k0,1· First, we propose a new REA that can combine the dependent score lists called DK-REA. After selecting one subkey value, the rest subkey lists and key difference lists are combined to create new score lists for further key rank estimation in DK-REA. With simulated side-channel leakage of AES-128, we apply DK-REA to investigate the correct key rank when different score lists are combined. Our result shows that when the number of power traces is enough to obtain reliable results, merging more score lists leads to the rise of the correct key's rank up to 220. When the number of dependent score lists added is over a certain amount, the rank will drop with the added score lists.
机译:秩估计算法(REA)是一种有用的后分析工具,用于评估真实边信道攻击的关键恢复威胁。现有的排名估计算法仅考虑独立子项的得分列表。本文着眼于从属得分列表,这些得分列表对应于密钥恢复攻击和密钥差异恢复攻击的结果,例如k \ n 0 \ n,k \ n 1 \ nand k \ n 0,1 \ n·首先,我们提出了一个新的REA,它可以结合称为DK-REA的依存得分列表。选择一个子键值后,其余的子键列表和键差异列表将合并以创建新的分数列表,以便在DK-REA中进一步估计键等级。通过模拟的AES-128侧信道泄漏,我们将DK-REA用于在组合不同分数列表时研究正确的密钥等级。我们的结果表明,当电源跟踪的数量足以获得可靠的结果时,合并更多的得分列表将导致正确密钥的排名上升到2 \ n 20 \ n。当添加的从属得分列表的数量超过一定数量时,排名将随着添加的得分列表而下降。

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