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Exploring power attack protection of resource constrained encryption engines using integrated low-drop-out regulators

机译:使用集成的低压降稳压器探索资源受限的加密引擎的电源攻击保护

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The power attack protection of encryption engines often comes at the expense of area, power, and/or performance overheads making the design of a low-power and compact but secure encryption engine challenging. This paper explores the feasibility of using an on-chip low dropout regulator (LDO) as a countermeasure to power attack of low-power and compact encryption engine. We design an area minimized implementation of Advanced Encryption Standard (AES) using predictive 45nm node and show that lightweight implementations are more susceptible to power attack. Using behavioral modeling, we show that an on-chip LDO can enhance power attack resistance of this compact AES engine; however, the tradeoff between LDO performance and power attack protection is essential. Our analysis shows that LDO can increase power attack resistance of the compact AES by >800X with marginal area (1.4%) and power (5%) overheads.
机译:加密引擎的电源攻击保护通常以面积,功耗和/或性能开销为代价,这使得低功耗,紧凑但安全的加密引擎的设计具有挑战性。本文探讨了使用片上低压降稳压器(LDO)作为对付低功耗紧凑型加密引擎的电源攻击的对策的可行性。我们使用预测性45nm节点设计了面积最小的高级加密标准(AES)实施,并显示轻量级实施更容易受到电源攻击。使用行为建模,我们证明了片上LDO可以增强这种紧凑型AES引擎的抗功率攻击能力。但是,LDO性能和电源攻击保护之间的折衷是必不可少的。我们的分析表明,LDO可以将紧凑型AES的功率抵抗能力提高800倍以上,同时具有边际面积(1.4%)和功率(5%)的开销。

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