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Double-Key Recovery Based Correlation Power Analysis

机译:基于双关键恢复的相关功率分析

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摘要

Side Channel Analysis (SCA) provides a powerful tool for skilled adversaries to reduce the effort to determine an unknown key by the principle of 'divide and conquer', especially for the implementation of symmetric cryptographic algorithm. Among the SCA techniques, Correlation Power Analysis (CPA) is one of the most famous methods since it is easy to carry out and the efficiency is usually high. The traditional CPA divide the whole key into several subkeys according to the cryptographic algorithm and analyze the subkeys one by one. This method has a problem that the power traces can not be ensured to be most efficiently utilized since that for every analysis the power traces are used once. In this paper, we creatively propose a new 'divide and conquer' scheme. We divide the whole key into several double-keys, for every double-key we bring forward an innovative concept of chaining of power traces. This method can effectively improve the efficiency of CPA, and it is useful when the power traces are not enough. We prove the availability of our method by theory knowledge. Besides, we perform a series of practical experiments on both the public data and the power data that was captured by ourselves to evaluate the key-recovery efficiency of double-key based CPA. The experimental results verify that, in the same attack scenario, the key-recovery efficiency of double-key based CPA is higher than that of traditional CPA.
机译:侧通道分析(SCA)为熟练的对手提供了强大的工具,以减少通过“分割和征服”原则来确定未知键的努力,特别是对于对称加密算法的实现。在SCA技术中,相关功率分析(CPA)是最着名的方法之一,因为它易于执行,效率通常很高。传统的CPA根据加密算法将整个键划分为多个子键,并逐个分析子键。该方法存在问题,即不能确保电力迹线最有效地利用,因为每次分析都使用电力迹线一次。在本文中,我们创造性地提出了一种新的“鸿沟和征服”计划。我们将整个钥匙分成几个双键,对于每一个双键,我们带来了一种专业的电力迹线的创新概念。该方法可以有效提高CPA的效率,并且当电力迹线不够时它是有用的。我们通过理论知识来证明我们的方法的可用性。此外,我们在公共数据和由自己捕获的电力数据上执行一系列实际实验,以评估基于双关键的CPA的关键恢复效率。实验结果验证,在相同的攻击场景中,双关键基于CPA的键恢复效率高于传统CPA的键恢复效率。

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