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Random key rotation: Side-channel countermeasure of NTRU cryptosystem for resource-limited devices

机译:随机键旋转:资源限制设备NTRU密码系统的侧通道对策

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Highlights?Random key rotation (RKR) scheme for NTRU cryptosystem is proposed.?RKR can protect NTRU against the existing side-channel attacks.?Efficient RKR implementations by the way of both speed and area first are shown.AbstractThe NTRU algorithm, as IEEE P1363.1 standard, has been widely applied in resource-limited cryptosystems such as wearable embedded systems, smart cards, and so on. In 2013, Zheng et?al. presented collision attack on three NTRU countermeasures from Lee et?al., which are the only three countermeasures of NTRU against side-channel analysis so far. In this paper, we give a new countermeasure named Random Key Rotation (RKR) against the existing statistical side-channel analysis. According to analysis and experiments on STC89C52 microprocessor, little information of the key is leaked by collision attack, second-order correlation power analysis, etc. Furthermore, implementation schemes of RKR countermeasure in software and hardware are suggested. Under typical parameters, barrel shifter implementation of RKR only costs 8-bit extra register and one extra clock cycle (as well as 16 extra multiplexers).Graphical abstractDisplay Omitted]]>
机译:<![cdata [ 突出显示 ntru密码系统的随机键旋转(rkr)方案。 rkr可以保护ntru免受现有的侧通道攻击。< / ce:para> 首先显示速度和区域的高效RKR实现。 抽象 NTRU作为IEEE P1363.1标准的算法已广泛应用于资源限制的密码系统,例如可穿戴嵌入式系统,智能卡等。 2013年,郑埃?al。 Lee et?al的三个NTRU对策提出了碰撞攻击,这是NTRU迄今为止对侧通道分析的三个对策。在本文中,我们为现有的统计侧通道分析提供了一个名为随机键旋转(RKR)的新对策。根据STC89C52微处理器的分析和实验,钥匙的一点信息被碰撞攻击,二阶相关功率分析等泄漏。此外,建议在软件和硬件中的RKR对策实现方案。在典型的参数下,枪管移位器的实施RKR仅成本8位额外的寄存器和一个额外的时钟周期(以及16个额外的多路复用器)。 图形抽象 显示省略 ]]>

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