A secure authentication scheme based on differential public PUF

Author:

Duan Shengyu1,Sai Gaole2

Affiliation:

1. Shanghai University, Shanghai, China

2. Chinese Academy of Sciences, Shenzhen, China

Funder

State Key Laboratory of Computer Architecture (ICT, CAS)

Publisher

ACM

Reference17 articles.

1. Vikash Gunreddy Abhranil Maiti and Patrick Schaumont . 2013. A Systematic Method to Evaluate and Compare the Performance of Physical Unclonable Functions . Springer , New York, NY . Vikash Gunreddy Abhranil Maiti and Patrick Schaumont. 2013. A Systematic Method to Evaluate and Compare the Performance of Physical Unclonable Functions. Springer, New York, NY.

2. Nathan Beckmann and Miodrag Potkonjak . 2009. Hardware-Based Public-Key Cryptography with Public Physically Unclonable Functions . Springer-Verlag , 206--220. Nathan Beckmann and Miodrag Potkonjak. 2009. Hardware-Based Public-Key Cryptography with Public Physically Unclonable Functions. Springer-Verlag, 206--220.

3. Building PUF Based Authentication and Key Exchange Protocol for IoT Without Explicit CRPs in Verifier Database

4. Shengyu Duan and Gaole Sai . 2021 . A Differential Public PUF Design for Lightweight Authentication . In International Conference on SMACD and 16th Conference on PRIME. 1--4. Shengyu Duan and Gaole Sai. 2021. A Differential Public PUF Design for Lightweight Authentication. In International Conference on SMACD and 16th Conference on PRIME. 1--4.

5. Blaise Gassend , Dwaine Clarke , Marten van Dijk , and Srinivas Devadas . 2002. Silicon Physical Random Functions . Association for Computing Machinery , 148--160. Blaise Gassend, Dwaine Clarke, Marten van Dijk, and Srinivas Devadas. 2002. Silicon Physical Random Functions. Association for Computing Machinery, 148--160.

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Enhancing Hardware Security: An Analysis of SRAM-PUFs;NAECON 2023 - IEEE National Aerospace and Electronics Conference;2023-08-28

2. Differential Emulatable PUF Design against Machine Learning Attacks for Hardware Security;2023 3rd International Conference on Electrical, Computer, Communications and Mechatronics Engineering (ICECCME);2023-07-19

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