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Charge-Withheld Converter-Reshuffling: A Countermeasure Against Power Analysis Attacks

机译:电荷保持型转换器的改组:针对功率分析攻击的对策

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摘要

Converter-reshuffling (CoRe) technique has recently been proposed as a power-efficient countermeasure against differential power analysis (DPA) attacks by randomly reshuffling the individual stages within a multiphase switched-capacitor voltage converter. This randomized reshuffling of the converter stages inserts noise to the monitored power profile and prevents an attacker from extracting the correct input power data. The total number of activated phases within a switch period, however, still correlates with the dynamic power consumption of the workload. To break the one-to-one relationship between the monitored and actual power consumption, a charge-withheld CoRe technique is proposed in this brief by utilizing the flying capacitors to withhold a random amount of charge for a random time period. As compared to the conventional CoRe technique, the proposed charge-withheld CoRe technique eliminates the possibility of having a zero power trace entropy (PTE) even under machine-learning-based DPA attacks. The average PTE of the monitored power profile is increased ∼46.1% with a 64-phase charge-withheld CoRe technique.
机译:最近,通过随机地对多相开关电容器电压转换器内的各个级进行改组,提出了将转换器改组(CoRe)技术作为一种针对差分功率分析(DPA)攻击的节能措施。转换器级的这种随机调整将噪声插入到监视的功率曲线中,并防止攻击者提取正确的输入功率数据。但是,切换期间内已激活阶段的总数仍与工作负载的动态功耗相关。为了打破被监视的功耗与实际功耗之间的一对一关系,在此简要中提出了一种保留电荷的CoRe技术,该技术通过利用飞跨电容器在随机时间段内保留随机数量的电荷。与常规CoRe技术相比,即使在基于机器学习的DPA攻击下,所提出的保留电荷的CoRe技术也消除了具有零功率跟踪熵(PTE)的可能性。使用64相保留电荷的CoRe技术,受监视功率曲线的平均PTE增加了约46.1%。

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