Publication | Closed Access
Lightweight secure PUFs
268
Citations
9
References
2008
Year
Unknown Venue
Hardware TrojanMultiple Delay LinesEngineeringInformation SecurityReliable Puf StructuresSide-channel AttackHardware SecurityLightweight Secure PufsTrusted Execution EnvironmentHardware Security SolutionPuf DesignElectrical EngineeringComputer EngineeringData PrivacyComputer ScienceData SecurityCryptographySecurityStorage SecurityFault AttackPhysical Unclonable Function
To ensure security and robustness of the next generation of Physically Unclonable Functions (PUFs), we have developed a new methodology for PUF design. Our approach employs integration of three key principles: (i) inclusion of multiple delay lines for creation of each response bit; (ii) transformations and combination of the challenge bits; and (iii) combination of the outputs from multiple delay lines; to create modular, easy to parameterize, secure and reliable PUF structures. Statistical analysis of the new structure and its comparison with existing PUFs indicates a significantly lower predictability, and higher resilience against circuit faults, reverse engineering and other security attacks.
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