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Charge recovery logic as a side channel attack countermeasure

机译:充电回收逻辑作为侧频攻击对策

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Basically, charge recovery logic styles have been devised for low-power purposes. However, they have some other characteristics such as inherent pipelining mechanism, low data-dependent power consumption, and low electromagnetic radiations which are usually neglected by researchers. These properties can be useful in other application areas such as side channel attack resistant cryptographic hardware. This paper addresses these properties of charge recovery logics and examines a common one, called 2N-2N2P, as a side channel attack countermeasure by information theoretic evaluation metrics. The observed results show that the usage of this logic style leads to improve DPA-resistance as well as energy saving. Moreover, The behavior of supply currents in simulations reveals that electromagnetic emanation seems to be feeble, compared to other cell level DPA countermeasures.
机译:基本上,已经为低功率目的设计了充电回收逻辑样式。然而,它们具有一些其他特性,例如固有的流水线机构,低数据依赖性功耗,以及通常被研究人员忽视的低电磁辐射。这些属性在其他应用领域可以是诸如侧通道攻击抗性密码硬件的其他应用领域。本文解决了电荷恢复逻辑的这些属性,并通过信息理论评估度量来检查称为2N-2N2P的共同频道,作为侧频攻击对策。观察结果表明,这种逻辑风格的使用情况会提高DPA电阻以及节能。此外,与其他细胞水平DPA对策相比,模拟中供电电流的行为揭示了电磁散发似乎是微弱的。

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