Seongkwang Kim

dblp:264/0612 · DBLP profile ↗
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9ranked-venue papers
3as first author
8since 2021 · last 2026
0000-0002-9091-4054ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 9 · 3 first-author · 8 since 2021
YearPublicationVenuePosition
2026 Security of NIST SP800-90A Hash-based DRBGs in the Seedless Model
Woohyuk Chung, ByeongHak Lee, Seongha Hwang, Seongkwang Kim, Jooyoung Lee 0001
EuroS&P4
2025 Making GCM Great Again: Toward Full Security and Longer Nonces
Woohyuk Chung, Seongha Hwang, Seongkwang Kim, ByeongHak Lee, Jooyoung Lee 0001
EUROCRYPT (1)3
2025 Relaxed Vector Commitment for Shorter Signatures
Seongkwang Kim, ByeongHak Lee, Mincheol Son
EUROCRYPT (4)1
2025 Private Computation on Common Fuzzy Records
abstract
Private computation on common records refers to analyze data from two databases containing shared records without revealing personal information. As a basic requirement for private computation, the databases involved essentially need to be aligned by a common identification system. However, it is hard to expect such common identifiers in real world scenario. For this reason, multiple quasi-identifiers can be used to identify common records. As some quasi-identifiers might be missing or have typos, it is important to support fuzzy records setting. Identifying common records using quasi-identifiers requires manipulation of highly sensitive information, which could be privacy concerns. This work studies the problem of enabling such data analysis on the fuzzy records of quasi-identifiers. To this end, we propose "ordered threshold-one (OTO)" matching which can be efficiently realized by circuit-based private set intersection~(CPSI) protocols and some multiparty computation (MPC) techniques. Furthermore, we introduce some generic encoding techniques from traditional matching rules to the OTO matching. Finally, we achieve a secure efficient private computation protocol which supports various matching rules which have already been widely used. We also demonstrate the superiority of our proposal with experimental validation. First, we empirically check that our encoding to OTO matching does not affect accuracy a lot for the benchmark datasets found in the fuzzy record matching literature. Second, we implement our protocol and achieve significantly faster performance at the cost of communication overhead compared to previous privacy-preserving record linkage (PPRL) protocols. In the case of 100K records for each dataset, our work shows 147.58MB communication cost, 10.71s setup time, and 1.97s online time, which is 7.78 times faster compared to the previous work (50.12 times faster when considering online time only).
Kyoohyung Han, Seongkwang Kim, Yongha Son
Proc. Priv. Enhancing Technol.2
2024 Revisiting OKVS-Based OPRF and PSI: Cryptanalysis and Better Construction
Kyoohyung Han, Seongkwang Kim, ByeongHak Lee, Yongha Son
ASIACRYPT (8)2
2023 AIM: Symmetric Primitive for Shorter Signatures with Stronger Security
abstract
Post-quantum signature schemes based on the MPC-in-the-Head (MPCitH) paradigm are recently attracting significant attention as their security solely depends on the one-wayness of the underlying primitive, providing diversity for the hardness assumption in post-quantum cryptography. Recent MPCitH-friendly ciphers have been designed using simple algebraic S-boxes operating on a large field in order to improve the performance of the resulting signature schemes. Due to their simple algebraic structures, their security against algebraic attacks should be comprehensively studied.
Seongkwang Kim, Jincheol Ha, Mincheol Son, ByeongHak Lee, Dukjae Moon, Joohee Lee, Sangyub Lee 0002, Jihoon Kwon, Jooyoung Lee 0001
CCS1
2022 Rubato: Noisy Ciphers for Approximate Homomorphic Encryption
Jincheol Ha, Seongkwang Kim, ByeongHak Lee, Jooyoung Lee 0001, Mincheol Son
EUROCRYPT (1)2
2021 Transciphering Framework for Approximate Homomorphic Encryption
Jincheol Ha, Seongkwang Kim, ByeongHak Lee, Joohee Lee, Jooyoung Lee 0001, Dukjae Moon
ASIACRYPT (3)3
2020 Tight Security Bounds for Double-Block Hash-then-Sum MACs
Seongkwang Kim, ByeongHak Lee, Jooyoung Lee 0001
EUROCRYPT (1)1