Datenbestand vom 17. April 2024

Warenkorb Datenschutzhinweis Dissertationsdruck Dissertationsverlag Institutsreihen     Preisrechner

aktualisiert am 17. April 2024

ISBN 978-3-8439-3912-6

72,00 € inkl. MwSt, zzgl. Versand


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

Zusammenfassung / Abstract

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.