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  4. Embedding security into ferroelectric FET array via in situ memory operation
 
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2023
Journal Article
Title

Embedding security into ferroelectric FET array via in situ memory operation

Abstract
Non-volatile memories (NVMs) have the potential to reshape next-generation memory systems because of their promising properties of near-zero leakage power consumption, high density and non-volatility. However, NVMs also face critical security threats that exploit the non-volatile property. Compared to volatile memory, the capability of retaining data even after power down makes NVM more vulnerable. Existing solutions to address the security issues of NVMs are mainly based on Advanced Encryption Standard (AES), which incurs significant performance and power overhead. In this paper, we propose a lightweight memory encryption/decryption scheme by exploiting in-situ memory operations with negligible overhead. To validate the feasibility of the encryption/decryption scheme, device-level and array-level experiments are performed using ferroelectric field effect transistor (FeFET) as an example NVM without loss of generality. Besides, a comprehensive evaluation is performed on a 128 × 128 FeFET AND-type memory array in terms of area, latency, power and throughput. Compared with the AES-based scheme, our scheme shows ~22.6×/~14.1× increase in encryption/decryption throughput with negligible power penalty. Furthermore, we evaluate the performance of our scheme over the AES-based scheme when deploying different neural network workloads. Our scheme yields significant latency reduction by 90% on average for encryption and decryption processes.
Author(s)
Xu, Yixin
Pennsylvania State University
Xiao, Yi
Pennsylvania State University
Zhao, Zijian
University of Notre Dame
Müller, Franz  
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
Vardar, Alptekin
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
Gong, Xiao
National University of Singapore
George, Sumitha
North Dakota State University
Kämpfe, Thomas  orcid-logo
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
Narayanan, Vijaykrishnan
Pennsylvania State University
Ni, Kai
University of Notre Dame
Journal
Nature Communications
Funder
National Science Foundation  
Open Access
DOI
10.1038/s41467-023-43941-5
Additional link
Full text
Language
English
Fraunhofer-Institut für Photonische Mikrosysteme IPMS  
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