A Systematic Evaluation of EM and Power Side-Channel Analysis Attacks on AES Implementations

Vishnuvardhan V. Iyer, Meizhi Wang, J. Kulkarni, Ali E. Yılmaz
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引用次数: 5

Abstract

The effectiveness of coarse- and fine-grained electromagnetic (EM) side-channel analysis (SCA) attacks, as well as power SCA attacks, are empirically evaluated on implementations of the Advanced Encryption Standard (AES) algorithm. Coarse-grained EM and power SCA attacks use a single sensor configuration to measure the aggregated EM emanation or power consumption for a large set of encryptions, and then analyze this set of signals to recover all encryption key bytes. In contrast, fine-grained EM SCA attacks first perform high-resolution scans with relatively small probes in multiple orientations to localize on-chip information leakage, and then use a specific probe configuration for each key byte to collect and analyze signals. The fine-grained EM SCA attacks are found to be up to >70× more effective than coarse-grained EM and power SCA attacks when extracting the key from 3 implementations of 128-bit AES. They are constrained, however, by the potentially prohibitive cost of the initial search to identify effective probe configurations. Search protocols, categorized according to the threat model, to reduce this one-time acquisition cost are presented and are found to require ~8–15× fewer measurements compared to an exhaustive search.
对AES实现的电磁攻击和功率侧信道分析攻击的系统评估
在高级加密标准(AES)算法的实现上,对粗粒度和细粒度电磁(EM)侧信道分析(SCA)攻击以及功率SCA攻击的有效性进行了实证评估。粗粒度的EM和功率SCA攻击使用单个传感器配置来测量大量加密的聚合EM发射或功耗,然后分析这组信号以恢复所有加密密钥字节。相比之下,细粒度EM SCA攻击首先使用相对较小的探针在多个方向上执行高分辨率扫描,以定位芯片上的信息泄漏,然后对每个关键字节使用特定的探针配置来收集和分析信号。当从3个128位AES实现中提取密钥时,细粒度EM SCA攻击的效率比粗粒度EM和功率SCA攻击高70倍。但是,它们受到确定有效探针配置的初始搜索的潜在过高成本的限制。根据威胁模型对搜索协议进行分类,以减少这种一次性获取成本,并且发现与穷举搜索相比,需要的测量量减少了8 - 15倍。
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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