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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >A Voltage Regulator-Assisted Lightweight AES Implementation Against DPA Attacks
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A Voltage Regulator-Assisted Lightweight AES Implementation Against DPA Attacks

机译:稳压器辅助的轻量级AES实施方案,可抵御DPA攻击

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In this paper, the mathematical foundations of the security implications of utilizing various on-chip voltage converters as a countermeasure against differential power analysis (DPA) attacks are investigated. An exhaustive mathematical analysis of a recently proposed converter-reshuffling (CoRe) technique is presented where measurement to disclose (MTD) is used to compare the security of the proposed on-chip CoRe regulator with the security of conventional on-chip voltage regulators. A DPA-resistant and lightweight advanced encryption standard (AES) engine implementation that leverages the CoRe technique is proposed. The impact of the centralized and distributed placement of the voltage regulators on the security of a pipelined AES engine is explored. The security implications of the relationship between the clock frequency of the device under attack and the switching frequency of the voltage regulator are investigated. As compared to an unprotected AES engine, the MTD value of the proposed improved pipelined AES engine with a centralized on-chip CoRe regulator is enhanced over 9100 times.
机译:在本文中,研究了利用各种片上电压转换器作为对差分功率分析(DPA)攻击的对策的安全意义的数学基础。提出了对最近提出的转换器改组(CoRe)技术的详尽数学分析,其中使用公开测量(MTD)将提议的片上CoRe稳压器的安全性与传统的片上稳压器的安全性进行比较。提出了一种利用CoRe技术的抗DPA的轻量级高级加密标准(AES)引擎实现。探索了调压器集中和分布式放置对流水线AES引擎安全性的影响。研究了受攻击设备的时钟频率与稳压器的开关频率之间关系的安全性。与不受保护的AES引擎相比,建议的带有集中式片上CoRe调节器的改进的流水线AES引擎的MTD值提高了9100倍。

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