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Analysis and Protection of the Two-Metric Helper Data Scheme

Abstract : To compensate for the poor reliability of Physical Unclonable Function (PUF) primitives, some low complexity solutions not requiring error-correcting codes (ECC) have been proposed. One simple method is to discard less reliable bits, which are indicated in the helper data stored inside the PUF. To avoid discarding bits, the Two-metric Helper Data (TMH) method, which particularly applies to oscillation-based PUFs, allows to keep all bits by using different metrics when deriving the PUF response. However, oscillation-based PUFs are sensitive to side-channel analysis (SCA) since the frequencies of the oscillations can be observed by current or electromagnetic measurements. This paper studies the security of PUFs using TMH in order to obtain both reliable and robust PUF responses. We show that PUFs using TMH are sensitive to SCA, but can be greatly improved by using temporal masking and adapted extraction metrics. In case of public helper data, an efficient protection requires the randomization of the measurement order. We study two different solutions, providing interesting insights into trade-offs between security and complexity.
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Contributor : Ulrich Kühne Connect in order to contact the contributor
Submitted on : Monday, November 8, 2021 - 2:24:18 PM
Last modification on : Wednesday, March 23, 2022 - 10:18:02 AM
Long-term archiving on: : Wednesday, February 9, 2022 - 7:52:28 PM


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Lars Tebelmann, Ulrich Kühne, Jean-Luc Danger, Michael Pehl. Analysis and Protection of the Two-Metric Helper Data Scheme. Constructive Side-Channel Analysis and Secure Design, 12910, Springer International Publishing, pp.279-302, 2021, Lecture Notes in Computer Science, ⟨10.1007/978-3-030-89915-8_13⟩. ⟨hal-03419399⟩



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