Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function.

Model building attack on Physical Unclonable Functions (PUFs) by using machine learning (ML) techniques has been a focus in the PUF research area. PUF is a hardware security primitive which can extract unique hardware characteristics (i.e., device-specific) by exploiting the intrinsic manufacturing...

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Main Authors: Mispan, Mohd Syafiq, Jidin, Aiman Zakwan, Mohd Nasir, Haslinah, Hafez, Sarkawi, Ramlee, Radi Husin
Format: Article
Language:en
Published: Institute Of Advanced Engineering And Science (IAES) 2021
Online Access:http://eprints.utem.edu.my/id/eprint/25665/2/2021_DESIGN%20AND%20IMPLEMENTATION%20OF%20MULTIPLEXED%20AND%20OBFUSCATED%20PHYSICAL%20UNCLONABLE%20FUNCTION.PDF
http://eprints.utem.edu.my/id/eprint/25665/
http://section.iaesonline.com/index.php/IJEEI/article/view/2664/593
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author Mispan, Mohd Syafiq
Jidin, Aiman Zakwan
Mohd Nasir, Haslinah
Hafez, Sarkawi
Ramlee, Radi Husin
author_facet Mispan, Mohd Syafiq
Jidin, Aiman Zakwan
Mohd Nasir, Haslinah
Hafez, Sarkawi
Ramlee, Radi Husin
author_sort Mispan, Mohd Syafiq
building UTEM Library
collection Institutional Repository
content_provider Universiti Teknikal Malaysia Melaka
content_source UTEM Institutional Repository
continent Asia
country Malaysia
description Model building attack on Physical Unclonable Functions (PUFs) by using machine learning (ML) techniques has been a focus in the PUF research area. PUF is a hardware security primitive which can extract unique hardware characteristics (i.e., device-specific) by exploiting the intrinsic manufacturing process variations during integrated circuit (IC) fabrication. The nature of the manufacturing process variations which is random and complex makes a PUF realistically and physically impossible to clone atom-by-atom. Nevertheless, its function is vulnerable to model-building attacks by using ML techniques. Arbiter-PUF is one of the earliest proposed delay-based PUFs which is vulnerable to ML-attack. In the past, several techniques have been proposed to increase its resiliency, but often has to sacrifice the reproducibility of the Arbiter-PUF response. In this paper, we propose a new derivative of Arbiter-PUF which is called Mixed Arbiter-PUF (MA-PUF). Four Arbiter-PUFs are combined and their outputs are multiplexed to generate the final response. We show that MA-PUF has good properties of uniqueness, reliability, and uniformity. Moreover, the resilient of MA-PUF against ML-attack is 15% better than a conventional Arbiter-PUF. The predictability of MA-PUF close to 65% could be achieved when combining with challenge permutation technique
format Article
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institution Universiti Teknikal Malaysia Melaka
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publishDate 2021
publisher Institute Of Advanced Engineering And Science (IAES)
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spelling my.utem.eprints-256652022-03-14T10:34:08Z http://eprints.utem.edu.my/id/eprint/25665/ Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function. Mispan, Mohd Syafiq Jidin, Aiman Zakwan Mohd Nasir, Haslinah Hafez, Sarkawi Ramlee, Radi Husin Model building attack on Physical Unclonable Functions (PUFs) by using machine learning (ML) techniques has been a focus in the PUF research area. PUF is a hardware security primitive which can extract unique hardware characteristics (i.e., device-specific) by exploiting the intrinsic manufacturing process variations during integrated circuit (IC) fabrication. The nature of the manufacturing process variations which is random and complex makes a PUF realistically and physically impossible to clone atom-by-atom. Nevertheless, its function is vulnerable to model-building attacks by using ML techniques. Arbiter-PUF is one of the earliest proposed delay-based PUFs which is vulnerable to ML-attack. In the past, several techniques have been proposed to increase its resiliency, but often has to sacrifice the reproducibility of the Arbiter-PUF response. In this paper, we propose a new derivative of Arbiter-PUF which is called Mixed Arbiter-PUF (MA-PUF). Four Arbiter-PUFs are combined and their outputs are multiplexed to generate the final response. We show that MA-PUF has good properties of uniqueness, reliability, and uniformity. Moreover, the resilient of MA-PUF against ML-attack is 15% better than a conventional Arbiter-PUF. The predictability of MA-PUF close to 65% could be achieved when combining with challenge permutation technique Institute Of Advanced Engineering And Science (IAES) 2021 Article PeerReviewed text en http://eprints.utem.edu.my/id/eprint/25665/2/2021_DESIGN%20AND%20IMPLEMENTATION%20OF%20MULTIPLEXED%20AND%20OBFUSCATED%20PHYSICAL%20UNCLONABLE%20FUNCTION.PDF Mispan, Mohd Syafiq and Jidin, Aiman Zakwan and Mohd Nasir, Haslinah and Hafez, Sarkawi and Ramlee, Radi Husin (2021) Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function. Indonesian Journal Of Electrical Engineering And Informatics (IJEEI), 9 (1). pp. 91-100. ISSN 2089-3272 http://section.iaesonline.com/index.php/IJEEI/article/view/2664/593 10.52549/ijeei.v9i1.2664
spellingShingle Mispan, Mohd Syafiq
Jidin, Aiman Zakwan
Mohd Nasir, Haslinah
Hafez, Sarkawi
Ramlee, Radi Husin
Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function.
title Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function.
title_full Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function.
title_fullStr Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function.
title_full_unstemmed Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function.
title_short Design And Implementation Of Multiplexed And Obfuscated Physical Unclonable Function.
title_sort design and implementation of multiplexed and obfuscated physical unclonable function.
url http://eprints.utem.edu.my/id/eprint/25665/2/2021_DESIGN%20AND%20IMPLEMENTATION%20OF%20MULTIPLEXED%20AND%20OBFUSCATED%20PHYSICAL%20UNCLONABLE%20FUNCTION.PDF
http://eprints.utem.edu.my/id/eprint/25665/
http://section.iaesonline.com/index.php/IJEEI/article/view/2664/593
url_provider http://eprints.utem.edu.my/