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The two-terminal key agreement problem with biometric or physical identifiers is considered. Two linear code constructions based on Wyner-Ziv coding are developed. The first construction uses random l...
Different transforms used in binding a secret key to correlated physical-identifier outputs are compared. Decorrelation efficiency is the metric used to determine transforms that give highly-uncorrela...
Physical Unclonable Functions (PUFs) provide cryptographic keys for embedded systems without secure non-volatile key storage. Several error correction schemes for key generation with PUFs were introdu...
Physical unclonable functions (PUFs) are promising hardware security primitives suitable for low-cost cryptographic applications.Ring oscillator (RO) PUF is a well-received silicon PUF solution due to...
We are at the dawn of a hyper connectivity age otherwise known as the Internet of Things (IoT). It is widely accepted that to be able to reap all benefits from the IoT promise, device security will be...
We present an algorithm for repeatably generating keys using entropy from a Physical Unclonable Function (PUF). PUFs are logically identical physical constructs with Challenge-Response Pairs (CRPs) un...
This paper proposes a theoretical study and a full overview of the design, evaluation and optimization of a PUF based on transient element ring oscillators (TERO-PUF). We show how, by following some s...
We revisit optical physical unclonable functions (PUFs), which were introduced by Pappu et al. [36, 37] in their seminal and historically first publication on PUFs. We start our studies with non-integ...
In this work, we propose a systematic method to evaluate and compare the performance of Physical Unclonable Functions (PUFs). The need for such a method is justified by the fact that various types of ...
In this work, we propose a systematic method to evaluate and compare the performance of Physical Unclonable Functions (PUFs). The need for such a method is justified by the fact that various types of ...
Physical Unclonable Functions (PUFs) have been introduced as a new cryptographic primitive, and whilst a large number of PUF designs and applications have been proposed, few studies has been underta...
Physical Unclonable Functions (PUFs) are physical structures that are hard to clone and have a unique challenge-response behaviour. The term PUF was coined by Pappu et al. in 2001. That work trigger...
Physical Unclonable Functions (PUFs) are physical ob- jects that are unique, practically unclonable and that be- have like a random function when subjected to a challenge. Their use has been propos...
We investigate the foundations of Physical Unclonable Functions from several perspectives. Firstly, we discuss formal and conceptual issues in the various current definitions of PUFs. As we argue, t...
This paper theoretically discusses a novel security tool termed SIMPL system, which can be regarded as a public key version of physical unclonable functions (PUFs). Like the latter, a SIMPL system S...

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