MRAM Devices to Design Ternary Addressable Physically Unclonable Functions

被引:1
|
作者
Rios, Manuel Aguilar [1 ]
Alam, Mahafujul [1 ]
Cambou, Bertrand [1 ]
机构
[1] No Arizona Univ, Cybersecur Res Lab, Flagstaff, AZ 86011 USA
关键词
authentication; magnetoresistive random access memory (MRAM); cryptographic schemes; physically unclonable function (PUF); low power; non-volatile; ternary states; memory array components; INTERNET;
D O I
10.3390/electronics12153308
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
We introduce a novel approach to constructing ternary addressable physically unclonable functions (TAPUFs) using magnetoresistive random-access memory (MRAM) devices. TAPUFs use three states (1, 0, and X) to track unstable cells. The proposed TAPUF leverages the resistance properties of MRAM cells to produce unique digital fingerprints that can be effectively utilized in cryptographic protocols. We exploit the cell-to-cell variations in resistance values to generate reliable cryptographic keys and true random numbers, which can add protection against certain attacks. To evaluate the performance of the TAPUF, various tests were conducted, including assessments of inter-cell to intra-cell variation, inter-distance, bit error rate (BER), and temperature variation. These experiments were conducted using a low-power client device to replicate practical scenarios. The obtained results demonstrate that the proposed TAPUF exhibits exceptional scalability, energy efficiency, and reliability.
引用
收藏
页数:18
相关论文
共 50 条
  • [31] Laser Fault Attack on Physically Unclonable Functions
    Tajik, Shahin
    Ganji, Fatemeh
    Seifert, Jean-Pierre
    Lohrke, Heiko
    Boit, Christian
    2015 WORKSHOP ON FAULT DIAGNOSIS AND TOLERANCE IN CRYPTOGRAPHY (FDTC), 2015, : 85 - 96
  • [32] Robust Authentication Using Physically Unclonable Functions
    Frikken, Keith B.
    Blanton, Marina
    Atallah, Mikhail J.
    INFORMATION SECURITY, PROCEEDINGS, 2009, 5735 : 262 - +
  • [33] Efficient Testing of Physically Unclonable Functions for Uniqueness
    Santiago, Leandro
    Patil, Vinay C.
    Marzulo, Leandro A. J.
    Franca, Felipe M. G.
    Kundu, Sandip
    2019 IEEE 28TH ASIAN TEST SYMPOSIUM (ATS), 2019, : 117 - 122
  • [34] Key Establishment Using Physically Unclonable Functions
    Shin, SeongHan
    Kobara, Kazukuni
    2015 INTERNATIONAL CONFERENCE ON COMPUTATIONAL SCIENCE AND COMPUTATIONAL INTELLIGENCE (CSCI), 2015, : 352 - 355
  • [35] Design of Unique and Reliable Physically Unclonable Functions based on Current Starved Inverter Chain
    Kumar, Raghavan
    Patil, Vinay C.
    Kundu, Sandip
    2011 IEEE COMPUTER SOCIETY ANNUAL SYMPOSIUM ON VLSI (ISVLSI), 2011, : 224 - 229
  • [36] Fuzzy Key Generator Design using ReRAM-Based Physically Unclonable Functions
    Korenda, Ashwija Reddy
    Afghah, Fatemeh
    Razi, Abolfazl
    Cambou, Bertrand
    Begay, Taylor
    PROCEEDINGS OF THE 2021 IEEE INTERNATIONAL CONFERENCE ON PHYSICAL ASSURANCE AND INSPECTION ON ELECTRONICS (PAINE), 2021,
  • [37] Design of Power-Efficient Ring Oscillator based Physically Unclonable Functions for FPGA
    Likhithashree, R.
    Kiran, Divya
    2019 4TH INTERNATIONAL CONFERENCE ON ELECTRICAL, ELECTRONICS, COMMUNICATION, COMPUTER TECHNOLOGIES AND OPTIMIZATION TECHNIQUES (ICEECCOT), 2019, : 164 - 169
  • [38] Towards a Unified Security Model for Physically Unclonable Functions
    Armknecht, Frederik
    Moriyama, Daisuke
    Sadeghi, Ahmad-Reza
    Yung, Moti
    TOPICS IN CRYPTOLOGY - CT-RSA 2016, 2016, 9610 : 271 - 287
  • [39] Implementing Delay Based Physically Unclonable Functions on FPGA
    Kiran, Sai N. H. N.
    Bhakthavatchalu, Ramesh
    PROCEEDINGS OF 2016 INTERNATIONAL CONFERENCE ON ADVANCED COMMUNICATION CONTROL AND COMPUTING TECHNOLOGIES (ICACCCT), 2016, : 137 - 140
  • [40] Differential Public, Physically Unclonable Functions: Architecture and Applications
    Potkonjak, Miodrag
    Meguerdichian, Saro
    Nahapetian, Ani
    Wei, Sheng
    PROCEEDINGS OF THE 48TH ACM/EDAC/IEEE DESIGN AUTOMATION CONFERENCE (DAC), 2011, : 242 - 247