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A 243 KOPS/W Crypto-Processor Supporting Homomorphic Encryption and Post-Quantum Cryptography for IoT Devices

Authors
Kim, Byung JunMun, Han-GyeolLee, Kyeong-JunWoo, Jeong-MinKang, KiseoSon, HyunwooSim, Jae-Yoon
Issue Date
Oct-2024
Publisher
IEEE Computer Society
Keywords
crypto processor; homomorphic encryption; postquantum cryptography; quantum computer
Citation
European Solid-State Circuits Conference, pp 468 - 471
Pages
4
Indexed
SCOPUS
Journal Title
European Solid-State Circuits Conference
Start Page
468
End Page
471
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/74722
DOI
10.1109/ESSERC62670.2024.10719565
ISSN
1930-8833
2643-1319
Abstract
This work presents a power-efficient latticebased crypto-processor for IoT edge devices supporting both homomorphic encryption (HE) and post-quantum cryptography (PQC) algorithms. The chip incorporates a reconfigurable architecture on a unified number system to effectively reduce the size of modulo index. It also employs a power-efficient modular arithmetic block and a scheduling for pipelined processing. The implemented chip in 28 nm CMOS achieves the state-of-the-art power efficiencies both in HE and PQC. © 2024 IEEE.
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IT공과대학 (전자공학부)
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