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aktualisiert am 10. Dezember 2024
978-3-8439-3912-6, Reihe Informationstechnik
Onur Günlü Key Agreement with Physical Unclonable Functions and Biometric Identifiers
146 Seiten, Dissertation Technische Universität München (2018), Softcover, A5
This thesis addresses security and privacy problems for digital devices and biometrics, where a secret key is generated for authentication, identification, or secure computations. A physical unclonable function (PUF) is a promising solution for local security in digital devices. A low-complexity transform-coding algorithm is developed to make the information-theoretic analysis tractable and motivate a noisy (hidden) PUF source model.
The optimal trade-offs between the secret-key, privacy-leakage, and storage rates for multiple measurements of hidden PUFs are characterized. The first optimal and low-complexity code constructions are proposed. Polar codes are designed to achieve the best known rate tuples. The gains from cost-constrained controllable PUF measurements are illustrated to motivate extensions.