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首页> 外文期刊>Embedded Systems Letters, IEEE >Employing Symmetric Dual-Rail Logic to Thwart LPA Attack
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Employing Symmetric Dual-Rail Logic to Thwart LPA Attack

机译:采用对称双轨逻辑来阻止LPA攻击

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Leakage power analysis (LPA) attacks aim at finding the secret key of a cryptographic device from measurements of its static (leakage) power. This novel power analysis attacks take advantage of the dependence of the leakage power of CMOS integrated circuits on the data they process. This letter proposes symmetric dual-rail logic (SDRL), a standard cell LPA attack countermeasure that theoretically resists the LPA attacks. The technique combines standard building blocks to make new compound standard cells, which have a close to constant leakage power consumption. Experiment results show SDRL is a promising approach to implement a LPA-resistant crypto processor.
机译:泄漏功率分析(LPA)攻击旨在通过测量其静态(泄漏)功率来找到加密设备的秘密密钥。这种新颖的功率分析攻击利用了CMOS集成电路的泄漏功率对其处理的数据的依赖性。这封信提出了对称双轨逻辑(SDRL),这是一种理论上可以抵抗LPA攻击的标准单元LPA攻击对策。该技术结合了标准构件,以制造新的复合标准电池,其具有接近恒定的泄漏功耗。实验结果表明,SDRL是实现抗LPA的加密处理器的一种有前途的方法。

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