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2013 | OriginalPaper | Chapter

Securing Communication Devices via Physical Unclonable Functions (PUFs)

Author : Nicolas Sklavos

Published in: ISSE 2013 Securing Electronic Business Processes

Publisher: Springer Fachmedien Wiesbaden

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Abstract

In recent years, it has been more than obvious that electronic hardware devices are more than pervasive parts, in most aspects of everyday life. Although, the increased need for communications and transactions, makes both security and privacy manners a crucial factor, that has to be considered with high attention. New methodologies and approaches are developed, in order the need for high security levels, to be satisfied successfully.
Physical Unclonable Functions (PUFs) have attracted the interest of the research community the last years. PUFs basically support cryptographic primitives, in order to implement security schemes, such as key generation and storage, authentication, as well as identification.
This work carries out operation aspects of PUFs, as well as use cases, which are currently investigated by the researchers. In this paper, design approaches of PUFs are introduced, with detailed aspects of their behaviour. The security properties of the presented designs are given in detail, in order to demonstrate the security properties, introduced by the physical properties, in the most sufficient way. Comparisons of the alternative philosophies of the different designs are given.

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Literature
[BePo09]
go back to reference Beckmann, N., Potkonjak, M.: Hardware-based public-key cryptography with public physically unclonable functions pp. 206-220, 2009. Beckmann, N., Potkonjak, M.: Hardware-based public-key cryptography with public physically unclonable functions pp. 206-220, 2009.
[MaVe10]
go back to reference Maes Roel, Verbauwhede Ingrid, Physically Unclonable Functions: a Study on the State of the Art and Future Research Directions, In Towards Hardware-Intrinsic Security, D. Naccache, and A. Sadeghi (eds.), Springer, 36 pages, 2010. Maes Roel, Verbauwhede Ingrid, Physically Unclonable Functions: a Study on the State of the Art and Future Research Directions, In Towards Hardware-Intrinsic Security, D. Naccache, and A. Sadeghi (eds.), Springer, 36 pages, 2010.
[ScLe13]
go back to reference Schaller Andre, Leet van der Vincent, Pkysically Unclonable Functions found in Standard Components of Commercial Devices, First Workshop on Trustworthy Manufacturing and Utilization of Secure Devices, Co-located with IEEE European Test Symposium, Avignon, France, May 30-31, 2013. Schaller Andre, Leet van der Vincent, Pkysically Unclonable Functions found in Standard Components of Commercial Devices, First Workshop on Trustworthy Manufacturing and Utilization of Secure Devices, Co-located with IEEE European Test Symposium, Avignon, France, May 30-31, 2013.
[SkEf07]
go back to reference Sklavos Nicolas, Efstathiou Costas, SecurID Authenticator: On the Hardware Implementation Efficiency, proceedings of 14th IEEE International Conference on Electronics, Circuits and Systems (IEEE ICECS’07), Morocco, 2007. Sklavos Nicolas, Efstathiou Costas, SecurID Authenticator: On the Hardware Implementation Efficiency, proceedings of 14th IEEE International Conference on Electronics, Circuits and Systems (IEEE ICECS’07), Morocco, 2007.
[Skla10]
go back to reference Sklavos Nicolas, On the Hardware Implementation Cost of Crypto-Processors Architectures, Information Systems Security, The official journal of (ISC)2, A Taylor & Francis Group Publication, Vol. 19, Issue: 2, pp. 53-60, 2010. Sklavos Nicolas, On the Hardware Implementation Cost of Crypto-Processors Architectures, Information Systems Security, The official journal of (ISC)2, A Taylor & Francis Group Publication, Vol. 19, Issue: 2, pp. 53-60, 2010.
[SkZh07]
go back to reference Sklavos Nicolas, Zhang Xinmiao: Wireless Security and Cryptography: Specifications and Implementations, CRC-Press, A Taylor and Francis Group, ISBN: 084938771X, 2007. Sklavos Nicolas, Zhang Xinmiao: Wireless Security and Cryptography: Specifications and Implementations, CRC-Press, A Taylor and Francis Group, ISBN: 084938771X, 2007.
[TGG10]
go back to reference TCG, Mobile Trusted Module Specification, Version 1.0, Revision 7.02, Trusted Computing Group, Tech. Rep., 2010. TCG, Mobile Trusted Module Specification, Version 1.0, Revision 7.02, Trusted Computing Group, Tech. Rep., 2010.
Metadata
Title
Securing Communication Devices via Physical Unclonable Functions (PUFs)
Author
Nicolas Sklavos
Copyright Year
2013
Publisher
Springer Fachmedien Wiesbaden
DOI
https://doi.org/10.1007/978-3-658-03371-2_22

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