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Confident leakage assessment — A side-channel evaluation framework based on confidence intervals

机译:自信的泄漏评估 - 基于置信区间的侧频评估框架

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Cryptographic devices that potentially operate in hostile physical environments need to be secured against side-channel attacks. In order to ensure the effectiveness of the required countermeasures, scientists, developers, and evaluators need efficient methods to test the security level of a device. In this paper we propose a new framework based on confidence intervals that extends established t-test based approaches for test-vector leakage assessment (TVLA). In comparison to previous TVLA approaches the new methodology does not only enable the detection of leakage but can also assert its absence. The framework is robust against noise in the evaluation system and thereby avoids false negatives. These improvements can be achieved without overhead in measurement complexity and with a minimum of additional computational costs compared to previous approaches. We evaluate our method under realistic conditions by applying it to a protected implementation of AES.
机译:需要在敌对物理环境中进行潜在操作的加密设备以防止侧通道攻击。为了确保所需的对策,科学家,开发人员和评估者的有效性需要有效的方法来测试设备的安全级别。在本文中,我们提出了一种基于置信区间的新框架,该帧间隔扩展了基于T-Test的测试泄漏评估(TVLA)的基于T-Test Test Test的方法。与以前的TVLA相比,新方法不仅能够检测泄漏,而且还可以断言其缺席。该框架对评估系统中的噪声具有稳健,从而避免了错误的否定。与以前的方法相比,可以在没有测量复杂度的情况下实现这些改进,而不是在测量复杂性中的开销,并且具有至少额外的计算成本。通过将其应用于AES的受保护实施,我们在现实条件下评估我们的方法。

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