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A Simulated Approach to Evaluate Side Channel Attack Countermeasures for the Advanced Encryption Standard

机译:一种评估高级加密标准侧信道攻击对策的模拟方法

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Modern networks have critical security needs and a suitable level of protection and performance is usually achieved with the use of dedicated hardware cryptographic cores. Although the Advanced Encryption Standard (AES) is considered the best approach when symmetric cryptography is required, one of its main weaknesses lies in its measurable power consumption. Side Channel Attacks (SCAs) use this emitted power to analyze and revert the mathematical steps and extract the encryption key. In this work we propose a simulated methodology based on Correlation and Differential Power Analysis. Our solution extracts the simulated power from a gate-level implementation of the AES core and elaborates it using mathematical-statistical procedures. An SCA countermeasure can then be evaluated without the need for any physical circuit. Each solution can be benchmarked during an early step of the design thereby shortening the evaluation phase and helping designers to find the best solution during a preliminary phase. The cost of our approach is lower compared to any kind of analysis that requires the silicon chip to evaluate SCA protection.
机译:现代网络具有关键的安全需求,通常通过使用专用的硬件加密核心来实现适当级别的保护和性能。尽管高级加密标准(AES)被认为是要求对称加密的最佳方法,但其主要缺点之一在于可测量的功耗。旁道攻击(SCA)使用此发射功率来分析和还原数学步骤并提取加密密钥。在这项工作中,我们提出了一种基于相关和差分功率分析的模拟方法。我们的解决方案从AES内核的门级实现中提取仿真功率,并使用数学统计过程对其进行详细说明。然后可以评估SCA对策,而无需任何物理电路。可以在设计的早期阶段对每个解决方案进行基准测试,从而缩短评估阶段,并帮助设计人员在初步阶段找到最佳解决方案。与要求硅芯片评估SCA保护的任何类型的分析相比,我们的方法的成本更低。

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