从算法执行时间的角度对HMAC下SCA的时序进行研究

Chowdhury Sajadul Islam, M. Mollah
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引用次数: 3

摘要

相量测量单元(pmu),或称同步相量,正迅速部署在智能电网中,其目标是同时测量广域配电变电站的相量。针对PMU通信基础设施的安全攻击多种多样。定时侧信道攻击(SCA)就是这些可能的攻击之一。本文考虑了HMAC-SHA1认证算法执行时间对定时侧信道的影响。线性和负二项回归都被用来模拟存储密钥的一些安全特征,例如它的长度和汉明权值。目标是基于泄漏模型揭示与机密相关的信息。结果将减轻攻击者的密码分析过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Timing SCA against HMAC to investigate from the execution time of algorithm viewpoint
Phasor Measurement Units (PMUs), or synchrophasors, are rapidly being deployed in the smart grid with the goal of measuring phasor quantities concurrently from wide area distribution substations. There are a variety of security attacks on the PMU communications infrastructure. Timing Side Channel Attack (SCA) is one of these possible attacks. In this paper, timing side channel vulnerability against execution time of the HMAC-SHA1 authentication algorithm is considered. Both linear and negative binomial regression are used to model some security features of the stored key, e.g., its length and Hamming weight. The goal is to reveal secret-related information based on leakage models. The results would mitigate the cryptanalysis process of an attacker.
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